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Conjugated heat transfer in complex channel-substrate configurations: Hybrid solution with total integral transformation and single domain formulation

机译:复合通道 - 基材配置中的共轭传热:具有总积分变换和单结构域制剂的杂化溶液

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Integral transforms have been extensively employed in the analysis of linear and nonlinear convection-diffusion problems, in light of the robust, precise and cost-effective hybrid numerical-analytical solutions that can be achieved in several different classes of problems in heat and fluid flow. In recent years, a single domain reformulation strategy has been introduced which, in combination with the Generalized Integral Transform Technique (GITT), allows for the straightforward handling of complex geometries, rewritten with space variable equation coefficients such as in heterogeneous media. This work further advances the solution of conjugated heat transfer problems for complex channel-substrate geometrical configurations through the GITT approach, here combining a single domain formulation and a total integral transformation scheme based on a multidimensional eigenvalue problem. An application is considered more closely to illustrate the approach for a two-dimensional geometry, consisting of a horseshoe-like microchannel within a rectangular substrate. The results presented demonstrate the adequacy of the solution methodology for the thermal analysis and design of thermal microsystems with complex shapes.
机译:积分变换已经在线性和非线性对流 - 扩散问题的分析被广泛使用,在健壮,精确和经济有效的混合数值解析,可以在几个不同的类的在热和流体流动问题而实现的解决方案的光。近年来,已经介绍了一种域制重构策略,其与广义整体变换技术(GITT)组合,允许复杂几何形状的直接处理,用空间可变方程系数被诸如在异构介质中重写。这项工作进一步推进了通过GITT方法对复杂通道基板几何配置的共轭传热问题的解决方案,这里结合了单个域制剂和基于多维特征值问题的总积分变换方案。更接近地认为应用程序以说明由矩形基板内的马蹄形微通道组成的二维几何形状的方法。提出的结果证明了具有复杂形状的热分析和设计热分析和设计的解决方法。

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