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CFD simulation and investigation on the operating mechanism of a beta-type free piston Stirling engine

机译:β型自由活塞斯特林发动机运行机理的CFD仿真与研究

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摘要

In order to study the operating mechanism of a beta-type free piston Stirling engine, a two-dimensional axisymmetric CFD model is established. Then the model reliability is verified by experiments. The periodic variation of temperature field and flow field in the expansion chamber and compression chamber can be obtained by the model. The motion of gas parcel in heat exchangers can be tracked by appropriate post-processing method which can achieve the transformation of Euler method to Lagrange method. The results present that each gas parcel in the oscillating flow has different thermodynamic process, which is different from the traditional thermodynamic cycle. Due to the elevating of the temperature gradient of gas parcel and the enhancement of the ability of pumping heat, the p-v work of parcels increases with the decreasing of distance between the corresponding gas parcel and the hot end. The regenerator is the main working component of the heat exchangers in that the thermodynamic process of gas parcel is similar to that of a micro-generator.
机译:为了研究β-型自由活塞斯特林发动机的操作机制,建立了二维轴对称CFD模型。然后通过实验验证模型可靠性。通过模型可以获得膨胀室和压缩室中的温度场和流场的周期性变化。可以通过适当的后处理方法跟踪热交换器中的气块在热交换器中的运动,这可以实现欧拉方法的转化为拉格朗日方法。结果显示,振荡流动中的每个气体包裹具有不同的热力学过程,其与传统的热力学循环不同。由于升高气体包裹的温度梯度和泵热能力的增强,P-V的包裹的工作随着相应的气块和热端之间的距离而增加。再生器是热交换器的主工作部件,因为气块的热力学过程类似于微发电机的热力学过程。

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