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首页> 外文期刊>International Journal of Heat and Mass Transfer >A methodology to work on geometrically complex heat transfer systems: the cases of heat conduction through composite slabs
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A methodology to work on geometrically complex heat transfer systems: the cases of heat conduction through composite slabs

机译:在几何复杂的传热系统上工作的方法:通过复合板导热的情况

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Geometrical complexity considered in the present study is characterized by a large degree of freedom in placement of constituents in a composite system. The constituent sizes are not negligibly small compared to the system's expanse, so approximations of their configurations and placement patterns by some simple equivalents are not feasible. Numerical analysis is a means to estimate heat transfer performance of the system, but a strategy is required to navigate through a vast number of possible constituent patterns to find ones that produce higher heat transfer performance. In the proposed methodology the constituent pattern is captured as a two-dimensional mosaic image of solid cells embedded in a substrate. On an image assumed as a starter, the singular-value decomposition (SVD) analysis is performed to find its (SVD) building block elements. By shuffling the building block elements variants of the starter image are created. Heat transfer analysis is performed on sample systems that are picked up from the ensemble of variants. Using the Taguchi method and through a genetic algorithm-type reasoning, those element arrangements that do not significantly affect the heat transfer performance are weeded out. The methodology is demonstrated on the cases of heat conduction through composite slabs.
机译:在本研究中考虑的几何复杂度的特征在于复合系统中成分放置的高度自由度。与系统的规模相比,组件的大小并不是可以忽略不计的,因此,用一些简单的等效方法近似地构造它们的配置和放置模式是不可行的。数值分析是估算系统传热性能的一种手段,但是需要一种策略来浏览大量可能的组成模式,以找到产生更高传热性能的模式。在所提出的方法中,构成图案被捕获为嵌入衬底中的固体细胞的二维镶嵌图像。在假定为启动器的图像上,执行奇异值分解(SVD)分析以找到其(SVD)构造块元素。通过改组积木元素,可以创建起始图像的变体。传热分析是在从变体集合中拾取的样本系统上执行的。使用田口方法并通过遗传算法类型的推理,淘汰了那些不会显着影响传热性能的元素排列。在通过复合板导热的情况下证明了该方法。

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