School of Mechanical and Aerospace Engineering, Nanyang Technological University, Singapore.
Artif Organs. 2010 Sep;34(9):788-91. doi: 10.1111/j.1525-1594.2010.01090.x.
This article proposes a phenomenological model to predict the leakage flow in the clearance gap of shrouded centrifugal blood pumps. A good washout in the gap clearance between the rotating impeller surfaces and volute casing is essential to avoid thrombosis. However, excessive leakage flow will result in higher fluid shear stress that may lead to hemolysis. Computational fluid dynamics (CFD) analysis was performed to investigate the leakage flow in a miniaturized shrouded centrifugal blood pump operating at a speed of 2000 rpm. Based on an analytical model derived earlier, a phenomenological model is proposed to predict the leakage flow. The leakage flow rate is found to be proportional to h(α) , where h is the gap size and the exponent α ranges from 2.955 to 3.15 for corresponding gap sizes of 0.2-0.5 mm. In addition, it is observed that α is a linear function of the gap size h. The exponent α compensates for the variation of pressure difference along the circumferential direction as well as inertia effects that are dominant for larger gap clearances. The proposed model displays good agreement with computational results. The CFD analysis also showed that for larger gap sizes, the total leakage flow rate is of the same order of magnitude as the operating flow rate, thus suggesting low volumetric efficiency.
本文提出了一种用于预测带罩离心血泵间隙泄漏流量的现象学模型。在旋转叶轮表面和蜗壳之间的间隙中保持良好的冲洗对于避免血栓形成至关重要。然而,过大的泄漏流量会导致更高的流体剪切应力,从而可能导致溶血。对一种在 2000rpm 转速下运行的小型化带罩离心血泵中的泄漏流量进行了计算流体动力学(CFD)分析。基于先前推导出的解析模型,提出了一种现象学模型来预测泄漏流量。研究发现,泄漏流量与 h(α)成正比,其中 h 是间隙尺寸,指数 α 的范围为 2.955 至 3.15,对应的间隙尺寸为 0.2-0.5mm。此外,还观察到 α 是间隙尺寸 h 的线性函数。指数 α 补偿了圆周方向上压差的变化以及在较大间隙中起主导作用的惯性效应。所提出的模型与计算结果吻合良好。CFD 分析还表明,对于较大的间隙尺寸,总泄漏流量与工作流量处于同一数量级,因此表明容积效率较低。