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Numerical investigation on flow behavior and energy separation in a micro-scale vortex tube

机译:微型旋涡管内流动行为和能量分离的数值研究

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There are a few experimental and numerical studies on the behaviour of micro-scale vortex tubes. The intention of this work is to investigate the energy separation phenomenon in a micro-scale vortex tube by using the computational fluid dynamic. The flow is assumed as steady, turbulent, compressible ideal gas, and the shear-stress transport sst k-w is used for modeling of turbulence phenomenon. The results show that 3-D CFD simulation is more accurate than 2-D axisymmetric one. Moreover, optimum cold-mass ratios to maximize the refrigeration-power and isentropicefficiency are evaluated. The results of static temperature, velocity magnitude and pressure distributions show that the temperature-separation in the micro-scale vortex tube is a function of kinetic-energy variation and air-expansion in the radial direction.
机译:关于微尺度涡管的行为,已有一些实验和数值研究。这项工作的目的是通过使用计算流体动力学来研究微型旋涡管中的能量分离现象。假定流动是稳定的,湍流的,可压缩的理想气体,并且将剪切应力传递sst k-w用于湍流现象的建模。结果表明3-D CFD仿真比2-D轴对称仿真更准确。此外,评估了最佳冷质量比以最大化制冷功率和等熵效率。静态温度,速度大小和压力分布的结果表明,微型旋涡管中的温度分离是动能变化和径向空气膨胀的函数。

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