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COMPUTATIONAL FLUID DYNAMICAL ANALYSIS OF COMPLEX INTERNAL FLOWS IN CENTRIFUGAL PUMPS

机译:离心泵复杂内部流动的计算流体动力学分析

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A commercial computational fluid dynamics (CFD) computer code was employed to compute the flow field from 105 percent down to 21 percent of the 4525 gpm BEP flowrate of a 1785 rpm, 1500 specific speed impeller of 13,000 suction specific speed. Suction and discharge recirculation were both computed, and the results agreed in all details that have also been observed experimentally. The insights gained from these computations led to the design and construction of a new impeller aimed at smoother minimum flow operation. The same code was then applied to the computation of the highly three-dimensional flowfield of the diffusing crossover of a 325 gpm, 3580 rpm, 900 to 1000 specific speed multistage volute pump. Flow distortions produced by this crossover were computed at the outlet to the impeller of the succeeding stage, and the effects on performance were estimated. Candidate improvements to the crossover were evaluated with the same code, illustrating the utility of CFD as a design and improvement tool. This tool can be used to improve pump performance and reliability in many different areas.
机译:采用商业计算流体动力学(CFD)计算机代码来将流量场从1385 rpm,1500个特定速度速度为13,000尺寸的速度为13,000尺寸速度的105%降至21%。计算和排放再循环均计算,并在实验观察的所有细节中同意的结果。从这些计算中获得的见解导致了一种设计和构造,该叶轮的设计和构造旨在更光滑的最小流动操作。然后将相同的代码应用于325GPm,3580RPM,900至1000个特定速度多级蜗壳泵的漫射交叉的高度三维流场的计算。通过该交叉产生的流动畸变在后续阶段的叶轮的出口处计算,估计对性能的影响。通过相同的代码评估对交叉的候选改进,说明CFD作为设计和改进工具的效用。该工具可用于改善许多不同区域的泵性能和可靠性。

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