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Cone Rotating in a Fluid

DOI: 10.4236/ns.2020.121001, PP. 1-3

Keywords: Rotating Cone, No Friction

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Abstract:

When a solid cone with smooth side and base rotates about its long axis in a still fluid, theory says that the cone will advance along the direction of the axis, base first and apex last. Bernoulli’s law for closed streamline loops is combined with the cross-stream force balance between the centrifugal force and a pressure gradient in order to obtain the result, which is believed to be new. Confirmation of the prediction awaits observational evidence.

References

[1]  Batchelor, G.K. (1967) An Introduction to Fluid Dynamics. San Diego, 203.
[2]  Kenyon, K.E. (2019) Bernoulli Loops in Smoke Rings. Natural Science, 11, 285-287.
https://doi.org/10.4236/ns.2019.1110030
[3]  Kenyon, K.E. (2019) Hurricane’s Shear. Natural Science, 11, 270-272.
https://doi.org/10.4236/ns.2019.119028
[4]  Kenyon, K.E. (2017) Asymmetric Solids Move Faster in Water When the Blunter End Leads. European International Journal of Science and Technology (EIJST), 6.
[5]  Kenyon, K.E. (2019) Bernoulli Loop. EIJST, 8.

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