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Performance prediction and experimental study of Serial-Parallel Centrifugal Pumps

机译:串并联离心泵的性能预测与实验研究

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To study the effect on hydraulic performance of Serial-Parallel Centrifugal Pumps (SPCP) is caused by the nonuniform flow. In fact, the motor of the pump is easily burnout when the pump is working by large flowing capacity and high head. The paper adopted by the velocity triangle theory, the computational formula of the max shaft power and the corresponding flows of the SingleStage Model Pumps (SSMP) is deduced under the condition of non-uniform flow. The flow deviations angles (γ) are firstly introduced in the blades inlet and outlet of the pumps. And they are extended in the SPCP in two different working statuses: series status and parallel status. Based on the computational fluid dynamics (CFD), the internal flow fields of the pumps are gained. The results show that under the planned working condition, the head errors and power errors are both kept within 5% and the correctness of numerical simulation results is identified. By comparing the values of γ in different working conditions, it can be found that the non-uniform flow in serial working status is more obvious than that in parallel working status.
机译:为了研究串联流量不均对串并联离心泵(SPCP)的水力性能的影响。实际上,当泵以大流量和高扬程工作时,泵的电动机很容易烧坏。本文采用速度三角理论,推导了在非均匀流量条件下单级泵的最大轴功率及相应流量的计算公式。首先在泵的叶片进口和出口引入流量偏差角(γ)。它们在SPCP中以两种不同的工作状态扩展:串联状态和并联状态。基于计算流体动力学(CFD),获得了泵的内部流场。结果表明,在计划的工作条件下,机头误差和功率误差均保持在5%以内,并证明了数值模拟结果的正确性。通过比较不同工况下的γ值,可以发现连续工作状态下的非均匀流动比平行工作状态下的非均匀流动更为明显。

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