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离心式叶轮三维反问题设计和数值计算

杨魏 王福军 王宏

排灌机械工程学报2012,Vol.30Issue(6):632-635,4.
排灌机械工程学报2012,Vol.30Issue(6):632-635,4.DOI:10.3969/j.issn.1674-8530.2012.06.003

离心式叶轮三维反问题设计和数值计算

Three-dimensional inverse design and fluid flow numerical simulation for centrifugal impeller

杨魏 1王福军 1王宏1

作者信息

  • 折叠

摘要

Abstract

In order to solve the problems of traditional design methods, which are mainly rely on experience of a designer and the design cycle is often too long, a three-dimensional (3D) inverse design method was used to design the impeller according to given flow field conditions. The method has a better control ability of design outcomes during the design procedure. Based on the inviscid and potential flow assumption, a 3D velocity field in centrifugal impeller is decomposed into an averaged circumferential flow and a periodic one; subsequently they are solved numerically in the two-dimensional meridional plane and the blade-to-blade surface to approximately obtain the 3D fluid flow field. 3D geometry of a blade is established according to the slip boundary condition on the surface of the blade, the flow field in the designed impeller is obtainable simultaneously as well. A centrifugal impeller was designed by a 3D inverse design code developed by the authors, also a 3D steady, turbulent fluid flow in the impeller was simulated by using a CFD code to examine the flow field and evaluate the impeller performance. The viscous fluid flow simulated and inviscid one obtained in the design are in qualitative agreement, confirming the validity of the 3D inverse design method. The results indicate that combination of the inverse design method and the turbulent flow simulation technique can shorten design cycle and improve design quality effectively. This design strategy may be applicable to impeller design of the rest type of fluid machine.

关键词

离心叶轮/反问题设计/性能预测/湍流模拟

Key words

centrifugal impeller/inverse design/performance prediction/turbulence simulation

分类

农业科技

引用本文复制引用

杨魏,王福军,王宏..离心式叶轮三维反问题设计和数值计算[J].排灌机械工程学报,2012,30(6):632-635,4.

基金项目

国家自然科学基金资助项目(51139007) (51139007)

中央高校基本科研业务费专项资金资助项目(2011JS124) (2011JS124)

排灌机械工程学报

OA北大核心CSTPCD

1674-8530

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