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Investigation on the pressure drop characteristics of cryocooler regenerators under oscillating flow and pulsating pressure conditions

机译:振荡流动和脉动压力条件下低温冷却器蓄冷器的压降特性研究

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摘要

This paper proposes a new oscillating flow model of the pressure drop in oscillating flow through regenerator under pulsating pressure. In this oscillating flow model, pressure drop is represented by the amplitude and the phase angle with respect to the inlet mass flow rate. In order to generalize the oscillating flow model, some non-dimensional parameters, which consist of Reynolds number, Valensi number, gas domain length ratio, oscillating flow friction factor and phase angle of pressure drop, are derived from a capillary tube model of the regenerator. Two correlations in the model are obtained from the experiments for the twill square screen regenerators under various operating frequencies and inlet mass flow rates. It is found that the oscillating flow friction factor is a function of Reynolds number while the phase angle of pressure drop is a function of Valensi number and the gas domain length ratio. Experiment also shows the effect of the mesh weave style on the oscillating flow friction factor and the phase angle. Proposed oscillating flow model can accurately describe the amplitude and the phase angle of the pressure drop through the regenerator.
机译:本文提出了一种新的振荡流模型,该模型是在脉动压力下通过再生器的振荡流中的压降。在此振荡流模型中,压降由相对于入口质量流率的幅度和相角表示。为了推广振荡流模型,从蓄热室的毛细管模型中导出了一些无量纲的参数,包括雷诺数,瓦伦西数,气域长度比,振荡流摩擦系数和压降相角。 。从斜纹方筛再生器在各种工作频率和入口质量流量下的实验中,获得了模型中的两个相关性。发现振荡流动摩擦因数是雷诺数的函数,而压降的相角是瓦伦西数和气域长度比的函数。实验还显示了网眼编织方式对振荡流动摩擦系数和相角的影响。提出的振荡流模型可以准确地描述通过蓄热器的压降的幅度和相角。

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