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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Influence of Screw Centrifugal Inducer on Internal Flow Structure of Vortex Pump
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Influence of Screw Centrifugal Inducer on Internal Flow Structure of Vortex Pump

机译:螺杆离心式诱导剂对涡旋泵内部流动结构的影响

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摘要

Installing an inducer upstream of the main impeller is an effective approach for improving the performances of a centrifugal pump. In order to study the influence of inducer on the internal flow characteristics and evolution of vortex pump, the numerical simulation and experimental test of the 150WX-200-20 vortex pump have been done by the principle of computational fluid dynamics, to acquire performance and internal flow structure change of the vortex pump with inducer and without inducer. Based on these, the energy conversion of vortex pump is combined with the changes of the through-flow and circulating-flow of the internal flow structure. Through analyzing the influence of inducer on it, the energy conversion characteristic of vortex pump is revealed. The results show that adding the inducer can guarantee the power capacity of the vortex pump and improve the anticavitation performance, so as to improve the pump head and flows. Equipped with suitable for transporting solid liquid two phase flow of the screw centrifugal inducer, it can effectively weaken the existence of circulating-flow and significantly improve the flow situation in the impeller field. Adding inducer can weaken axial force of vortex pump and enhance stability of pump. And under the condition of no clogging, the conclusions are of great significance for improving the power capacity and fluid energy conversion of the vortex pump. In addition, it is a good method to weaken the axial force of the pump and enhance the stability of the pump system by adding the inducer.
机译:安装主叶轮上游的诱导剂是一种有效的方法,用于改善离心泵的性能。为了研究诱导剂对涡流泵的内部流动特性和演化的影响,通过计算流体动力学原理来完成150WX-200-20涡泵的数值模拟和实验试验,采取性能和内部用诱导剂的涡流泵的流动结构变化。基于这些,涡流泵的能量转换与内部流动结构的通孔和循环流动的变化相结合。通过分析诱导物对其的影响,揭示了涡旋泵的能量转换特性。结果表明,添加诱导剂可以保证涡流泵的电力容量,提高抗抗气动性能,从而改善泵头和流动。配备适合于运输固体液体两相流的螺杆离心式诱导剂,可以有效地削弱循环流动的存在,并显着改善叶轮场中的流动情况。添加诱导剂可以削弱涡旋泵的轴向力,提高泵的稳定性。在无堵塞的条件下,结论对于提高涡流泵的电力容量和流体能量转换具有重要意义。此外,通过添加诱导剂,削弱泵的轴向力并增强泵系统的稳定性是一种很好的方法。

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