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Titlebook: Computational Methods for Optimal Design and Control; Proceedings of the A Jeff Borggaard,John Burns,Scott Schreck (Directora Conference pr

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书目名称Computational Methods for Optimal Design and Control
副标题Proceedings of the A
编辑Jeff Borggaard,John Burns,Scott Schreck (Directora
视频videohttp://file.papertrans.cn/233/232734/232734.mp4
丛书名称Progress in Systems and Control Theory
图书封面Titlebook: Computational Methods for Optimal Design and Control; Proceedings of the A Jeff Borggaard,John Burns,Scott Schreck (Directora Conference pr
描述This volume contains the proceedings of the Second International Workshop on Optimal Design and Control, held in Arlington, Virginia, 30 September-3 Octo­ ber, 1997. The First Workshop was held in Blacksburg, Virginia in 1994. The proceedings of that meeting also appeared in the Birkhauser series on Progress in Systems and Control Theory and may be obtained through Birkhauser. These workshops were sponsored by the Air Force Office of Scientific Re­ search through the Center for Optimal Design and Control (CODAC) at Vrrginia Tech. The meetings provided a forum for the exchange of new ideas and were designed to bring together diverse viewpoints and to highlight new applications. The primary goal of the workshops was to assess the current status of research and to analyze future directions in optimization based design and control. The present volume contains the technical papers presented at the Second Workshop. More than 65 participants from 6 countries attended the meeting and contributed to its success. It has long been recognized that many modern optimal design problems are best viewed as variational and optimal control problems. Indeed, the famous problem of determining the body
出版日期Conference proceedings 1998
关键词calculus; computational methods; control; design; equation; modeling; optimization; partial differential eq
版次1
doihttps://doi.org/10.1007/978-1-4612-1780-0
isbn_softcover978-1-4612-7279-3
isbn_ebook978-1-4612-1780-0
copyrightSpringer Science+Business Media New York 1998
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Y. Altinok,B. Alpar,C. Yaltirakis the demonstration that just as the flow variables may have internal jumps, so also may the associated adjoints. For a particular flow-matching problem we are able to characterize the jump by a transversality condition.
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P. A. Tyvand,T. Miloh,K. B. Haugenested on a 32 wave numbers simulation. Wall-shear stresses reduction, up to 90%, is obtained. The transferability of the controller to Navier-Stokes simulations and engineering applications is discussed.
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Guillaume St-Onge,P. Lajeunessesessed for viscous, chemically reacting flows with comparisons to theoretical and central-difference results. The sensitivity results are used to prioritize design variables by level of relative influence. Being linear, the sensitivity solutions require 10% or less of the computational effort needed to compute flow solutions.
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Guillaume St-Onge,P. Lajeunessemold cavity is computed using a pseudo-concentration technique. Computations are presented for free surface turbulent fluid flow coupled to heat transfer and phase-change. The methodology has the robustness and cost effectiveness needed to tackle complex industrial applications.
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