The Unexpected Genius of Bionic Propellers

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  • @rucussing
    @rucussing Рік тому +777

    Marine Biologist Frank Fish? You cannot make this up!

    • @thomasmcmahon9302
      @thomasmcmahon9302 Рік тому +115

      Nominative Determinism

    • @HarmanRobotics
      @HarmanRobotics Рік тому +76

      I worked with an Dr of biology specializing in avian biology named Dr Bird...

    • @vcprado
      @vcprado Рік тому +34

      The sea was angry that day

    • @MrDino1953
      @MrDino1953 Рік тому +9

      @@vcprado- like an old man handing back soup at a deli.

    • @aarondavis8943
      @aarondavis8943 Рік тому +36

      Inventor of the toilet?
      Thomas Crapper.

  • @PanzerWeeb3305
    @PanzerWeeb3305 Рік тому +86

    As a Merchant Mariner, this is really exciting. Always a good day when you learn of a new technology that increases efficiency while ALSO helping the environment. It's a win-win for everyone.

    • @skat1140
      @skat1140 10 місяців тому +1

      I dunno. Big Auto took away the water engine. Big Energy took away the perpetual motion machine.
      I expect Big Propeller to take this innovation away from us also.

    • @yvanpimentel9950
      @yvanpimentel9950 10 місяців тому +1

      a patent is holding it back, some one patent it ,but cavitesion go to cero if the propeller is place in front of the ship 🚢 with a pipe running the water back,this design reduce or eliminate the front wave and increase or fill the depression behind the ship, elevating water behind the ship increase propulsion .

    • @jeffbenton6183
      @jeffbenton6183 6 місяців тому +2

      More efficiency *and* more thrust. In other words, no performance drawbacks. The issue, of course, is how difficult these things will be to manufacture.

    • @eriklondon2946
      @eriklondon2946 3 місяці тому

      @@jeffbenton6183 Id imagine it would only add 20% more time in manufacturing (Im no expert, but have watched an hour long thing on how they make them). The grinding/sanding part would be the part that would add more time...once the scientific work has been done to verify that it will work as proposes and they have found the most effective way of doing it.

  • @rudijohnsen9674
    @rudijohnsen9674 Рік тому +891

    Recently, I had an enlightening experience while using a small electric motor on my boat. I want to share this because it illustrates the significant impact that underwater noises, like those from propellers, can have on marine life.
    While I was out on the water, something remarkable happened. I switched the motor into reverse, and to my surprise, a seal popped its head up out of the water. Intrigued, I stopped the motor, and the seal submerged. But when I hit reverse again, the seal resurfaced. This wasn't a one-time occurrence. Each time I alternated between forward and reverse, even from a distance, the seal would respond by appearing while the engine was in reverse.
    This was particularly striking because the motor I was using was very small and relatively quiet - an electric model. Yet, the seal's reaction was immediate and consistent. This interaction, as amazing as it was to witness, really drove home a crucial point for me.
    It made me realize the profound effect that underwater noise - from things like propellers and even sonar - can have on aquatic creatures. The fact that even a small, 'silent' motor could elicit such a clear response from the seal underscores the sensitivity of marine life to our human-made sounds in their environment. It's an important consideration for all of us who spend time on the water and a reminder of the broader environmental impact of our activities.

    • @JTA1961
      @JTA1961 Рік тому +51

      Reverse psychology

    • @Grunttamer
      @Grunttamer Рік тому +4

      If this was the case then aquatic animals would avoid loud natural sounds also. Is there any evidence of wildlife behaving similarly near waterfalls?

    • @nordic5490
      @nordic5490 Рік тому +64

      ​@@Grunttamerspecies that do not tolerate loud waterfalls stay away from them. Species that are adapted to be in or near loud waterfals can be found there. What is your point ?

    • @Th4thWiseman
      @Th4thWiseman Рік тому +9

      Sound speed is 4X the speed underwater ✔️

    • @neilmckay8649
      @neilmckay8649 Рік тому +30

      The point about parent whales losing contact with their kids made me think of humans losing their partners at a rock concert - confusion created by 'noise' on the normal signals.

  • @AXNJXN1
    @AXNJXN1 Рік тому +63

    Probably one of THE MOST important data points I've never even heard about! Absolutely remarkable! I've worked in the U.S.Air Force as a Jet Engine Mechanic and can say I NEVER envisioned this but was completely blown away at the context of this idea - coming from Whale fins??!! How mind blowing!

    • @dougjinks2694
      @dougjinks2694 10 місяців тому +4

      I love to see technology copying biology. I heard another presenter once say, why try to solve it yourself when biology has had the advantage of a billion years or trial an error! Reminds me how important it is to protect the environment, we have so much to learn from it!

    • @onedayagogo
      @onedayagogo 9 місяців тому

      ​@@dougjinks2694 + @AXNJXN1
      yes. it has even been given an official scientific name: Biomimicry.
      "shark skin, with its denticles or scales, is known to reduce drag
      and increase swimming efficiency for sharks.
      Applying a similar texture to aircraft skin has been explored
      as a potential way to reduce drag and improve aerodynamic efficiency."
      see also, _Lufthansa Technik Aeroshark_ 👍

    • @d0nj03
      @d0nj03 8 місяців тому +1

      Is this really all that recent though? I could swear I've been seeing those wavy blade shapes in CPU coolers for years now.

  • @Linuxpunk81
    @Linuxpunk81 Рік тому +1867

    As a former submarine sonar tech you have no idea how terrified of cavitation I am 😂

    • @brettcoles6462
      @brettcoles6462 Рік тому +186

      Never been on a sub, but I played Sub Command, and the fear in the sonarman's voice when you start cavitating is visceral.
      Makes sense, since short of going active, cavitating is the easiest way to get killed. The voice actor did a good job.

    • @jordanrelkey
      @jordanrelkey Рік тому +137

      Cavitation in an underwater stealthy vehicle should be like blaring a loudspeaker saying, "Here I am! Shoot at me!"

    • @davecrupel2817
      @davecrupel2817 Рік тому +18

      "former" 😏

    • @sheerluckholmes5468
      @sheerluckholmes5468 Рік тому +60

      Yeah, you got me on that one, as I too have no idea of how terrified you were of cavitation.

    • @William1w1
      @William1w1 Рік тому +50

      @@sheerluckholmes5468 OP's comment is an English idiom for expressing a large amount/extent of something. For example, if I said, "You have no idea how bad at singing I am," my meaning would be that my singing is of such low quality that it is difficult to fathom. I would not say that phrase to tell you that because you have not heard my singing, you don't have a way to gauge its quality. That would be too literal an interpretation and would simply express an obvious fact.

  • @SemourKlitz
    @SemourKlitz 10 місяців тому +29

    I must say, having used some 3D CAD/CAM drawing programs to design propellers, these are insanely cerebral from the onset. But introduction of tubercles to the edges makes these ever more insanely complex. Your presentation was professionally presented so that anyone could understand this content without struggling. Good job, Ziroth!

    • @yvanpimentel9950
      @yvanpimentel9950 10 місяців тому

      the solution is the placement of the propeller, water pump can run 25 years only when air is added to the instake damich appea
      ,so a tractor propeller because it have a back pressure and a pipe is a solution

  • @alexbordessa3391
    @alexbordessa3391 Рік тому +278

    Just wanted to make a correction. At 1:57 there's a picture of a propeller that supposedly has cavitation damage. This is actually a picture of a brass propeller that's in the process of being repaired. The outer edges have been welded and the "cavitation damage" is actually the weld that was added to repair the propeller. This will be ground down to match the original shape of the propeller. Thought I'd clear that up incase anyone was confused.

    • @onebronx
      @onebronx Рік тому +26

      And at 2:05 the computer model of the prop is nonsensical, as the pitch at the tips is greater than the one at the root, while it must be other way around. The prop shown is basically in a "feathered" position.

    • @fxzn
      @fxzn Рік тому +7

      thought it was weird how the cavitation which "eats away" at the prop somehow managed to add material to it

    • @scottwillis5434
      @scottwillis5434 Рік тому +2

      Better pic at 2:27.

    • @tonywilson4713
      @tonywilson4713 Рік тому +4

      Engineer here - I wondered about that.
      Thanks for clearing it up.

    • @ErikS-
      @ErikS- Рік тому +8

      It is even easy to see the heat-affected zones from the welding.
      The guy making this video lacks quite a lot of engineering knowledge I guess..

  • @RealBobStovall
    @RealBobStovall 11 місяців тому +13

    I first learned about cavitation and its destructiveness as a mechanic working on Caterpillar hydraulic systems; how it would destroy the vane type hydraulic pumps needed to drive the massive rams on Cat scrapers and loaders. Later I learned about the noise issue as it relates to, particularly, submarines and how the U.S. Navy went to extraordinary lengths to keep the design of its submarine props, enshrouded, LITERALLY, in secret and how they could tell exactly where a Soviet submarine was simply by its noise signature. Even now, when you see pictures of U.S. Navy subs in drydock, their propellers are wrapped to keep them hidden from prying eyes. Truly fascinating stuff.

  • @cinemaipswich4636
    @cinemaipswich4636 Рік тому +483

    There is a computer fan maker called Noctua from Austria. They have been well known for making quiet fans. If you go their website you will see the same flutes on their fans. This idea came to them more than 20 years ago, after their R&D labs led them to fine tune their observations.

    • @raoulduke7668
      @raoulduke7668 Рік тому +41

      I'm a big fan of noctua!

    • @Stickmanght
      @Stickmanght Рік тому +34

      I was going to mention Noctua as well. They have had these shapes on the blades of their fans for many years. Making them widely regarded as the best fans for desktop computers, for how quiet they are, and how much air they can push, buth volume and staic pressure wise.

    • @Szymanskill
      @Szymanskill Рік тому +31

      @@pocketsk3824 Its more likely the difficulty of designing and mass producing these designs that's holding them back. The improvements might not scale with blade speed etc

    • @SBCBears
      @SBCBears Рік тому +15

      My homebuilt PC is very quiet. It sits about two feet from me and I can barely hear it. I used Noctua fans for my build.
      Edit: I should add that the room must be dead quiet for me to even barely hear the fans. Typically, I have no perception of sound from the case.

    • @tylerethernet8610
      @tylerethernet8610 Рік тому

      The bionics researchers at the Technical University of Berlin's group mentioned in the video when the 3D-printed parts were shown actually came up with that concept already in the 1990's. It is specifically based on the work of Dr. Rudolf Bannasch who got it patented back then. German company Blacknoise licensed it and has used it in their Noiseblocker series of PC fans several of which I use and which subjectively considerably outperform other contenders like Noctua and bequiet! in "cleanness" of the noise spectrum. Google for Noiseblocker fans and you'll see they look identical to the large ones in the video.

  • @gglen2141
    @gglen2141 11 місяців тому +24

    I've long been interested in nature being the template for human design. As a kid I made clay models of cars and ran water over them to see how the natural flow affected the shape. So I'm fascinated to see this.

    • @DrTofutybeast
      @DrTofutybeast 10 місяців тому +1

      That's why they are better off playing outside...

  • @Vergeltungswaffen3
    @Vergeltungswaffen3 Рік тому +152

    I did my dissertation on tubercles, the effect did not seem to be a primary effect of vortex or mixing as would seem intuitive but having a wing with a blend of chord lengths. This in effect smooths the lift/drag distribution so that the wing does not perform as per one specific aerofoil geometry but a blended solution of the chord ranges. This is not so useful for lift generation which can be designed for specified efficient parts of flight but it is useful for maximising the Angles of attack a control surface can be used at - it is not surprising in the end as the humpback whales use the fins for rapid turning and mobility for prey catching, not propulsion.

    • @patrickday4206
      @patrickday4206 Рік тому +3

      The paper I read they reduced drag from reducing cavitation

    • @DC_DC_DC_DC
      @DC_DC_DC_DC Рік тому +2

      That's really cool. Is your dissertation uploaded somewhere?

    • @Moneymagi
      @Moneymagi Рік тому

      So they are like fingers?

    • @meetim6271
      @meetim6271 Рік тому +14

      That sounds similar in concept to the reason for the helical strakes fitted to things like tall chimneys & the lesser known applications like subsea pipelines in order to prevent vortex-induced vibration (VIV). The reason they work is that vibration frequency is a function of diameter (amongst other things) and from any angle, strakes produce a varying effective diameter, which prevents 'lock-in' of the vibration.

    • @MrTL3wis
      @MrTL3wis Рік тому +4

      That means we've both done real work with these. I was running high AoA and didn't see big effects. Our application was well sorted when we started, so it improve on it would have been tough. We couldn't.

  • @johnnyhorton5984
    @johnnyhorton5984 10 місяців тому +6

    Absolutely brilliant! And, as a spin off, understanding the dynamics of humpback whales was really awesome. I'd never thought how amazing it is that such huge animals propel themselves with such seemingly 'clunky' fins! Phenomenal!

  • @mauriciogerhardt3209
    @mauriciogerhardt3209 Рік тому +162

    amazing how many designs that we previously thought were so efficient, have still so much to be bettered.

    • @koharumi1
      @koharumi1 Рік тому +5

      Bettered?

    • @alanESV2
      @alanESV2 Рік тому +6

      Improvered

    • @oldtimer2192
      @oldtimer2192 Рік тому +1

      @@alanESV2Improved

    • @oldtimer2192
      @oldtimer2192 Рік тому +1

      Yes I’m a grammar nazi…
      “It’s amazing how many designs that we previously thought were so efficient, yet still have the potential for vast improvement.”

    • @Reach3DPrinters
      @Reach3DPrinters Рік тому +3

      Converting 100% rotational energy into linear motion... so makes you wonder what a boat gets. 20%, 30%?
      Losses from drag on haul in water, wind resistance, thermal...
      ....
      I notice the belly of blue whale has strips down the length. Wonder if that helps create some kind of surface laminar flow or something, smoothing out micro surface turbulence. The nose of the blue whale also has bumps, perhaps its a similar situation. Perhaps a perfectly smooth nose cone is not the best solution!!!
      ...
      There is an X prize, specifically for solving the turbulence problem. Its got like a million dollar prize. To be able to better define turbulence mathematically is the goal.
      Basically... golden ratio, log, sinusoidal molecule packing propagation or something. If I knew how to describe it, Id be rich. lol

  • @graemedevine9651
    @graemedevine9651 Рік тому +13

    I've owned boats for years and messed around with different props, they're incredible things the slightest adjustment to the blades size wise makes an enormous difference in slippage and performance, very interesting video a new subscriber gained.

  • @benmcreynolds8581
    @benmcreynolds8581 Рік тому +17

    The inner kid in me is so happy to see so much research & testing being done around Biology inspired designs. Then Add in our advancements in material science, engineering, software performance testing methods, etc. I really think we are going to be surprised by what we end up developing. Each development could be unique and useful in different ways. For different tasks and so on. It's just awesome to see so much curiosity and development being combined in this field of productivity.

  • @TomisaLami
    @TomisaLami Рік тому +5

    Crazy to think that we're 70 years into the jet age and we're just now starting to figure out how to make a good propellers awesome video

    • @EhmedCousCous
      @EhmedCousCous Рік тому

      Jet engine was invented in the 1920s?

    • @TomisaLami
      @TomisaLami Рік тому +1

      @@EhmedCousCous I think the first jet aircraft flew in like 1939 or something but I don’t know when the first jet engine was built. However, 70 years ago would be 1954. I was just trying to make a joke, but the point of the joke is more like we’ve moved on from prop planes for a very long time and now we’re just finally figuring out how to make a good prop.

    • @leudast1215
      @leudast1215 10 місяців тому

      What do you turbines are? We never moved past propellers @TomisaLami

    • @TomisaLami
      @TomisaLami 10 місяців тому

      @@leudast1215 a turbine can be multiple devices, but essentially they would all be a spinning mechanism with multiple fan blades used to produce force from a fluid I believe.
      And I know you think you did something here but you didn’t because the turbine jet engine could work even better if it had better blades or what you mistakenly consider props.

    • @planterion7969
      @planterion7969 10 місяців тому

      @@EhmedCousCous 2024-70 = 1954...
      Jet engines were invented around the beginning of WW2 but were too unreliable then. The first jet aircraft built in series was the Me-262 which was put in service in 1944, and jet engines became widespread in the 50s and 60s.

  • @No_Way_NO_WAY
    @No_Way_NO_WAY Рік тому +13

    Just as a short side note. The 2 propellers shown use completely different concepts. One is a (water) propeller with structure on the leading edge, the other is a shrouded propeller with structure on the tailing edge. First one is probably good for slow moving air/water the other for fast moving air. Latter is also based on the concept of an owls wing to reduce noise and is already in wide spread use especially in noise reduced ventilation of factory floors (and PCs)

  • @edwardbachmann9904
    @edwardbachmann9904 Рік тому +4

    Your U-tube video is layed out beautifully. Your technical information is also very good and brilliant. Your new technical information is excellent. Please keep up the good work.

  • @JCtheMusicMan_
    @JCtheMusicMan_ Рік тому +28

    The ribbed propeller reminds me of vortex generators on an aircraft wing. The trick to fluid dynamics is balancing the tradeoff between lift/drag/weight and thrust. I love this presentation!❤

    • @2k7u
      @2k7u Рік тому +1

      Same, vortex generators!

    • @williamreymond2669
      @williamreymond2669 Рік тому +3

      I had the same thought, but vortex generators work by mixing more energetic air into a boundary layer that is losing energy and is about to become detached from the airfoil which in turn reduces the thickness of the turbulent wake at the trailing edge of the foil; I'm not sure from the description of the video if this is how tubercles actually work hydrodynamically.

    • @liambredeche7
      @liambredeche7 Рік тому +2

      The shape also reminds me of chevrons at the edge of turbofan nozzles; another noise reducing technique.

    • @allangibson8494
      @allangibson8494 Рік тому +4

      Or wing fences. Very common on airliner wings since the 1950’s.

    • @williamreymond2669
      @williamreymond2669 Рік тому

      Wing fences, I believe, were devised to control problems with spanwise flow, not so much boundary layer separation. Though like vortex generators did create some extra drag in curing their respective problems.@@allangibson8494

  • @Filodendro
    @Filodendro Рік тому +13

    Would be nice to see a toroidal-bionical propeller eficiency test results!

  • @jorissimaitis7619
    @jorissimaitis7619 Рік тому +18

    you're teaching me about so many types of propellors, literally couldn't think of the type of designs... amazing what innovation can do, thanks! :)

  • @kaylzshter6153
    @kaylzshter6153 Рік тому +6

    I love it when I find a new channel that is as well produced and researched as this one. New subscriber here, this was fascinating!

  • @Elijah-2000
    @Elijah-2000 Рік тому +69

    That's why a golf ball with dimples, travels further compared to a similar size ball with no dimples. It seems rough over smooth appears counter-intuitive, but there is definitely some hidden secrets we can learn from nature.

    • @slaapkonijn58
      @slaapkonijn58 Рік тому +4

      Wow you wrote the first comment on youtube that is actually right about the "golfball" effect. Congrats.

    • @southern_merican
      @southern_merican Рік тому +2

      I wonder why planes don't have dimples on one side or maybe both sides

    • @beastmastreakaninjadar6941
      @beastmastreakaninjadar6941 Рік тому +5

      It's only half right. It's the dimples AND the spin. If your club face hits flat, the ball won't go that far. If you put top spin on one, it will drop even faster. People have even experimented with dimpled rotating dirigible gas sections to add extra lift.

    • @moletrap2640
      @moletrap2640 Рік тому +17

      Wrong - Dimples on golf balls create a thin turbulent boundary layer of air that clings to the ball's surface, reducing drag and allowing the ball to travel farther. They also contribute to the lift force, with the spinning action causing higher air pressure on the bottom of the ball than the top, creating an upward force. This combination of reduced drag and increased lift due to the dimples allows a golf ball to travel about twice as far as a smooth ball would. Where as the tubulars being discussed here, redirect the flow of water into narrower channels on the surface of the fin (or blade). Two very different effects.

    • @onlyeyeno
      @onlyeyeno Рік тому +2

      @@southern_merican ... I'm not saying that it's the case with airplane wings. But there are MANY cases where "we" know of solutions that would be "theoretically better" but that "in practice" are untenable. Either due to economic, production, maintenance or a host of other factors that has to be taken into account when "creating a product for the real world...
      And I can easily see how "dimpled airplane wings" could be one such a case.

  • @soosaisteven3984
    @soosaisteven3984 Рік тому +6

    Nature is our best teacher. Millions of years of intense evolutionary engineering work that had proven successful.

    • @xl000
      @xl000 2 місяці тому

      they can become trapped in a local minimum though.

  • @gEtar87
    @gEtar87 Рік тому +19

    Similarly so in fast boats, the bottoms are NOT polished, they are usually roughened with 180-220 grit sandpaper to prevent micro Eddy's from sucking the hull to the water.

    • @roberttompkins480
      @roberttompkins480 Рік тому +9

      Sharkskin is likewise rough and reduces drag.

    • @VicTor-gi7so
      @VicTor-gi7so Рік тому +4

      think golfballs . dimples work😊

    • @TheFrewah
      @TheFrewah 11 місяців тому +2

      Like golf balls that have dimples?

    • @crhu319
      @crhu319 3 місяці тому

      ​@@TheFrewahyes

  • @rateit1474
    @rateit1474 3 місяці тому +2

    I liked that you used the word "adapt" about the lizard after 5 min. Many content creator use the unscientific word evolution.

  • @HunterCadre
    @HunterCadre Рік тому +39

    With the Jesus lizard prop, that looks a lot like a voith-schneider turned on its side, you should check those out! They're not super common, but sometimes used in ships where a lot of thrust is needed in all directions, like tugboats. ABB recently unveiled the Dynafin that was inspired by whale fins, or so their marketing dept claims lol
    Also I have a soft spot for super-cavitating props or chop props, which is an interesting way to work around the cavitation issue. They're basically only used in race boats because they're only efficient at very high speed

    • @ZirothTech
      @ZirothTech  Рік тому +4

      This looks like a good rabbit hole for me to start going down! Cheers 😀

    • @HunterCadre
      @HunterCadre Рік тому +1

      @@ZirothTech Awesome! There's a lot of really cool tech in the offshore and maritime industry, happy to see it getting attention!

    • @jabberwocky1707
      @jabberwocky1707 Рік тому +1

      Googled Dynafin, very interesting!

  • @howardmaryon
    @howardmaryon Рік тому +4

    Fascinating! Excellent presentation, UA-cam needs quality content like this very badly now. Subscribed.

  • @ch1pnd413
    @ch1pnd413 Рік тому +14

    Nature paper says "Our findings present a possible avenue for mitigating cavitation erosion through the application of inexpensive and environmentally friendly materials." It kind of seemed like you were saying GEMS would help mitigate the sound of the propellors and engines, but GEMS allow for louder propellors because the surface coating reduces cavitation damage and not cavitation itself, in theory allowing for faster and louder propellors.

    • @dylanguignion2036
      @dylanguignion2036 Рік тому

      So what if you combine tubicles and toroidal props?

    • @nickkorkodylas5005
      @nickkorkodylas5005 Рік тому

      Please avoid murdering children for the religion of their parents.

  • @im_ricebowl
    @im_ricebowl 2 місяці тому +1

    I actually took part in a research recently regarding the implementation of shark denticles (scales) to surfaces like airfoils to increase efficiency. This was a thesis of my friends and I just tagged along as someone who just happens to know how to design smth like it and can 3D print stuff. They found out that, atleast at higher airflows, there was an increase in efficiency. Excited for them since they'll be going abroad this December for a conference to share their thesis!

    • @JasonTodd339
      @JasonTodd339 2 місяці тому

      That's likely because air operates more like a fluid at higher speeds

  • @jasmijnariel
    @jasmijnariel Рік тому +12

    7:26 As a person who is flying RC gliders in competition , i experimented a lot about wingfoils and with zigzag tapes etc to make the air stick better and longer to the profile...
    Around 20y ago, when i started it, i was thinking why propellers werent like that.... i saw the wide use for it back then already ..
    Discussed it a lot with friends

    • @CrusaderSports250
      @CrusaderSports250 Рік тому +3

      And they would all have said it wasn't the thing to do, many years ago at the infancy of RC helicopters (no epicyclic, all off the throttle and often lots of bits on "landing"), I inquire about twin rotor helicopters like the Belvedere, (bit of a favourite), it was explained to me with all the aerodynamic reasons why at scale it would not work, come forward nigh on fifty years and you can buy indoor twin rotor craft at most good model sbops. We have had over two hundred years of what propellers should look like so this will take a lot of persuading to get people to accept it, no matter how good, and the only thing that will push it is the bottom line, how much money it can save, unfortunately sad but true.

    • @jasmijnariel
      @jasmijnariel Рік тому +2

      @@CrusaderSports250 back then i said, if everybody was thinking like that negative, we wouldnt be flying today!

    • @CrusaderSports250
      @CrusaderSports250 Рік тому

      ​@jasmijnariel very true but getting over what is considered the way things work can be very difficult especially if you are also looking for funding.

    • @jasmijnariel
      @jasmijnariel Рік тому

      @@CrusaderSports250 a good example of thinking outside "the box" is the tunnel like wings. They proof that we have to open up our brains that ANYTHING can work,we only need to invent it

    • @user-gl2eq2ly4g
      @user-gl2eq2ly4g 10 місяців тому

      Didn't the concept for the winglets we now see on commercial planes come from an RC model plane builder!!???

  • @elchupacabra1193
    @elchupacabra1193 Рік тому +3

    So can these shapes and their effects also be applied to toroidal propellers? Because toroidal propellers seem to already be more effective compared to traditional and traditional with these modifications, so are we able to mix the two ideas in a way where we gain even more effectiveness in the toroidal performance for efficiency and sound reduction?

    • @DragonoftheRust
      @DragonoftheRust Рік тому

      I too, am extremely interested in learning this.

  • @MrDino1953
    @MrDino1953 Рік тому +8

    I can just imagine the advertising slogan if such props become commercial; “ribbed for mother nature’s pleasure”.

  • @Company-59
    @Company-59 3 місяці тому

    Wow, this video was super informative and entertaining! I’m a new member, and I just wanted to share something. Being next to a wind turbine isn’t bothering me at all. The slow-moving, huge wings make a low, almost humming noise that’s so soothing. I have relatives who live pretty close to a turbine, and in the summer, it’s like having a natural lullaby. It’s the best! Get some fresh air and enjoy that humming noise that lets me sleep for hours. Cheers!

  • @locouk
    @locouk Рік тому +27

    If these were first tested in 2008 with positive results, why hasn’t extra R&D taken place by the major manufacturers of props?
    The whale being a slow mover has no cavitation to overcome so I find it unlikely it’d be much help with that, an owl on the other hand can fly stealthily with modified feather placement, but with the fluid viscosity being so different, it won’t work in water.

    • @killingtimeitself
      @killingtimeitself Рік тому +1

      and if you scaled up the propeller significantly?

    • @aikenPL
      @aikenPL Рік тому +1

      In my opinion even if it gives small gains in thrust for the boats it might be not profitable from manufacturing perspective. Making this kind of pattern in the stainless steel might not be an easy task. I can imagine it being first introduced in the small scale or in computer fan propellers. Of course if this gives any profits to air flow and acts well in high rpm conditions. Another aspect is if anyone has a patent for that.

    • @locouk
      @locouk Рік тому +4

      @@aikenPL true about the patents especially, they could literally kill it dead in the water due to unreasonable licensing fees. (Pun intended)

    • @w8stral
      @w8stral Рік тому +11

      No it was not tested first in 2008. WAY WAY before this. Decades before this. He needs to do more research. I read a paper as old as 1930's on it. So, it was probably done before then as well. Got me. Most ideas require a lot of $$$ to implement in a mass produced product to change industries.

    • @AC-ln3xu
      @AC-ln3xu Рік тому +1

      @@w8stral could you share the 1930 reference please?

  • @mikenagy938
    @mikenagy938 Рік тому +4

    If you want to talk about advancements in prop design, you might have mentioned the Sharrow prop. Totally different design, uses a third less fuel and produces more power. Used mainly for outboards but i don't see why the wouldn't work on a larger cruising boat.

  • @johnransom1146
    @johnransom1146 Рік тому +10

    Could you combine this with toroidal propellers?

    • @makex_se
      @makex_se Рік тому +6

      Would love to see someone test that

    • @ryshellso526
      @ryshellso526 Рік тому

      Only way to get people to convert is to combine it with a performance enhancing prop.

    • @eestaashottentotti2242
      @eestaashottentotti2242 Рік тому +4

      Same thought.

    • @Linuxpunk81
      @Linuxpunk81 Рік тому

      ​@@makex_seexactly we @rctestflight to take the wheel on this

    • @johnransom1146
      @johnransom1146 Рік тому +1

      Me too. Especially if it improves the life of sea creatures and saves fuel@@makex_se

  • @kodcx2
    @kodcx2 Рік тому +2

    I cannot wait to see the fusion between bionic and the MIT toroidal propellers

  • @streetwind.
    @streetwind. Рік тому +19

    Pretty sure I've occasionally seen such ridged blades used in PC cooling fans for at least a decade now. They pop up now and then when a manufacturer claims a new breakthrough (as they do with every single new fan), and then the next generation after that goes back to being straight-bladed.

    • @bingobongo9340
      @bingobongo9340 Рік тому +3

      Wind turbines too, they got them on the trailing edge for a while now

    • @rasta77-x7o
      @rasta77-x7o Рік тому +3

      I think Noctua still has some ridges along the blades of their fans.

  • @jabberwocky1707
    @jabberwocky1707 Рік тому +4

    I became aware of the 'tubercle effect' at _least_ 10 years ago.
    I'm a a bit surprised it hasn't been adapted to say room fans, as IIRC it moved 50%(?) more air using 20% less energy and was quieter than 'normal' fan blades.

    • @350c10
      @350c10 3 місяці тому

      So maybe it isn't quite as incredible in application. PC fans have had serrated trailing edges for 20 something years though so maybe in that small of an application in a fluid as thin as air it works to reduce noise

  • @peters972
    @peters972 Рік тому +9

    Another interesting propeller design since you asked is one I saw where instead of contra rotating props one of them is essentially a stator, ie fixed, which has produced surprising and promising performance improvements.

    • @voster77hh
      @voster77hh Рік тому +2

      What's surprising about thar? Counter rotatimg.props are not used because of their crazy noise levels giving you no access to civilan airports. Russian military does use them on some models.
      Some militarry argo planes use them as well. The bypass mass flow ratio is way higher.

    • @peters972
      @peters972 Рік тому +1

      @@voster77hh so obvion!

    • @ZirothTech
      @ZirothTech  Рік тому +3

      These are actually on my list of things to look into! Hopefully a video on these will be underway soon

    • @peters972
      @peters972 Рік тому +1

      @@ZirothTech brilliant, ty

    • @A_Haunted_Pancake
      @A_Haunted_Pancake Рік тому +2

      @@voster77hh There are some claims out there,
      that a lot of the Counter rotating prop noise can be avoided,
      if you have a different number of blades on prop 1 and 2.
      Makes sense to me, but I'm not an expert.

  • @laketonadventures
    @laketonadventures Рік тому +3

    It is amazing how nature has such specific complex designs for us to copy, almost like nature itself was made by design!

  • @daniellclary
    @daniellclary Рік тому +7

    I learned about cavitation bubbles while watching vids about steam ocean liners. If a propeller was not made properly, it can cause serious vibrations throughout the ship, and make it uncomfortable for the passengers.
    Interesting to see this kind of innovation, sure don't want to stick your finger in a fan that has teeth though.

    • @Charon-5582
      @Charon-5582 Рік тому +5

      Sticking a finger in a fan is bad whether or not it has teeth.

    • @Gruin
      @Gruin 10 місяців тому

      MAGA people would do it because they were told to do it.......dah

  • @zachjennings1443
    @zachjennings1443 Рік тому +2

    Excellent information, thank you for putting this together. Nature always has the best ideas

  • @indridcold8433
    @indridcold8433 Рік тому +1

    Cavitation is extremely loud! I was in a ferry. The mechanic took me to see the engine room. He was extremely kind and informative. Then a horrible banging and rumble started very suddenly. It felt like the ship had bottomed out. The mechanic said, "cavitation! We just changed that propeller! I'll be back!" He took off running screaming into a walkie talking about what was going on. I do not know why he was so upset. I did not want to anger the mechanic, so did not ask. He came back a few minutes after things smoothened out and apologised. He was not happy at the operation of the ship. But, I never asked him what issues could arise from the cavitation. This video answered the question.

  • @alexandruchirica6190
    @alexandruchirica6190 Рік тому +4

    What would be the benefits if the bionic shape would be implemented on a toroidal propeller? I would be very interested to see some test and what is improved or not with such a propeller :D

  • @jaquigreenlees
    @jaquigreenlees Рік тому +3

    Have you looked at the duo prop? Volvo-Penta introduced the idea a number of years ago, 2 props on the same drive shaft, turning in opposite directions. I can't remember the specific numbers but these props gave significantly better performance.
    Best of all, they backed it up with production. The Volvo-Penta IPS drive for motor yachts comes with duo-props.

    • @billysolhurok5542
      @billysolhurok5542 Рік тому

      I am not familiar with maritime applications. In aviation however,just before the jet age took over,
      aircraft such as the F4U,P47,P51,Seafire FR-47,were built with contra-rotating propellers.
      2 three bladed props. YT has a great video of the only airworthy Seafire FR-47.
      The Seafire FR-47,a Spitfire variant,used this design to neutralize the torque effect of the engine,
      so as to utilize more power on take off from aircraft carriers.
      Contra rotating- opposite rotation,same axis
      Counter rotating-opposite rotation,different axis (P-38)
      Cheers

    • @jaquigreenlees
      @jaquigreenlees Рік тому +1

      @@billysolhurok5542 and the helicopters that have contra rotating props don't need or have a tail rotor.

  • @STRUTZKOFF
    @STRUTZKOFF Рік тому +5

    I live on a sail catamaran. I can hear large ships passing by from my keels it’s crazy how loud they are and the oldest ones are the loudest

    • @drizler
      @drizler Рік тому

      When I was a kid growing up on the St Lawrence River we could hear lakers coming from a few miles away easily. Those big single engine lakers sounded like a rythmic bump bump bump sound if your head was underwater.

  • @Jay_the_Caffeinator
    @Jay_the_Caffeinator Рік тому +1

    Awesomesauce video!! A subject I thoroughly enjoy. I understand the reason for the tubercles. But why are they placed on the trailing edge of the propeller?? Would it be better if some were on the leading edge as well? To help cut down on drag?
    Either way. THANK YOU very much for making this video.

  • @bobwatkins1760
    @bobwatkins1760 Рік тому +5

    What about using golf ball dimples on propellers like was done on Mythbusters to improve MPG on a vehicle? Add that to the whale design then see if that does anything more for efficiency and noise reduction.

    • @ZirothTech
      @ZirothTech  Рік тому +6

      Completely forgot about golf balls, I was so deep into the tubercles research! This is definitely interesting, I'll get digging and see if there is more interesting things to learn on the topic of dimples

    • @bobwatkins1760
      @bobwatkins1760 11 місяців тому

      @@ZirothTech Great to hear!

  • @blairstonehouse
    @blairstonehouse 4 місяці тому +1

    The future of thrust is bright, and Bionic Contra-Rotating Toroidal Propellers are poised to play a pivotal role in shaping that future.

  • @komplettegal
    @komplettegal Рік тому +4

    Seems like mother nature has done this for millions of years and knows what she does

    • @reefjames6302
      @reefjames6302 Рік тому +4

      Mother nature also doesn't spin at thousands of RPM's. Not all the comparisons made are valid, but we definitely can learn a lot from nature! We live in a really interesting age!

    • @dnomyarnostaw
      @dnomyarnostaw Рік тому

      Guided evolution is not a thing, which is why only 1 species of "fish" has tubercles.

    • @manishdyall4779
      @manishdyall4779 Рік тому

      Well... living beings ARE highly advanced technology. WE are all bionanotechnology. I mean look at enzymes, those are bionanomachines.

  • @Max..Q
    @Max..Q 11 місяців тому +1

    I have the feeling that Dr. Fish really is in his element doing miritime science!

  • @randomizer6000
    @randomizer6000 11 місяців тому +3

    I can’t stop laughing about the fact that the biologist’s name is “FRANK FISH”

  • @breadloafbrad
    @breadloafbrad Рік тому

    Dr Fish has to be the greatest name I’ve ever heard

  • @sharkfood
    @sharkfood Рік тому +4

    Would be interesting to combine bionic and toroidal propellers. 🤔

  • @jayerjavec
    @jayerjavec Рік тому

    Biologist, Frank Fish.
    I just love these names that forge your life choices and interest so directly.

  • @BrigantinosDoRoudos
    @BrigantinosDoRoudos 11 місяців тому +3

    You're telling me his name was Dr. Fish?

  • @JonRichfield
    @JonRichfield 8 місяців тому

    Wow man! Good Stuff! I'll be sharing this link. It is not just the propellers that grabbed me, but its resemblance to the strakes that reduce the drag of wind and fluids on towers in storms. I bet we see a tie-in as research continues. Thanks for the show!

  • @rogeraldrich2533
    @rogeraldrich2533 Рік тому +5

    You printed a bionic propeller and you never showed it spinning in water?

  • @RenanDavidSoriaAhumada
    @RenanDavidSoriaAhumada 5 місяців тому

    6:57 why didnt carve holes in the propeller to eject fuild in the low presure area?
    whouldnt that prevent the cavitation bubble explosions?

  • @Troglobitten
    @Troglobitten Рік тому +8

    On the next episode of rctestflight

  • @davidradtke160
    @davidradtke160 Рік тому

    Does combining tubicles and Turodial shape work together?

  • @geechisuede98
    @geechisuede98 Рік тому +4

    I'm wondering if the US Navy already knows about this....and has gone WAY beyond. They cover the propellers of the submarines. Would be interesting to know what they look like.

    • @larryray3178
      @larryray3178 9 місяців тому

      Yes, it would be extremely interesting, especially to a foreign spy. Why do you think the Navy covers them?

  • @NormanInAustralia
    @NormanInAustralia Рік тому

    Thanks!

  • @tim40gabby25
    @tim40gabby25 11 місяців тому +3

    Looks like whale flippers. Time to watch the video..

  • @seanhoude
    @seanhoude Рік тому

    Additive manufacturing at home is going to revolutionize many things. I'm already picturing how easily multiple variations can be produced and tested using plastics, before anything is committed to casts or die molds for metals. 👏

  • @tyraelpl
    @tyraelpl Рік тому +3

    Nice vid. Tho almost every time you say bionic you mean biomimetic.

    • @christopherparis6841
      @christopherparis6841 7 місяців тому

      He clearly tfk says biomimetic wtfk planet are ya on pretty sure it pertains to the prop surface at least in the context that its used in the above video so biomimetic by definition describes relation of prop surface fkn texture as it has relitave effect speeding through water strictly upon cavitation or how it affects prop surface when prop encounters cavitation mainly not fkn destroying the prop using mushroom shaped wtfk ever jfc I didn't graduate 7th grade but even then it's pretty clear like water clear if the listener enjoys entire video or is able to retain attention span of a minute plus lmao. And yes, the apparent lack of punctuation and run on sentences deffinatly proves that 7th grade drop out knowledge!!!!! Lol

  • @Nathe_geo
    @Nathe_geo Рік тому

    Regarding the micro texture (mushroom) that was mentioned. Would a powder coating of lycopodium have similar hydrophobic effects?

  • @cosmefulanito5933
    @cosmefulanito5933 10 місяців тому +9

    Please use the Metric System as used by 94% of humanity.

    • @gooseneckposse240
      @gooseneckposse240 9 місяців тому +1

      This ia AMERICA! Go back to Europe !!😂

    • @larryray3178
      @larryray3178 9 місяців тому +1

      I’m glad they don’t. I hate the metric system. So many writers use it wrong. I once read a story involving a crew member of a space ship being a few centimeters taller than her fellow crew members, described as “towering over them.” Intrigued, and not being very well versed in the metric system, I used a formula to convert it to the standard English system and it turned out that the few centimeters converted to two or three inches. Towered over the others, indeed. If two or three inches is towering over others, then being 5 feet 10 inches tall, I must be a giant. 😅😊

    • @mikefallwell1301
      @mikefallwell1301 8 місяців тому

      Less than 10% of the books written before 1960 use metric. Very few of the Europeans I've met know what a pascal or a dyne is.

  • @nestorreyes5253
    @nestorreyes5253 Рік тому

    We should pobably apply this to cooing and circultion fans, axil pumps (airplane wings too?), chopper rotors, etc. How will it affect torroidal propellers/ fans?

  • @amazeddude1780
    @amazeddude1780 10 місяців тому

    Is it necessary to manufacture the wing or blade as an integrated unit? I'm thinking of the moveable devices on aircraft wings to increase lift- perhaps advancing and retreating the tubercles could maximize overall performance rather than just having one sweet spot.

  • @carlosgiesecke
    @carlosgiesecke Рік тому

    Would this modifications to propellers be applicable to vertical axis wind propellers or turbines?

  • @the.original.throwback
    @the.original.throwback Рік тому

    Hydroelectric generator turbine blades may also benefit from these design improvements if they provide a meaningful efficiency increase and reduce cavitation damage. Mother Nature is a great teacher. Thanks for the video.

  • @nikolabanovic4833
    @nikolabanovic4833 11 місяців тому

    If both toroidal shape and these tubercle-inspired bumps make for quieter propellers, do those benefits stack? Can one make a toroidal propeller with tubercles?

  • @hoofheartedicemelted296
    @hoofheartedicemelted296 Рік тому

    This channel reminds me of “The Shark’s Paintbrush” suggesting wall paint that mimics pond dwelling lily pads that float partially because they’re designed by nature to let water run effortlessly off them promoting buoyancy. You sir are Not all talk. You actually are making a difference. Your friends remind me of Jacques Cousteau. Thank you for the effort and well done indeed sir.

  • @cptcosmo
    @cptcosmo 7 місяців тому

    I came up with a biomimetic propeller design back in 1997 or 1989 while working at Arcturus Marine Systems. I even have a "poor man's patent" of the idea - I mailed drawings and notes of the concept/design to myself in a stamped and sealed envelope. I even put an extra postal stamp on the back of the flap and had it canceled manually before I mailed it to myself, I still have that sitting in my fire safe.

  • @larrysorenson4789
    @larrysorenson4789 14 годин тому

    In a previous century I read about the hydrodynamics if sharkskin. At that time I wondered why submarines were not sheathed with a material with similar characteristics. How hard can it be to mold a vinyl sheet with this texture on it?

  • @romangifford
    @romangifford Рік тому

    Love me some atmospheric mass effect background music. Fantastic and informative video.

  • @rocroc
    @rocroc Рік тому

    I've owned a long string of boats since the age of 16 - 63 years ago. Little boats at first then bigger and bigger boats. I learned about cavitation with my first ski boat. I never gave much thought to it just adjusted the boat to the point where it was most effective. I read about these propeller designs earlier but your information about the whale was very interesting. Manufacturing cost and variability are the prohibitive constraints right now. I think the manufacturing issues will be worked out over time but they will still be costly. The same considerations have been used in wing design for some time. As to creative design, it is what human kind does. One building block at a time, each one enhancing what was done before. Every now and then something new will come along but even in that regard there is most often a history of development. Even some of Einstein's thinking was based on the creative thinking of other individuals. Good report.

  • @solarjeff8462
    @solarjeff8462 Рік тому

    Do you know the manufacturer and model of the 3D printers shown at 9:23 in the video?

  • @parmesanzero7678
    @parmesanzero7678 Рік тому +2

    4:31 180 DECIBELS AS MEASURED FROM WHAT DISTANCE? DECIBELS IS MEANINGLESS AS A MEASURE WITHOUT KNOWING THE DISTANCE AT WHICH IT IS BEING MEASURED.

  • @poporbit2432
    @poporbit2432 10 місяців тому

    Just a simple observation. I was flying a custom home built 30" span rc model with a standerd 6x4x2 blade prop. It behaved like an underpowered aircraft literally hanging on the prop and quickly went down in a farmers field. I recovered the plane and noted the leading edges of the prop were seriously scuffed up as though a sand blaster had hit it. Not having a replacement blade handy, I launched it again. The result was a dramatic performance improvement in speed. However, noise was much greater. The only change I could attribute this to was the blades leading edge.

  • @mac8ist
    @mac8ist Рік тому

    11:47 why are the direction of teeth of the wings opposite compare to the propeller?

  • @Audios2010
    @Audios2010 11 місяців тому

    Natures has had the blueprint from the start, we just needed time to understand how we can work with it. Hopefully a brighter future and deeper respect for nature as we advance as a species

  • @justanamerican9024
    @justanamerican9024 Рік тому

    Thank you for a clear explanation of a subject most do not have a lot of knowledge of. The answer of every question humankind has is in nature, if we take the time to find them.

  • @Cernumospete
    @Cernumospete Місяць тому

    Were there attempts to adapt wing bionicy for propellers?

  • @yobrojoost9497
    @yobrojoost9497 Рік тому +1

    Very interesting! Just shows, again, that nature knows best!

  • @Sorenzo
    @Sorenzo 11 місяців тому

    It's amazing how much improvement we can make to structural engineering by just trying new shapes.

  • @tobyw9573
    @tobyw9573 10 місяців тому

    So, should swimmers hold their fingers together or with the fingers spread? How much?

  • @philliprobinson7724
    @philliprobinson7724 Рік тому

    Hi. The small insects that "walk on water" rely on surface tension. Water forms a "meniscus" because its molecule is polarized. This is why the flat surface of your cup-of-tea curves upwards where it joins the sides of your cup. It can curve downwards too if the sides of your cup are dry. Nice video, thanks. P.R.

  • @haeuptlingaberja4927
    @haeuptlingaberja4927 Рік тому

    Brilliant. Biomemetics is still in its infancy and already shows great promise. But what about the strange propulsion dynamics of squids and octopuses? If there were staggered systems, it would even eliminate the surge and slowing effect.

  • @NotSomeJustinWithoutAMoustache
    @NotSomeJustinWithoutAMoustache 10 місяців тому

    9:39 Judging by the look of this Big Rep fan are they fusing both the tubercle concept and the toroidal shape concept in these fans?? I wonder if it's possible to do all these and also the micro-mushroom surface as well (although I'd imagine such propellers would be hell to mass manufacture) and if so do their effects all stack up or do some of them become less effective, completely cancel out, or even worsen performance when in tandem?

  • @fbussier80
    @fbussier80 Рік тому

    That gems idea sounds outrageous. Truly, truly, outrageous.

  • @BazzaroRealm
    @BazzaroRealm Рік тому

    I have an old prop that’s washed out. Meaning run so much the water grooved the blades. They look just like the bionic prop. Nature was telling me. I just wasn’t looking. In fact, until this video I never gave it a second thought. Thanks man 😊

  • @andreasmuller4666
    @andreasmuller4666 Рік тому +1

    That is highly interesting and almost suprising that it took so long to take off as a field of research. Especially with how many "speed freaks" are into plane and speedboat racing and how much those poor into better drive performance.
    I also wonder if they though about the integration of "shark skin" analogues as they are proven to enhance flow dynamics as well.
    So, would a prop designed in biomimic way, coated with a shark skin like texture be even more efficient?

  • @benjaminfranklin3458
    @benjaminfranklin3458 9 місяців тому

    It’s actually kind of impressive that no-one have though of it long before, plus there are likely hundreds of thousands of other things we can improve by mimicking nature.

  • @alexward1003
    @alexward1003 Рік тому +1

    My background is that of an unlimited ton captain, seeing the toroidal propeller had me thinking about if it could pay for itself by the time it was past its service life. Took in factors such as increased fuel efficiency, better thrust, and less wear and tear on the propulsion system. At the time a started calculating, it unfortunately did not pay for itself. This is in regard to the 45” diameter bronze alloy prop i need to use. I also need 2.
    These bionic propellors have me excited. I need to research the price or a quote but i know they will be a fraction of the cost of a toroidal prop. Not a ton of published testing for the bionic prop but as soon as their is enough info, im hoping the gains can pay for the bionic prop or even start to make me a profit

  • @NeillDuPlessis
    @NeillDuPlessis 11 місяців тому +2

    Loving the SHARROW by VEEM Toroidal props currently under testing, looking forward to seeing the results they produce.

  • @eagleeye761
    @eagleeye761 Рік тому

    That's what I call SCIENCE! Great video!