Multidisciplinary Design Optimization of a High-Flow Control Valve

Author:

Cao Fang1,Wang Yong2

Affiliation:

1. Shandong Polytechnic University

2. Shandong University

Abstract

According to the real structure and work condition of a high-flow gas pressure control valve used in recycling generating electricity project, a multidisciplinary design optimization (MDO) model is set up. Taking the structure and flow field analysis results as designing criterion, the MDO framework is put forward, which realizing the integration of multidisciplinary and two physical fields of control valve. To ensure that the gas transmission capacity which is the design prerequisite, the optimization takes reducing noise of control valve as system goal, while the valve wall thickness and flow velocity are decreased. And the Reynolds number, stress intensity and body total weight are also meet requirements. From the standpoint of fluid and structure, to realize MDO is of great practical significance for advancing research level of high-flow control valves.

Publisher

Trans Tech Publications, Ltd.

Reference5 articles.

1. FENG Weimin, HAN Ning, Numerical simulation of optimum design of large diameter cyclic type regulating valve, Engineering Journal of Wuhan University, Vol 39(1). pp.76-79, (2006). (In Chinese).

2. Han Xu, Zheng Ming Guang, Hydrodynamic characterization and optimization of Contra-push check valve by numerical simulation, Annals of Nuclear Energy, Vol 38, Issue 6, pp.1427-1437, (2011). (In Chinese).

3. Wendy R. Altman, John Moreland, Stephen E. Russek, Optimization of spin-valve parameters for magnetic bead trapping and manipulation, Journal of Magnetism and Magnetic Materials, Vol 322, Issue 21, pp.3236-3239, (2010).

4. WANG An-lin, WU Xiao-feng, ZHOUCheng-lin, Multidisciplinary Optimization of a Hydraulic Slide Valve Based on CFD, JOURNAL OF SHANGHAI JIAOTONG UNIVERSITY, Vol44(12), pp.1767-1772, (2010). (In Chinese).

5. Peiwen Lu: Practical technology of the control valve, Beijing: Mechanical Industry Press. (2007).

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