Dispersion and turbulence: A close relationship unveiled by means of state function

A. Constain, Gina Peña Olarte, C. Guzmán
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Abstract

This article reviews the physical conditions that natural, turbulent flows meet to be considered in “Dynamic Equilibrium”, a condition that greatly facilitates the analysis of flows, thanks to the concept of “equiprobability”, in such a way that the tracer dyes can give an essential information of the dynamics of the current. A general State Function is proposed for this dynamic, which allows to study Advection and Dispersion for virtually all types of river beds, achieving a series of compact and precise relationships, both in hydraulics and thermodynamics. This approach allows us to obviate the limiting use of non-linear differential equations, as "mandatory" characterization of fluid dynamics. With this new method, a practical case from the technical literature is analyzed, and it is solved in detail, comparing it with the classic method of Statistical Moments. Conclusions on results, and recommendations are made.
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色散与湍流:一种由状态函数揭示的密切关系
本文回顾了在“动态平衡”中考虑的自然湍流所满足的物理条件,由于“等概率”的概念,这种条件极大地促进了对流动的分析,因此示踪染料可以提供电流动态的基本信息。一个一般的状态函数提出了这一动态,它允许研究平流和色散几乎所有类型的河床,实现了一系列紧凑和精确的关系,在水力学和热力学。这种方法使我们能够避免非线性微分方程的限制使用,作为流体动力学的“强制性”表征。利用该方法对技术文献中的一个实际案例进行了分析,并与经典的统计矩法进行了比较,对其进行了详细的求解。对结果作出结论,并提出建议。
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