#VortexShedding
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engineering-courses · 8 days ago
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What is a wake region, and why is it so crucial in aerodynamics? In this video, we delve into the fascinating world of fluid dynamics to explore the wake region—the area of recirculating flow behind a moving or stationary object.
Discover how this phenomenon impacts everything from drag and stability to the efficiency of vehicles and structures. Using examples like flow over cylinders and vehicles, we’ll explain why wake regions create low-pressure zones, induce drag, and shed vortices.
Learn why studying and controlling wake regions is vital in external aerodynamics, ensuring better performance and stability at high speeds.
If you’re interested in speaking with our experts from Scania, Mercedes, and Nissan, and scheduling a personalized career plan, call us at +91-9342691281 or register here: https://bit.ly/3VTn6ex
Hit like and subscribe for more deep dives into aerodynamics, fluid dynamics, and engineering concepts!
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kalgalen · 6 years ago
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Mer u coward post the breddy Ed here, I came looking for him and almost cried because he wasn't here, lemme!!!! Reblog!!!!!
GHFGHDSC BUT ITS SO ROUGH
fine here he is, one hansdom paladin of apollo
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specific-music-siblings · 6 years ago
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Caring is Creepy by The Shins, but you’re the last one left. You think. You hope not, of course. But you think.
You take careful steps through the rubble of a ruined city, dust and sand blowing through the wrecked buildings. Your little yellow radio, covered in stickers and ever faithful, belches out song after song from an automated station. Those little batteries must be dying, you think. Every time the song cuts out, you give the radio a little smack to bring it back.
You have to leave the radio on. If anyone is left, they’d broadcast it. You’re certain. And so you wait, and listen, and walk on.
Requested by @vortexshedding. I hope you like it!! The “poor signal” effect is new to this edit.
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timothylo-blog · 9 years ago
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Visualization of Cylinder Flow Unsteady Behavior (via https://www.youtube.com/watch?v=XSzWPn2fZ90)
Still trying to figure out the cause of the spikes in our first data set, we hypothesized that it may be the result of an unsteady behavior. Though this video only characterizes the velocity field around a cylinder, we can apply Bernoulli’s Equation to relate these changes to pressure variation.
Notice that at the top and bottom of the cylinder (in other words 90° and 270°) the velocity and pressure change quickly close to the surface. We thought that it may have been possible that the spikes in our plots were results of the wide variation of pressure with time at these locations. Since the LabView program was averaging 10 samples for every recorded value, our data values could have been greatly skewed by a few outliers. As such, we considered changing the data sampling rate and rerunning the experiment.
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wb-lovesyou-blog · 10 years ago
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I love when my intuition blossoms into existence justifying synchronicity. Thank you Kevin Parker for living up to my expectations and pushing rock n roll into the next frontier. Artists must be willing to adapt, people must adapt and this is that this album is about #tameimpala #currents #synchronicity #psychrock #futurerock #adaptation #fluiddynamics #vortexshedding #particlewaveduality #stringtheory
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wb-lovesyou-blog · 10 years ago
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Listening to the leaked new Tame Impale album 'Currents' like... #fuck #vortexshedding #fluiddynamics #ascension #transmutation #selfactualization #magick #aleistercrowley #tameimpala #currents #tameimpala @tame__impala @wblovesyou
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