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AN ANALYSIS OF THE FLOW FIELDS WITHIN GEOMETRICALLY-SIMILAR MINIATURE SCALE CENTRIFUGAL PUMPS

机译:几何相似小尺度离心泵内的流场分析

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Thermal management has become a key constraint in the development of contemporary electronics systems. It is evident that heat fluxes are currently approaching the limits of conventional forced air cooling, and that liquid cooling technologies are now under consideration. As the space available to incorporate a pump is often limited, miniature-scale pumps are required. Because such pumps operate at low Reynolds numbers, their operation may deviate from that predicted from the conventional pump scaling laws, and their efficiencies reduced. This paper investigates such deviations, and reduced efficiency, through experimental measurements of the performance of two geometrically-similar pumps of - a fully scaled pump of diameter 34.3mm, and a half scale version of the same construction. A facility for the measurement of bulk pressure-flow performance characteristics is described. Particle Image Velocimetry (PIV) measured velocity profiles were extracted at varying radii in the blade passages, and at varying angular positions in the volutes. The absolute, relative, radial and whirl velocity vectors were evaluated for each flow field at three operating points and compared with conventional pump theory. The data was plotted non-dimensionally to investigate points of similitude. Fluidic phenomena occurring in the impellerrnpassage at both pressure and suction sides of the impeller blades are addressed. The theoretical velocity triangles occurring at the impeller tip are compared with the experimental data. The blade angle at inlet and discharge are found to have a large bearing on the poor pumping performance. The quantitative velocity characteristics are discussed in the context of efficiency degradation at decreasing Reynolds numbers.
机译:热管理已成为当代电子系统发展的关键约束。显然,热通量目前已接近常规强制空气冷却的极限,并且液体冷却技术也正在考虑之中。由于组装泵的可用空间通常有限,因此需要微型泵。由于此类泵在低雷诺数下运行,因此其运行可能会偏离常规泵定标定律预测的效率,从而降低了效率。本文通过对两个几何相似的泵的性能进行实验测量来研究这种偏差并降低效率,这两个泵是-直径34.3mm的全比例泵和相同结构的半比例版本。描述了用于测量整体压力-流量性能特征的设备。在叶片通道中不同的半径处以及蜗壳中不同角度位置处提取的粒子图像测速(PIV)测量的速度曲线。对每个流场在三个工作点处的绝对,相对,径向和旋转速度矢量进行了评估,并与常规泵理论进行了比较。数据被无量纲绘制以研究相似点。解决了在叶轮叶片的压力侧和吸力侧在叶轮通道中发生的流体现象。将叶轮尖端出现的理论速度三角形与实验数据进行比较。发现入口和出口处的叶片角对不良的泵送性能有很大的影响。在雷诺数减少时效率下降的背景下讨论了定量速度特性。

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