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Optimal Design of the Safety Valve by Response Surface Method  

Lee, Sang-Woo (한국생산기술연구원)
Shin, Dae-Young (한국생산기술연구원)
Byun, Cheol-Woong (한국생산기술연구원)
Publication Information
Journal of the Computational Structural Engineering Institute of Korea / v.20, no.5, 2007 , pp. 551-556 More about this Journal
Abstract
High pressure storage of the agent gas in fire suppression system was composed of tank, main valve and safety valve, which prevents the fracture of the high pressure storage. The safety valve has circular thin plate as fracture plate that was destroyed over fracture pressure. When inner pressure of the storage is reached the fracture pressure, the safety valve discharges gas and degrades simultaneously the inner pressure of the storage. There are design variables such as flow path diameter, inner diameter of the plastic packing ring, thickness of plate and fillet radius. In this variables, thickness of plate is set to be a value of 0.2mm. The main effect of variables on the inner pressure, has been decided using factorial design and statistical analysis. Therefore, the relation of variables are expressed by regression equation. It is disclosed results that the difference of fracture pressures between the equation and experiment has $2{\sim}5%$. Finally, using response surface method, the optimal design of the safety valve could be decided with safety pressure of 25MPa, where the fracture occurs on circular thin plate.
Keywords
Fracture pressure; plastic deformation; factorial design; response surface method; regression analysis;
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