Hydrodynamic design system for pumps based on 3-D CAD, CFD, and inverse design method

被引:100
作者
Goto, A [1 ]
Nohmi, M
Sakurai, T
Sogawa, Y
机构
[1] Ebara Res Co Ltd, Fujisawa, Kanagawa, Japan
[2] EBARA Corp, Tokyo, Japan
来源
JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME | 2002年 / 124卷 / 02期
关键词
D O I
10.1115/1.1471362
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
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 a drastic reduction of the development time of pumps having high performance, high reliability, and innovative "Blade Design System" design concepts. The system structure and the design process of 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.
引用
收藏
页码:329 / 335
页数:7
相关论文
共 15 条
[1]  
DENTON JD, 1990, 90GT19 ASME
[2]  
Favre J.N., 1995, ASME FED, V222, P1
[3]   STUDY OF INTERNAL FLOWS IN A MIXED-FLOW PUMP IMPELLER AT VARIOUS TIP CLEARANCES USING 3-DIMENSIONAL VISCOUS-FLOW COMPUTATIONS [J].
GOTO, A .
JOURNAL OF TURBOMACHINERY-TRANSACTIONS OF THE ASME, 1992, 114 (02) :373-382
[4]  
GOTO A, 1997, ASME FLUIDS 97
[5]  
Goto A, 1995, ASME FED, V227, P1
[6]  
GOTO A, 2002, ASME, V124, P319, DOI DOI 10.1115/1.1467599
[7]  
LOHNER R, 1987, NUMERICAL METHODS LA, V5, P1092
[8]  
LOHNER R, 1987, AIAA870555
[9]  
NOHMI M, 1998, ASME FLUIDS 98
[10]  
SAKURAI T, 1999, ASME FLUIDS 99