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Inverse Boundary Design in Heat Transfer Combining Turbulent Convection and Thermal Radiation

机译:湍流对流与热辐射相结合的传热逆边界设计

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This work investigates the solutions of an inverse boundary design problem that has multimode (radiation and convection) heat transfer mechanisms. The problem consists of finding the heat flux distribution required on heaters located on the top and side walls of a two-dimensional enclosure that satisfies both the temperature and heat flux distributions prescribed on the design surface of the enclosure. A turbulent air flow is generated by a fan located inside the chamber. The walls are gray, diffuse emitters and absorbers. The combined heat transfer problem is described by a system of non-linear equations, which is expected to be ill-conditioned as an inverse analysis is involved. The system of equations is solved by an iterative procedure: the basic set of equations relates the radiation transferred between the heater and the design surface, while all the other terms involved in the energy exchange are found from the conditions of the previous iteration. This way, the ill-posed part of the problem (which arises from the design surfaces containing two conditions, and the heater elements being unconstrained) is isolated for a more effective treatment. The solution is obtained by regularizing the ill-conditioned system of equations by means of the truncated singular value decomposition (TSVD) method.
机译:这项工作研究了具有多模式(辐射和对流)传热机制的逆边界设计问题的解决方案。问题在于找到位于二维外壳的顶壁和侧壁上的加热器所需的热通量分布,该加热器同时满足外壳设计表面上规定的温度和热通量分布。位于室内的风扇会产生湍流。墙壁是灰色的,散布着发射器和吸收器。组合的传热问题由非线性方程组描述,由于涉及逆分析,因此预计会出现不良情况。方程组通过迭代过程求​​解:方程组的基本集合与加热器和设计表面之间传递的辐射有关,而能量交换中涉及的所有其他项都是从上一次迭代的条件中找到的。这样,问题的不适部分(由包含两个条件的设计表面产生,并且加热元件不受约束)被隔离,以便进行更有效的处理。通过使用截断奇异值分解(TSVD)方法对病态方程组进行正则化,可以得到该解。

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