Applying the Navier-Stokes Equations, part 1 - Lecture 4.6 - Chemical Engineering Fluid Mechanics
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- เผยแพร่เมื่อ 5 ก.พ. 2025
- General procedure to solve problems using the Navier-Stokes equations. Application to analysis of flow through a pipe.
[NOTE: Closed captioning is not yet available for this video. Check back soon for updates.]
This video is part of a series of screencast lectures presenting content from an undergraduate-level fluid mechanics course in the Artie McFerrin Department of Chemical Engineering at Texas A&M University (College Station, TX, USA).
The screencasts have been prepared in 720p HD with accompanying closed captioning for enhanced accessibility.
My inspiration for producing this series of videos has been my lifelong personal journey to understand fluid mechanics and explain its beauty to others in a straightforward way. I have received no external support for this project...the effort is purely a labor of love.
I would like to acknowledge Aashish Priye and Jamison Chang for assistance in developing the materials and preparing the captioning.
Please feel free to share any comments or suggestions.
Best wishes,
Victor Ugaz
You have no idea how helpful it was. You taught me in few minutes what my professor should had been done in the whole semester.
My professor as well... Man how can profs be so fuckked in the head?
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Can u explain to me
This is amazing. You're a life-saver. This might actually save me a whole year of my degree, from having to retake the course.
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There was so much pain, you have no idea you helped heal.
I'm not kidding, came here shy of ANY co-ordinate conversion problem, I'm leaving as a champ. You sir, are the best.
you just enlightened my understanding in one day, where would i be without this video, thank you
If you ever want to learn the Navier-Stokes in order to pass your fluids midterm/finals, I advise to watch all 4 parts. He broke this seemingly difficult concept into very very understandable parts.
Couldn't have explained this any better, thank you very much for taking the time to post these videos, very much appreciated.
This has really helped me with my Open University fluid mechanics course for my Engineering degree, your explanations and diagrams are brilliant and I feel much more confident with this topic. Thank you so much
Navies - stokes equation is a general equation in fluid mechanics. It is nice to see the procedure on how to solve it. Thank you sir.
I agree. The best physics videos on the youtube
Thank u a lot. You're helping a guy from Brazil
Maybe a stoopid question.....can we determine a molecule in the X,Y,and Z axis at an exact moment?, and if we can doesn't that answer our flow question?
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Is there a playlist for Shell momentum balance?
thanks a lot for clear me in choosing which component of velocity is zero or not.
this saved me
I’m 14 years old wanting to learn about this is there any tips or anything because I love this topic and it seems interesting to me but I don’t understand it but I will continue and try to understand it even though I’m very young
I wish u make a video about Ideal flow 🙏🙏
You are a life saver thank you so much
you're a life saver thank you so much
I want to model a small gas bubble rising and growing (radius changes) in a liquid. I want to predict its velocity and somehow know something about its equation of state. I think it can be simplified a bit, I just want the bubble to change size. I’m trying to match that with some experimental data. How could I know this given that I’m not looking at the fluid itself, but the bubble?
My question is if this problem can be treated in a simple way like in the video? And where could I get started, readings, to do it? Thanks!! I’m not studying fluid dynamics atm so anything would be very helpful.
great video..simply awesome::)
thank you for helping me udnerstand my hw
Feelin the flow, workin it, workin it...get it flow, fluids? anyway, great videos, thanks!
watch all 4 parts!
hello it was a great video .but i would be heartily grateful to you if you upload some video relating to types of non-Newtonian fluids depicting intergral type differential type and rate type fluids
regards
good explaination man..xD
How do you determine what the driving force for the flow is? Is it given in the problem? Thank you! Great video
+marily tamayo pressure.
L'équation de Navier Stocks définit le scintillement du mouvement d'une vague sur la circonférence de X et de Y .La vague tournoie autour de I dans l'espace avec le temps et dans la matière. Voila ce que je propose.
Thank you
Thank you sir
thanks Victor. im trying to model fluid flow in a rectangular combustion chamber. would it be wise to make the assumption that the chamber is cylindrical and make follow the steps outlined or should i the cartesian coordinate system and try to figure out some of the missing details.
please respond ASAP, my Masters Dissertation depends on it
Thanks alot
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has anyone that has nothing to do with chemical engineering or fluid mechanics or any need to know the navier-stokes eq also stumbled across this video ?
hey, I'm a musician from London and I came to this video after reading that one of the clay millenium problems is related to the navier stokes equations
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Having an exam tmr. Hope me luck
wish* me luck
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Hidden, are acting in the spirit of helping only.
I guess they did not ask himself why I’m doing this, what is my welfare.
Sincerely Salute.
is the point to prove the theory correct? pls excuse my ignorance. stay at home mom was side tracked & stumbled upon. I can explain but never took Calculus so i have no clue how to compose a formula.
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