Recent Advances in Optimization Design and Performance Analysis of Vortex Pumps

Q4 Engineering
Peijian Zhou, Yang Wang, Naijiang Xu, Wenqiang Zhou, Jun Yu Li
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引用次数: 0

Abstract

The vortex pump is a type of sewage pump renowned for its non-clogging performance. As the vortex pump has a special structure type, there are many vortex structures in the volute and impeller flow channel, which reduce the efficiency of the vortex pump. Reducing the energy loss and improving the efficiency of the vortex pump has been one of the main research objectives of designers. In this paper, the research progress of vortex pumps is summarized from the two aspects of transporting solid medium and low efficiency, which can provide a reference for future research. The latest patents and papers on vortex pumps were collected. The solid-liquid flow characteristics from the experimental and numerical perspectives, the influence of geometric parameters on external characteristics, and optimization design methods of the vortex pump were studied. The particles, fibers, and cloth in the vortex pump will become trapped and blocked in the cavity. And the geometric parameters have an obvious effect on the pump. By using the intelligent optimization algorithm to optimize the impeller parameters, the pump efficiency can be increased by 10.25% under large flow conditions and the effective blade shear stress. The concentration and diameter of particles could change the performance of the pump. The retention and plugging of the solid medium in the vortex pump are related to flow structure and backflow. Appropriate geometric parameters should be selected when designing a vortex pump. Too large or too small a structure design will lead to poor performance of the vortex pump. This can be combined with intelligent optimization algorithms for pump design, which is a very effective method.
旋涡泵优化设计与性能分析研究进展
旋涡泵是一种污水泵,以其不堵塞的性能而闻名。由于旋涡泵具有特殊的结构类型,在蜗壳和叶轮流道中存在许多旋涡结构,降低了旋涡泵的效率。降低涡旋泵的能量损失,提高涡旋泵的效率一直是设计人员的主要研究目标之一。本文从输送固体介质和低效率两个方面综述了涡旋泵的研究进展,为今后的研究提供参考。收集了涡旋泵的最新专利和论文。从实验和数值两方面研究了涡旋泵固液流动特性、几何参数对外特性的影响以及涡旋泵的优化设计方法。涡流泵中的颗粒、纤维和布料会被困在腔内并被阻塞。几何参数对泵的性能有明显的影响。采用智能优化算法对叶轮参数进行优化,在大流量工况和叶片有效剪切应力下,泵效率可提高10.25%。颗粒的浓度和直径会改变泵的性能。固体介质在旋涡泵内的滞留和堵塞与流动结构和回流有关。在设计旋涡泵时,应选择合适的几何参数。过大或过小的结构设计都会导致旋涡泵性能差。这可以结合智能优化算法进行泵的设计,是一种非常有效的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Recent Patents on Mechanical Engineering
Recent Patents on Mechanical Engineering Engineering-Mechanical Engineering
CiteScore
0.80
自引率
0.00%
发文量
48
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