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流动可视化研究以改进螺旋泵设计。

Flow visualization studies to improve the spiral pump design.

作者信息

Andrade A, Biscegli J, Sousa J E, Ohashi Y, Nosé Y

机构信息

Department of Bioengineering, Institute Dante Pazzanese of Cardiology, Sao Paulo, Brazil.

出版信息

Artif Organs. 1997 Jul;21(7):680-5. doi: 10.1111/j.1525-1594.1997.tb03722.x.

Abstract

The spiral pump (SP) uses centrifugal and axial pumping principles simultaneously, through a conical shaped impeller with threads in its surface. Flow visualization studies were performed in critical areas of the SP. A closed circuit loop was filled with glycerin-water solution (40%). Amberlite particles (80 mesh) were illuminated by a planar helium-neon laser light (7 mW). The particle velocities were recorded with Kodak (TMAX-400) black and white film, and the flow behavior was studied with a micro video camera and color video printer. The flow visualization studies showed no turbulence or stagnant areas in the inlet and outlet ports of the SP. When using the impeller with one lead, at the top of the threads some recirculation appeared when the total pressure head increased. Two new impellers were made. One of them had the same conical shape with a thread having 2 leads. The second had a thread with 2 leads, but it also had a bigger cone angle. These modifications improved the pump hydrodynamic performance, decreasing the recirculation in pumping conditions that require pressures over 200 mm Hg.

摘要

螺旋泵(SP)同时运用离心和轴向泵送原理,通过表面带有螺纹的锥形叶轮来实现。在螺旋泵的关键区域进行了流动可视化研究。一个闭路循环回路中充满了甘油 - 水溶液(40%)。用平面氦氖激光(7毫瓦)照射80目粒度的Amberlite颗粒。用柯达(TMAX - 400)黑白胶片记录颗粒速度,并用微型摄像机和彩色视频打印机研究流动行为。流动可视化研究表明,螺旋泵的进出口处没有湍流或停滞区域。当使用单头螺纹的叶轮时,当总压头增加时,在螺纹顶部会出现一些回流现象。制作了两个新叶轮。其中一个具有相同的锥形形状,带有双头螺纹。另一个也有双头螺纹,但锥角更大。这些改进提高了泵的流体动力学性能,在需要超过200毫米汞柱压力的泵送条件下减少了回流。

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