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Computational fluid dynamics simulation of open ended thermoacoustic prime mover with straight and tapered resonator

机译:具有直线和锥形谐振腔的开放式热声原动机的计算流体动力学模拟

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A thermoacoustic refrigerator driven by a thermoacoustic primemover is an effective way to produce durable and long lasting refrigeration due to high reliability, no exotic materials, and no moving parts. Resonator geometry is also one of the important factors that influence the performance of a thermoacoustic prime mover, namely, frequency. Computational fluid dynamics simulation of performance comparison of thermoacoustic prime mover with a straight and tapered resonator is chosen for the present study under an identical stack condition with the air as a working fluid. The frequency and pressure amplitude of oscillations obtained from simulation results were found to be more in the tapered resonator than the straight resonator. Apart from computational fluid dynamics simulation, the simulation studies have also been conducted using design environment for low-amplitude thermoacoustic energy conversion, which predicts the performance of thermoacoustic primemover comparatively well. Simulation results from computational fluid dynamics and design environment for low-amplitude thermoacoustic energy conversion were compared and found to be matching well, representing the good validity of computational fluid dynamics modeling.
机译:由热声预热器驱动的热声制冷机由于具有高可靠性,无异物和无运动部件,因此是产生持久耐用的制冷的有效方法。谐振器的几何形状也是影响热声原动机性能(即频率)的重要因素之一。在本研究中,在以空气为工作流体的相同堆垛条件下,选择了带有直线和锥形谐振腔的热声原动机的性能比较的计算流体动力学模拟。从仿真结果获得的振荡的频率和压力幅度在锥形谐振器中比在直线谐振器中更大。除了计算流体动力学模拟外,还使用低振幅热声能量转换的设计环境进行了模拟研究,从而可以较好地预测热声预热器的性能。比较了来自计算流体动力学和设计环境的低振幅热声能量转换的仿真结果,发现它们匹配良好,代表了计算流体动力学建模的良好有效性。

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