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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Study on characteristics of vortex structures and irreversible losses in the centrifugal pump
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Study on characteristics of vortex structures and irreversible losses in the centrifugal pump

机译:离心泵涡旋结构和不可逆损耗的特性研究

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摘要

The development of flow control methods in the centrifugal pump relies on further understanding of the characteristics of vortex structures and their irreversible losses. In this paper, the detached eddy simulation is conducted on a model centrifugal pump, which shows a good agreement with the experiment. Combining with three generations of vortex identification methods (vorticity, Q criterion, omega and Liutex methods) and entropy production analysis, the results show omega and Liutex methods are highly recommended to analyze the vortex structures. Vorticity is the key factor to promote the energy dissipation, and the irreversible losses of vortex areas can be lower than their surroundings when there exists smaller vorticity or higher rotation strength. Concerning the pressure pulsation induced by vortex shedding, it is unreasonable to analyze this unsteady process via vortex structures identified by iso-surface because of the restriction of the threshold. In comparison, the change of integral length is more related to the pressure pulsation.
机译:离心泵中流动控制方法的发展依赖于进一步了解涡流结构的特性及其不可逆损失。在本文中,在模型离心泵上进行了分离的涡流模拟,其与实验表现出良好的一致性。结合三代涡旋识别方法(涡旋,Q标准,OMEGA和LIUTEX方法)和熵生产分析,结果表明欧米茄和LIUTEX方法强烈建议分析涡流结构。涡度是促进能量耗散的关键因素,并且当存在较小的涡流或更高的旋转强度时,涡旋区域的不可逆损耗可能低于周围环境。关于涡流脱落引起的压力脉动,由于限制阈值,通过涡旋结构分析该不稳定过程是不合理的。相比之下,整体长度的变化与压力脉动有关。

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