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Numerical Investigations On Flow Behaviour And Energy Separation In Ranque-hilsch Vortex Tube

机译:Ranque-hilsch涡流管内流动特性和能量分离的数值研究

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A three-dimensional numerical model of Ranque-Hilsch vortex tube has been developed using the commercial CFD code (Star-CD) to analyze the flow parameters and energy separation mechanism inside the tube. Investigations have been done on the variation of fluid properties and flow parameters as the fluid particles progress in the flow field by tracking different particles exiting through the hot and cold end. Fluid properties like stagnation temperature, static temperature, static pressure and total pressure and flow parameters like axial, radial and swirl velocities are obtained along the axial and radial directions to understand the flow behaviour inside the tube. The presence of free vortex zone inside the tube also has been investigated. Possible energy transfer mechanisms are discussed and an estimate has been made on the magnitude of energy transfer from the cold end exit flow to hot end exit flow. Effects of secondary circulation and length of the tube on energy separation also have been evaluated.
机译:使用商业CFD代码(Star-CD)开发了Ranque-Hilsch涡流管的三维数值模型,以分析管内的流动参数和能量分离机理。随着流体颗粒在流场中的流动,通过跟踪通过热端和冷端流出的不同颗粒,对流体特性和流动参数的变化进行了研究。沿着轴向和径向方向获得流体特性(例如停滞温度,静态温度,静态压力和总压力)以及流动参数(例如轴向,径向和旋涡速度),以了解管内的流动特性。还研究了管内自由涡流区的存在。讨论了可能的能量传递机制,并对从冷端出口流向热端出口流的能量传递幅度进行了估算。还评估了二次循环和管的长度对能量分离的影响。

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