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Towards a Mechanical Analogy of a Quantum Particle: Turbulent Advection of a Fluid Discontinuity and Schroedinger Mechanics: Difference between revisions

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A discontinuity of a turbulent ideal fluid is considered. It is supposed to be split and dispersed, or spread in the stochastic environment forming a gas without hydrostatic pressure. Two equal-mass fragments of a discontinuity are indistinguishable from each other. A gas, that possesses such properties, must behave itself as the Madelung medium.
A discontinuity of a turbulent ideal fluid is considered. It is supposed to be split and dispersed, or spread in the stochastic environment forming a gas without hydrostatic pressure. Two equal-mass fragments of a discontinuity are indistinguishable from each other. A gas, that possesses such properties, must behave itself as the Madelung medium.


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[[Category:Scientific Paper|mechanical analogy quantum particle turbulent advection fluid discontinuity schroedinger mechanics]]

Revision as of 14:33, 1 January 2017

Scientific Paper
TitleTowards a Mechanical Analogy of a Quantum Particle: Turbulent Advection of a Fluid Discontinuity and Schroedinger Mechanics
Read in fullLink to paper
Author(s)Valery P Dmitriyev
Keywordsturbulent ideal fluid, hydrostatic pressure, Mechanical Analogy
Published2000
JournalApeiron
Volume7
Number3-4
No. of pages11
Pages161-172

Read the full paper here

Abstract

A discontinuity of a turbulent ideal fluid is considered. It is supposed to be split and dispersed, or spread in the stochastic environment forming a gas without hydrostatic pressure. Two equal-mass fragments of a discontinuity are indistinguishable from each other. A gas, that possesses such properties, must behave itself as the Madelung medium.