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분산컴퓨팅 환경에서 공력 설계최적화의 효율성 연구
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  • 분산컴퓨팅 환경에서 공력 설계최적화의 효율성 연구
저자명
김양준,정현주,김태승,손창호,조창열,Kim. Y.J.,Jung. H.J.,Kim. T.S.,Son. C.H.,Joh. C.Y.
간행물명
한국전산유체공학회지
권/호정보
2006년|11권 2호|pp.19-24 (6 pages)
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한국전산유체공학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

A research to evaluate the efficiency of design optimization was carried out for aerodynamic design optimization problem in distributed computing environment. The aerodynamic analyses which take most of computational work during design optimization were divided into several jobs and allocated to associated PC clients through network. This is not a parallel process based on domain decomposition in a single analysis rather than a simultaneous distributed-analyses using network-distributed computers. GBOM(gradient-based optimization method), SAO(Sequential Approximate Optimization) and RSM(Response Surface Method) were implemented to perform design optimization of transonic airfoils and evaluate their efficiencies. dimensional minimization followed by direction search involved in the GBOM was found an obstacle against improving efficiency of the design process in the present distributed computing system. The SAO was found fairly suitable for the distributed computing environment even it has a handicap of local search. The RSM is apparently the most efficient algorithm in the present distributed computing environment, but additional trial and error works needed to enhance the reliability of the approximation model deteriorate its efficiency from the practical point of view.