Discover the Mysterious Behavior of Fluid in Polygon Shaped Vortices | Phys.org

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In summary, polygon shaped vortices are swirling patterns of air or fluid that form geometric shapes, such as triangles, squares, or hexagons. They are created by a difference in velocity between two adjacent streams of fluid, which causes a shear force and results in rotation. These vortices can be found in various natural and man-made environments and have significant implications for understanding the behavior of fluids. While they can be manipulated to some extent, controlling polygon shaped vortices remains a complex task with potential applications in fields such as fluid dynamics and aerodynamics.
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CaptainBarbosa
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http://www.physorg.com/news66924222.html%22

Why does the fluid act like this? I'm truly stumped... I would read the published results paper, but I can't pay for it.
 
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1. What are polygon shaped vortices?

Polygon shaped vortices are swirling patterns of air or fluid that form geometric shapes, such as triangles, squares, or hexagons. These vortices are created by the rotation of a fluid, such as air or water, around a central point.

2. How do polygon shaped vortices form?

Polygon shaped vortices form when there is a difference in velocity between two adjacent streams of fluid. This difference in velocity creates a shear force, which causes the fluid to rotate and form a vortex. As the vortex grows, the fluid spins faster and the polygon shape becomes more defined.

3. Where can polygon shaped vortices be found?

Polygon shaped vortices can be found in various natural and man-made environments, such as in the atmosphere, oceans, and even in laboratory experiments. They can also be seen in everyday objects, such as whirlpools, tornadoes, and even the water draining out of a bathtub.

4. What is the significance of studying polygon shaped vortices?

Studying polygon shaped vortices can help us better understand the behavior of fluids and the physical processes that govern them. This knowledge can be applied to various fields, such as meteorology, oceanography, and engineering, to improve our understanding and prediction of natural phenomena.

5. Can polygon shaped vortices be controlled?

While it is possible to manipulate and control vortices to some extent, it is difficult to control polygon shaped vortices due to their complex and unpredictable nature. However, researchers continue to study and develop methods for controlling vortices, which could have potential applications in fields such as fluid dynamics and aerodynamics.

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