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Shape optimization in fluid mechanics
DOI:10.1146/annurev.fluid.36.050802.121926.png)
摘要
En 中文
This paper is a short and nonexhaustive survey of some recent developments in optimal shape design (OSD) for fluids. OSD is an interesting field both mathematically and for industrial applications. Existence, sensitivity, and compatibility of discretizations are important theoretical issues. Efficient algorithmic implementations with low complexity are also critical. In this paper we discuss topological optimization, algorithmic differentiation, gradient smoothers, Computer Aided Design (CAD)-free platforms and shock differentiation; all these are applied to a multicriterion optimization for a supersonic business jet.
Keyword:
shape design
complexity
adaptation
aerodynamics
sensitivity
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期刊
IF:
30.2
论文数:
611
被引数:
1.9W
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