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DESIGN OF A TURBOPISTON PUMP GUIDED BY COMPUTATIONAL ANALYSIS

机译:基于计算分析的涡轮增压泵设计

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An innovative pump, TurboPiston Pump (TPP), has been invented to incorporate the merits of centrifugal, axial, and positive displacement pumps. The TPP is designed to deliver large flow rates with a potential at high pressure of up to 1000 psia with one stage. To improve the original design, an understanding of the flow behavior inside the pump is needed. The objective of this study is to simulate the flow field inside the pump and study its performance to guide the design process. This study includes modeling the pump with the transient sliding mesh scheme using a commercial computational fluid dynamics solver, ANSYS/FLUENT. The flow pattern, static pressure distribution, and total pressure losses are calculated and analyzed. The regions of high total pressure losses and potential creation of cavitation are identified. A plastic demonstration model and a metal prototype have been fabricated based on the result of the CFD analyis.
机译:已经发明了一种创新的泵TurboPiston Pump(TPP),它结合了离心泵,轴向泵和容积泵的优点。 TPP的设计目的是在一级压力下提供高达1000 psia高压的大流量流量。为了改善原始设计,需要了解泵内部的流动行为。这项研究的目的是模拟泵内部的流场,并研究其性能以指导设计过程。这项研究包括使用瞬态滑动网格方案使用商业计算流体动力学求解器ANSYS / FLUENT对泵进行建模。计算并分析了流型,静压分布和总压力损失。确定了总压力损失高和可能产生气蚀的区域。根据CFD分析的结果,制造了一个塑料演示模型和一个金属原型。

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