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Experimental and Numerical Analysis of a Non-Newtonian Fluids Processing Pump

机译:非牛顿流体加工泵的实验性和数值分析

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Centrifugal pumps are used in many applications in which non-Newtonian fluids are involved: food processing industry, pharmaceutical and oil/gas applications. In addition to pressure and temperature, the viscosity of a non-Newtonian fluid depends on the shear rate and usually is several orders of magnitude higher than water. High values of viscosity cause a derating of pump performance with respect to water. Nowadays, pumping and mixing non-Newtonian fluids is a matter of increasing interest, but there is still lack of a detailed analysis of the fluid-dynamic phenomena occurring within these machines. A specific design process should take into account these effects in order to define the proper pump geometry, able to operate with non-Newtonian fluids with specific characteristics. Only few approaches are available for correcting the pump performance based on the Hydraulic Institute method. In this work, an experimental and numerical campaign is presented for a semi-open impeller centrifugal pump elaborating non-Newtonian fluids. An on-purpose test bench was built and used to investigate the influence on pump performance of three different non-Newtonian fluids. Each pump performance test was accompanied by the rheological characterization of the fluid, in order to detect modifications of the rheological phenomena and allow a proper Computation Fluid Dynamics (CFD) modeling. The performance of the machine handling both Newtonian and non-Newtonian fluids are highlighted in relation with the internal flow field.
机译:离心泵用于许多应用中,其中涉及非牛顿流体:食品加工工业,药品和油/天然气应用。除了压力和温度之外,非牛顿流体的粘度取决于剪切速率,并且通常比水高几个数量级。高值粘度导致泵性能相对于水进行降低。如今,泵送和混合的非牛顿流体是一种越来越令人感兴趣的问题,但仍然缺乏对这些机器内发生的流体动力现象的详细分析。特定的设计过程应考虑到这些效果,以便定义适当的泵几何形状,能够与具有特定特性的非牛顿流体一起操作。只有很少的方法可用于校正基于液压机制方法的泵性能。在这项工作中,提出了一种用于阐述非牛顿流体的半开叶轮离心泵的实验和数值运动。建立了一个现有的测试台,并用于调查三种不同非牛顿液体泵性能的影响。每个泵性能测试伴随着流体的流变表征,以检测流变现象的修改并允许适当的计算流体动力学(CFD)建模。处理牛顿和非牛顿流体的机器的性能都是与内部流场相关的。

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