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Optimal specification of target temperature points for inverse design of an indoor thermal environment

机译:室内热环境逆设计的目标温度点的最佳规范

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Inverse models based on computational fluid dynamics (CFD) are able to determine the required boundary wall convective heat fluxes in enclosed environments by performing a regularized inversion to the governing matrix. The governing matrix describes the cause-effect relationship between the boundary wall heat fluxes and the exhibited temperatures. Some target temperatures must be specified as known inputs to infer the unknown thermal boundary conditions. However, the current target temperature specification is determined by intuition or experience rather than by systematic derivation. This investigation proposes to evaluate the specification of target temperature points using the eigenvalue decomposition to the governing matrix. A connection was established between the eigenvalues and the condition number of the matrix that describes the posedness of the problem. The effects of the number and locations of the target temperature points on the inverse solution were analyzed based on a two-dimensional ventilation enclosure. The results showed that the proposed inverse model provides accurate solutions with appropriately specified target temperature points. Locating the target temperature points downstream of the flows that sweep boundary walls can help reduce the posedness of the governing matrix. A constituted matrix with a smaller condition number responds better to design targets. There is no need to adopt more target temperature points than the number of unknown thermal boundaries. In some circumstances, if more target temperature points than the number of unknown boundaries are provided, it is recommended to select the points that correspond to eigenvalues of the matrix far from zero. (C) 2015 Elsevier Ltd. All rights reserved.
机译:基于计算流体动力学(CFD)的逆模型能够通过对控制矩阵进行规则化反演来确定封闭环境中所需的边界壁对流热通量。控制矩阵描述了边界壁热通量与显示温度之间的因果关系。必须将某些目标温度指定为已知输入,以推断未知的热边界条件。但是,当前的目标温度规格是根据直觉或经验确定的,而不是通过系统推导确定的。本研究建议使用特征值分解到控制矩阵来评估目标温度点的规格。在特征值和描述问题的存在性的矩阵的条件编号之间建立了联系。基于二维通风罩,分析了目标温度点的数量和位置对逆解的影响。结果表明,所提出的逆模型提供了具有适当指定目标温度点的精确解。将目标温度点定位在扫过边界壁的流的下游,可以帮助减少控制矩阵的适度性。条件数较小的构成矩阵对设计目标的响应更好。无需采用比未知热边界数量更多的目标温度点。在某些情况下,如果提供的目标温度点多于未知边界的数目,则建议选择与矩阵特征值相对应的,远离零的点。 (C)2015 Elsevier Ltd.保留所有权利。

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