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Flow Analysis of the Cleveland Clinic Centrifugal Pump

机译:克利夫兰诊所离心泵的流量分析

摘要

An implantable ventricular assist rotordynamic blood pump is being developed by the Cleveland Clinic Foundation in cooperation with the NASA Lewis Research Center. At the nominal design condition, the pump provides blood flow at the rate of 5 liters per minute at a pressure rise of 100 mm of mercury and a rotative speed of 3000 RPM. Bench testing of the centrifugal pump in a water/glycerin mixture has provided flow and pressure data at several rotative speeds. A one-dimensional empirical based pump flow analysis computer code developed at NASA Lewis Research Center has been used in the design process to simulate the flow in the primary centrifugal pump stage. The computer model was used to size key impeller and volute geometric parameters that influence pressure rise and flow. Input requirements to the computer model include a simple representation of the pump geometry. The model estimates the flow conditions at the design and at off-design operating conditions at the impeller leading and trailing edges and the volute inlet and exit. The output from the computer model is compared to flow and pressure data obtained from bench testing.
机译:克里夫兰诊所基金会与美国宇航局刘易斯研究中心合作,正在开发一种植入式心室辅助转子动力血泵。在标称设计条件下,泵以100毫米汞柱的压力上升和3000 RPM的旋转速度提供每分钟5升的血流量。在水/甘油混合物中对离心泵进行的台架试验提供了几种转速下的流量和压力数据。 NASA Lewis研究中心开发的基于经验的一维基于泵的流量分析计算机代码已用于设计过程中,以模拟主离心泵阶段的流量。该计算机模型用于确定影响压力上升和流量的关键叶轮和蜗壳几何参数的大小。计算机模型的输入要求包括泵几何形状的简单表示。该模型估算叶轮前缘和后缘以及蜗壳入口和出口处设计时和非设计运行时的流动状况。将计算机模型的输出与从工作台测试获得的流量和压力数据进行比较。

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