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Jet pumps for thermoacoustic applications: Design guidelines based on a numerical parameter study

机译:用于热声应用的喷射泵:基于数值参数研究的设计指南

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摘要

The oscillatory flow through tapered cylindrical tube sections (jet pumps) is characterized by a numerical parameter study. The shape of a jet pump results in asymmetric hydrodynamic end effects which cause a time-averaged pressure drop to occur under oscillatory flow conditions. Hence, jet pumps are used as streaming suppressors in closed-loop thermoacoustic devices. A two-dimensional axisymmetric computational fluid dynamics model is used to calculate the performance of a large number of conical jet pump geometries in terms of time-averaged pressure drop and acoustic power dissipation. The investigated geometrical parameters include the jet pump length, taper angle, waist diameter, and waist curvature. In correspondence with previous work, four flow regimes are observed which characterize the jet pump performance and dimensionless parameters are introduced to scale the performance of the various jet pump geometries. The simulation results are compared to an existing quasi-steady theory and it is shown that this theory is only applicable in a small operation region. Based on the scaling parameters, an optimum operation region is defined and design guidelines are proposed which can be directly used for future jet pump design.
机译:通过锥形圆柱管段(喷射泵)的振荡流的特征在于数值参数研究。喷射泵的形状导致不对称的流体动力最终效果,导致在振荡流动条件下发生时间平均的压降。因此,喷射泵在闭环热声装置中用作流抑制器。二维轴对称计算流体动力学模型用于计算大量圆锥形喷射泵几何形状在时间平均压降和声功率耗散方面的性能。研究的几何参数包括喷射泵的长度,锥角,腰部直径和腰部曲率。与先前的工作相对应,观察到四个流态来表征喷射泵的性能,并引入了无量纲参数以缩放各种喷射泵几何形状的性能。将仿真结果与现有的准稳态理论进行了比较,结果表明该理论仅适用于较小的工作区域。基于缩放参数,定义了最佳操作区域,并提出了设计指南,可将其直接用于将来的喷射泵设计。

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