Comparison of an analytical and computational fluid-dynamics models of a commercial Ranque-Hilsch vortex tube operating with Air and Methane

Luz M Ahumada, A. B. Silvera, Kevin Andres Melendez Valencia, Julio Medina Suarez
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Abstract

This paper presents a comparison between the behavior predicted by a computational fluid-dynamic model (CFD) and an analytical model for a commercial vortex tube using air and methane as working fluids, in addition to a three-dimensional mesh for this purpose. The numerical simulation of the turbulent, compressible and high vorticity flow was carried out using RANS equations, the Realizable k-e turbulence model and STAR-CCM+ as software for the equations solution. The variables measured in this work were temperature, pressure and velocity at the exit nozzles of the vortex generator and the tube discharges, resulting in errors of less than 16% between CFD and the analytical model. This numerical study represents a first approximation of the vorticityphenomenon and has been developed in order to establish a prototype simulation model that provides, under certain inlet conditions to the process, preliminary information on the vortex tube industrial implementation for obtaining liquefied natural gas.
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商业Ranque-Hilsch涡旋管在空气和甲烷中运行的分析和计算流体动力学模型的比较
本文比较了以空气和甲烷为工质的商业涡旋管的计算流体力学模型(CFD)和解析模型的预测行为,并为此建立了三维网格。采用RANS方程、Realizable k-e湍流模型和STAR-CCM+软件对湍流、可压缩和高涡度流动进行了数值模拟。本工作测量的变量为涡旋发生器出口喷嘴的温度、压力和速度以及管道的流量,计算结果与分析模型误差小于16%。该数值研究代表了涡度现象的初步近似,并已发展为建立一个原型模拟模型,该模型在一定的进口条件下为该过程提供涡管工业实施的初步信息,以获得液化天然气。
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