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A Comparison of three-bladed and four-bladed Inducers at On and Off Design Flow Rates

机译:开和关设计流速下三叶和四叶感应器的比较

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A computational fluid dynamic comparison was performed between on-design and off-design flow rates through a four-bladed and a three-bladed axial pump inducer. The simulations were run time-resolved and with two phases (water and water vapor). Turbulence modeling employed the realizable k-ε model and cavitation was predicted using the Rayleigh-Plesset model. The solution discretization is second order accurate in space and first order accurate in time. The results show classical breakdown curves for all four cases. Breakdown is the condition where the entire flow path in the inducer becomes filled with vapor and the head rise over the inducer is decreased dramatically. The purpose of this paper is to compare performance behaviors between a three-bladed and four-bladed inducer operating at on-design and off-design flow rates. Certain rotating instabilities have previously been observed with the four-bladed inducer and we investigate whether similar instabilities exist for a three-bladed geometry. We also investigate how off-design operation affects the stability of both inducer geometries.
机译:通过四叶片和三叶片轴向泵诱导器在设计流量和非设计流量之间进行了计算流体动力学比较。仿真是在时间上进行的,分为两个阶段(水和水蒸气)。湍流模型采用可实现的k-ε模型,并使用Rayleigh-Plesset模型预测空化。解离散化在空间上是二阶的,在时间上是一阶的。结果显示了所有四种情况的经典击穿曲线。击穿是指诱导器中的整个流路充满蒸汽,并且压头在诱导器上的上升大大降低的情况。本文的目的是比较以设计流量和非设计流量运行的三叶片和四叶片诱导器之间的性能行为。以前使用四叶诱导器已经观察到某些旋转不稳定性,我们研究了三叶几何形状是否存在类似的不稳定性。我们还研究了非设计运行如何影响两个诱导器几何形状的稳定性。

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