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Leakage Assessment of Pressure-Exchange Wave Rotors

机译:压力交换波转子的泄漏评估

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摘要

Control of leakage within wave rotors is recognized as a key requirement for efficient operation. Previous studies suggest that experimentally observed performance degradation is substantially due to flow leakage. This work presents a leakage model for predicting leakage-attributed performance degradation of four-port pressure-exchange wave rotors more accurately than previous single-cavity leakage models. The methodology comprehensively considers the leakage paths of the entire device. It combines a wave-rotor quasi-one-dimensional computational fluid dynamics prediction code, experimentally validated for internal gas dynamics with the generalized flow-circuit-modeling capability of a leakage-flow network solver. The computational fluid dynamics program and the network solver step through a series of iterations by sharing common leakage information. Application to a well-instrumented wave-rotor rig is briefly summarized, providing important guidance for the improvement of leakage and performance. The new approach is anticipated to be useful in enhancing the design, operation, and efficiency of a broad class of wave rotors by better understanding leakage and hence designing sealing features to control leakage flows.
机译:控制波动转子内的泄漏是有效运行的关键要求。先前的研究表明,实验观察到的性能下降基本上是由于渗漏引起的。这项工作提出了一种泄漏模型,与以前的单腔泄漏模型相比,该模型可以更准确地预测四端口压力交换波转子的泄漏引起的性能下降。该方法全面考虑了整个设备的泄漏路径。它结合了波转子准一维计算流体动力学预测代码,并通过泄漏流网络求解器的通用流电路建模能力对实验进行了内部气体动力学实验验证。计算流体动力学程序和网络求解器通过共享公共泄漏信息逐步进行了一系列迭代。简要总结了在仪器齐全的波浪旋翼钻机上的应用,为改善泄漏和性能提供了重要的指导。通过更好地理解泄漏并因此设计密封特征以控制泄漏流,预计该新方法将有助于增强各种波动转子的设计,操作和效率。

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