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Civil Engineering Knowleadge
Приєднався 9 лис 2020
Welcome to BuildTech Insights, a dedicated #UA-cam channel unveiling the captivating world of #civilengineering. We provide an in-depth exploration of the design, creation, and maintenance of our built environment. Our content, ranging from #innovative construction #technology to iconic #infrastructure projects, is designed to educate, inspire, and engage.
Our #videos simplify complex engineering concepts, making them accessible for everyone, from students to professionals and the curious. We cover how skyscrapers, bridges, and tunnels are planned and built, and discuss challenges and solutions in sustainability, disaster resilience, and urban planning.
At BuildTech Insights, we believe #civil engineering is about shaping societies and improving lives. We aim to showcase its #creativity, innovation, and impact. Join us in exploring the marvels of civil #engineering!
Join us in #exploring the marvels of civil engineering on BuildTech #Insights!
Our #videos simplify complex engineering concepts, making them accessible for everyone, from students to professionals and the curious. We cover how skyscrapers, bridges, and tunnels are planned and built, and discuss challenges and solutions in sustainability, disaster resilience, and urban planning.
At BuildTech Insights, we believe #civil engineering is about shaping societies and improving lives. We aim to showcase its #creativity, innovation, and impact. Join us in exploring the marvels of civil #engineering!
Join us in #exploring the marvels of civil engineering on BuildTech #Insights!
How to decide size of footing | #designofconcretestructures #construction
Calculating the area of the footing is crucial in structural engineering for several reasons:
Load Distribution: The area of the footing determines the amount of soil the structure interacts with. A properly sized footing spreads the load from the structure evenly to the soil underneath, preventing localized soil failure and ensuring structural stability.
Bearing Capacity: By calculating the area of the footing, engineers can ensure that the pressure exerted by the structure on the soil does not exceed its bearing capacity. This prevents settlement, tilting, or even structural failure.
Structural Integrity: Properly sizing the footing ensures that the structure can resist external forces such as wind, seismic activity, and live loads without excessive deformation or failure.
If the area of the footing is not calculated properly, several disadvantages can arise:
Structural Failure: An undersized footing may lead to excessive settlement or even collapse of the structure, especially in areas with weak or compressible soil.Uneven
Settlement: Unequal distribution of load due to improperly sized footings can cause differential settlement, leading to cracks in the structure and potential structural instability.
Costly Repairs: Rectifying foundation issues due to inadequate footing size can be expensive and time-consuming, requiring retrofitting or even complete reconstruction of the foundation.
In summary, accurately calculating the area of the footing is essential for ensuring the structural integrity, stability, and longevity of a building. Improperly sized footings can lead to a range of structural problems and compromise the safety of the entire structure.
Load Distribution: The area of the footing determines the amount of soil the structure interacts with. A properly sized footing spreads the load from the structure evenly to the soil underneath, preventing localized soil failure and ensuring structural stability.
Bearing Capacity: By calculating the area of the footing, engineers can ensure that the pressure exerted by the structure on the soil does not exceed its bearing capacity. This prevents settlement, tilting, or even structural failure.
Structural Integrity: Properly sizing the footing ensures that the structure can resist external forces such as wind, seismic activity, and live loads without excessive deformation or failure.
If the area of the footing is not calculated properly, several disadvantages can arise:
Structural Failure: An undersized footing may lead to excessive settlement or even collapse of the structure, especially in areas with weak or compressible soil.Uneven
Settlement: Unequal distribution of load due to improperly sized footings can cause differential settlement, leading to cracks in the structure and potential structural instability.
Costly Repairs: Rectifying foundation issues due to inadequate footing size can be expensive and time-consuming, requiring retrofitting or even complete reconstruction of the foundation.
In summary, accurately calculating the area of the footing is essential for ensuring the structural integrity, stability, and longevity of a building. Improperly sized footings can lead to a range of structural problems and compromise the safety of the entire structure.
Переглядів: 58
Відео
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Importance and components of material in road construction
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Переглядів 666 місяців тому
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Переглядів 3743 роки тому
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Переглядів 7083 роки тому
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Переглядів 2,7 тис.3 роки тому
Calculation of Load acting on column Beam Wall and Slab (Part-1)
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10 important rules should be followed for column Design
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Relief displacement: object lying on datum at a distance ha from mean sear level
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difference between statically determinate and indeterminate structures
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Переглядів 943 роки тому
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Areya bralex sud 4u.kl/rcstell.pipe sump versteel.km.pundpitchbadj.pj.oring.add.bendingbor detroymoment pic steesstlemoment .E.elastick.lock.fee.lock.
Avoid termites and capillary and also protect to reinforced corrosion
This is nice instructive video for me....❤Could you please share with me structural design from A-Z
Yes, sure
Nice explain..thankyou.
Mam, in interior column orientation, you have mentioned the beam size as 3m on right side. It is wrong. It is 4m. So, this difference also 1m. In plus symbol, both the beam differences are also 1m. Then how to orient the interior column? Please explain this.
Very much usual for Civil Engineering Exam. Appreciate it. can you please explain theory on Ferrocement
Sure.
Mam can you provide pdf mam
Your way of explaining is good Easily understandable..
Very good explanation
Keep watching
Avoid the water seepage come from the earth to wall. DPC also is the one of way to avoid the water seepage. And foundation protected by the bitumen coating to the long time period
For damp proofing
❤
Helpful, please upload shortcut formulas of civil Engineering
very usefull vedio. Kindly upload more questions like this as its helpfull for us like enginnerroing students. Time saver🎉
Sure we would do more vedio. Thank you for watching. Please share as its helpfull to someone😇
955 became to 966 subs by me...
Thank you very usefull
Great explanation🎉
Load calculation class you can teach in online pls ?
Please upload the third part.
I m interested in joining
Nice usefull video...really i like ...it.❤👍👌
Nice good usfull videos...❤👍👌
Hi dear.. i have one doubt . Already we are make g+1 house in collum 9"×12" size 18 mm dia 4 numbers 12 mm dia 2 number. So i can construct one more floor in same collum?? Pls reply dear🙏
I subscribe to your chennal 👍❤
I have a question
Thanku
and its analysis
explain about secondary beams
Thank
👍great 👍
Nice explanation..but ma'am u have committed some mistakes here and there in your video by deviating from IS 456. Please go through it.
How to change Sand and aggregates to cubic feet
Thanks, well explained Why steel bar volume is not considering
How you decide if a square or circular column
Verygood
Good explanation madam. Please upload mix Design of concrete
Nice thannks for sharing
Ma'am plss do one video for How to prepare the Building estimation
Ok
Excellent madam explanation is too good easy to understand, Thanks
Thanks pa share to your friends ❤️
Highlytalenteddtrcturalengineerthpughtfullrxplnanationkudosgorthatbestwishesgodblessu
Easily explained mam superb 👍👌
I want to join great opportunity only 2100 per month we won't get this chance again. Mam please tell me how to connect you.
You can just write all your details orelse either your email id or number
@@civilengineeringknowledge632 dharmesh256@gmail.com
Please contact me through email id madam I'll just join to class
@@Exclusivemanasukannadati ok check your email
Badia ho
Mam well explained 👏👏👏👏
Thanku pa
Hi asheini how are you
Yes good explain..👍👌
Hi ashwini how are you dear??
Very helpful
Please add more such vedio
Superb explanation.. Very good for freshers.. Please continue on more and more vedio. Best for interview
Greatful for your response sir
Dear ma'am , the way you are explaining is really very nice. So attracting also. But when comes to quality of the content, it was not upto mark. Please go through it before making any video why because so many freshers are watching your channel and they may be wrongly guided technically.
Could you help me understand what was wrongly guided😊
I/A...moment inershear shake .A.€o.in slab or beam.pinpilo.
Why We Should Assume The Size Of The Column While Calculating The Total Load On Column... Without Size Of The Column, Can We Find The Total Load Acting On Column?
Good question but without assumtion of atleast minimum size of the column it's not possible to calculate the load acting on particular building. It's one the essential part.
Fine
Please consider in this vedio minimum depth of foundation is around 5 feet for a small residential building from ground level or at least 1.50 times the width of footing. In cold climates the depth of footing is Kept at a minimum of 1.50m below surface because of possible frost action.
Superb explanation madam
Column no 7 seven can not be same as 1 because d and बारे different