Boost Leaks Test & When Do You See A Power Loss
Вставка
- Опубліковано 30 тра 2024
- As seen on @ThatRacingChannel. In this test, you’ll see that we put together a basic experiment to test how various sized leaks can affect a turbocharged engine. How much harder does a turbocharger have to work to keep up with the set targeted boost? How much horsepower and torque get affected with a little or big leak? How does the engine behave? What does the exhaust back pressure look like during a pull? The results we found are interesting! Let’s take a look.
To learn more about this test, check out our blog with more detailed information: www.realstreetperformance.com...
Intentional Starting Variables:
Test 1: Closed System w/o Leaks - 1:32
Test 2: ~⅛” Hole in Hot Side Charge Pipe - 4:05
Test 3: ~¼” Hole in Hot Side Charge Pipe - 7:20
Test 4: ~½” Hole in Hot Side Charge Pipe - 8:58
Test 5: ~¾” Hole in Hot Side Charge Pipe - 11:17
Test 6: ~1” Hole in Hot Side Charge Pipe - 13:55
Test 7: ~1” Hole w/ More Aggressive Boost Control - 16:12
Constants & Conditions:
Engine: 3.2L 2JZ-GTE w/ Mazworx Wet Block (86.5mm Bore x 90mm Stroke; 1mm o/s Valves)
Fuel: One Ethanol 117R
Turbocharger: 6670 Next Gen Precision Turbo
Turbine Housing: 1.00 A/R T4 Divided
Dyno: Superflow SF-Powermark
Boost Controller Target: 15.0psi
Engine Acceleration Rate: 600 rpm/sec
Start & End RPM: 4,000rpm - 8,100rpm
Engine Coolant Temperature: 187F
Ambient Air Temperature: 75.1F
Density Altitude: 1,384 ft
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I swear I just watched this last week
Yes sir, It was featured on TRC first =)
Excellent video idea, great to see actual data on boost leaks.
Good info...👌🏾
This was very cool! I would assume that a centrifugal supercharger system is much more negatively affected by boost leaks in the charge pipe system, as impeller speed is controlled solely by engine rpm in that case.
I think shaft speed will go up efficiency will go down until you hit the point where the turbo can't flow any more air.
You should do the exact same video but with exhaust manifold leaks. Take the ecu logic out of the equation do a locked 30% wgdc
Intercooler piping diameter, lag vs peak hp at same psi.
Is this a re-upload?
My exact thoughts!
Thought I was trippin
We featured this video on TRC first.
Well you can see how much we all watch Real Street videos!
god id do anything ANYTHING to work there
I’d like to see pipe diameter and intercooler sizing vs lag. Back in the day I could afford a large (Greddy) intercooler before I could a large single turbo and was told it would lag badly. I did it anyway and my datalogs showed little to no difference on street pulls. I’d love to see this quantified on the dyno and know where sizing begins to make an impact!
When I fart it’s about 10psi boost leak
You miss to show the charge temp.
Jokes and you, I can't lose a lot when running all 110 Horses... 😢
EU 3inline 1.2TDI
Dimple ported head v ported head.
I reckon if these holes would have been done on the outside of an elbow the leaks would be more significant. Same, if these leaks would be on the inside of an elbow they'd be less significant. When I have to drill a coupler for a nipple to use as a boost source (not all turbos have a barb on the compressor housing) I usually drill for it on the outside of the elbow.