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Investigation of a high frequency pulse tube cryocooler driven by a standing wave thermoacoustic engine

机译:驻波热声发动机驱动的高频脉冲管低温冷却器的研究

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摘要

In this work, a typical thermoacoustically driven pulse tube cooler as a no-moving part device has been investigated by a numerical method. A standing wave thermoacoustic engine as a prime mover in coupled with an inertance tube pulse tube cryocooler has been modeled. Nonlinear equations of unsteady one-dimensional compressible flow have been solved by the finite volume method. The model presents an important step towards the development of nonlinear simulation tools for the high amplitude thermoacoustic systems that are needed for practical use. The results of the computations show that the self-excited oscillations are well accompanied by the increasing of the pressure amplitude. The necessity of implementation of a nonlinear model to investigate such devices has been proven. The effect of APAT length as an amplifier coupler on the performance of the cooler has been investigated. Furthermore, by using Lagrangian approach, thermodynamic cycle of gas parcels has been attained.
机译:在这项工作中,已经通过数值方法研究了一种典型的热声驱动脉冲管冷却器作为不动部件。已经对作为原动机的驻波热声发动机与惯性管脉冲管低温冷却器进行了建模。用有限体积法求解了非稳态一维可压缩流的非线性方程。该模型为实际应用所需的高振幅热声系统的非线性仿真工具的开发迈出了重要的一步。计算结果表明,自激振荡伴随着压力幅度的增加。已经证明了实施非线性模型来研究此类设备的必要性。已经研究了APAT长度作为放大器耦合器对冷却器性能的影响。此外,通过使用拉格朗日方法,已经实现了气体包裹的热力学循环。

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