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A Knowledge-Based Optimization Method for Aerodynamic Design

机译:一种基于知识的空气动力学设计优化方法

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A new aerodynamic design method, CODISC, has been developed that combines a legacy knowledge-based design method, CDISC, with a simple optimization module known as SOUP. The primary goal of this new design system is to improve the performance gains obtained using CDISC without adding significant computational time. An additional objective of this approach is to reduce the need for a priori knowledge of good initial input variable values, as well as for subsequent manual revisions of those values as the design progresses. Several test cases illustrate the development of the process to date and some of the options available at transonic and supersonic speeds for turbulent flow designs. The test cases generally start from good baseline configurations and, in all cases, were able to improve the performance. Several new guidelines for good initial values for the design variables, as well as new design rules within CDISC itself, were developed from these cases.
机译:已经开发了一种新的空气动力学设计方法CODISC,该方法将基于遗留知识的传统设计方法CDISC与称为SOUP的简单优化模块结合在一起。这种新设计系统的主要目标是在不增加计算时间的情况下提高使用CDISC获得的性能。这种方法的另一个目标是减少对良好的初始输入变量值的先验知识的需求,以及随着设计的进行而减少对这些值的后续手动修改的需求。几个测试案例说明了迄今为止该过程的发展以及湍流设计中跨音速和超音速的一些可用选项。测试用例通常从良好的基准配置开始,并且在所有情况下都能够提高性能。在这些情况下,开发了一些有关设计变量的良好初始值的新指南以及CDISC本身内的新设计规则。

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