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THE DETERMINATION OF THE SENSITIVITY OF HEAT TRANSFER SYSTEMS USING GLOBAL SENSITIVITY AND GAUSSIAN PROCESSES

机译:使用全局敏感性和高斯过程测定传热系统的敏感性

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A critical aspect of the design of systems or experiments is a sensitivity analysis to determine the effects of the different variables. This is usually done by representing the response by a Taylor series and evaluating the first order derivatives at a nominal operating point. When there is uncertainty about the operating point, the common approach is the construction of a response surface and Monte Carlo sampling based on the probability distribution of these uncertain variables. When there are many variables it is important to restrict the analysis to those variables to which the response is most sensitive. This can be conveniently done using Global sensitivity, that both defines the most critical variables and also quantifies the effects of interacting variables. This can be a computationally expensive process and for complex models is generally prohibitively expensive. A solution is the use of Gaussian processes that allows one to create a response surface using easy-to-evaluate functions. This paper describes the use of these ideas for a heat transfer problem.
机译:系统或实验设计的关键方面是敏感性分析,以确定不同变量的效果。这通常通过代表泰勒序列的响应来完成并在标称操作点评估第一阶衍生物的响应来完成。当有关于操作点存在不确定性时,公共方法是基于这些不确定变量的概率分布构造响应面和蒙特卡罗采样。当有许多变量时,重要的是将分析限制对响应最敏感的那些变量。这可以使用全局灵敏度方便地完成,这两者都定义了最关键的变量,并且还定量了相互作用变量的影响。这可以是计算昂贵的过程,并且对于复杂的模型通常非常昂贵。解决方案是使用高斯进程,该过程允许使用易于评估功能创建响应面。本文介绍了使用这些思想进行传热问题。

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