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Hydrodynamic Design System for Pumps Based on 3-D CAD, CFD, and Inverse Design Method

机译:基于3-D CAD,CFD和逆向设计方法的泵水动力设计系统

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摘要

a computer-aided design system has been developed for hydraulic parts of pumps including impellers, bowl diffusers, volutes, and vaned return channels. the key technologies include three-dimensional (3-D) CAD modeling, automatic grid generation, CFD analysis, and a 3-D inverse design method. The design system is directly connected to a rapid prototyping production system and a flexible manufacturing system composed of a group of DNC machines. The use of this novel design system leads to drastic reduction of hte development time of pumps having high performance, high reliability, and innovative design concepts. The system structure and the design process of "Blade Design System" and "Channel Design System" are presented. Then the design examples are presented briefly based on the previous publications, which included a centrifugal impeller with suppressed secondary flows, a bowl diffuser with suppressed corner separation, a vaned return channel of a multistage pump, and a volute casing. The results of experimental validation, including flow fields measurements, were also presented and discussed briefly.
机译:已经开发了一种计算机辅助设计系统,用于泵的液压部件,包括叶轮,碗形扩压器,蜗壳和带叶片的回流通道。关键技术包括三维(3-D)CAD建模,自动网格生成,CFD分析和3-D逆向设计方法。设计系统直接连接到快速原型生产系统和由一组DNC机器组成的灵活制造系统。这种新颖的设计系统的使用大大降低了具有高性能,高可靠性和创新设计理念的泵的开发时间。介绍了“刀片设计系统”和“渠道设计系统”的系统结构和设计过程。然后,根据以前的出版物简要介绍设计实例,包括具有抑制的二次流的离心式叶轮,具有抑制的角分离的碗形扩散器,多级泵的带叶片的回流通道以及蜗壳。还介绍和讨论了包括流场测量在内的实验验证结果。

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