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A Matrix Approach Coupled with Monte Carlo Techniques for Solving the Net Radiative Balance of the Urban Block

机译:矩阵方法与蒙特卡洛技术相结合解决城市街区净辐射平衡

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摘要

A new method is developed for solving the shortwave and longwave net radiative balance of a three-dimensional urban structure, represented by parallelepiped blocks uniformly distributed in each direction. The method is based on a novel approach to determine the shape factors among surfaces, which are estimated by Monte Carlo techniques due to the complex geometry associated with the three-dimensional urban structure. Then, a set of linear equations is solved to quantify the radiative balance, in order to obtain their exact solution, considering all the inter-reflections among surfaces. The comparison between the new and the ray-tracing tracking methods resulted in a Pearson correlation coefficient of 0.996. However, by integrating the linear equations' exact solution with Monte Carlo techniques, the new method reduces by a factor of 36 the central processing unit (CPU) time used to perform the calculations of the ray-tracing tracking method. The use of the model for a sensitivity study allows us to verify the effective absorptance and emittance increases with the canyon aspect ratio of the urban layout. An urban structure formed by square cross-sectional blocks absorbs more solar radiation than an urban structure formed by rectangular cross-sectional blocks. The approximation of a specific geometry for an equivalent bi-dimensional infinite street can be applied for rectangular cross-sectional blocks, where the width is 11 times or more greater than the depth dimension.
机译:为解决三维城市结构的短波和长波净辐射平衡问题,开发了一种新方法,该方法以在各个方向上均匀分布的平行六面体块为代表。该方法基于一种新颖的方法来确定表面之间的形状因子,由于与三维城市结构相关的复杂几何形状,因此通过蒙特卡洛技术进行了估算。然后,考虑到表面之间的所有相互反射,求解一组线性方程式以量化辐射平衡,以便获得它们的精确解。新方法与射线跟踪方法之间的比较得出Pearson相关系数为0.996。但是,通过将线性方程的精确解与蒙特卡洛技术进行集成,新方法将用于执行光线跟踪跟踪方法的中央处理单元(CPU)时间减少了36倍。使用该模型进行敏感性研究,使我们可以验证有效吸收率和发射率随城市布局的峡谷纵横比而增加。由正方形横截面块形成的城市结构比由矩形横截面块形成的城市结构吸收更多的太阳辐射。等效的二维无限街道的特定几何形状的近似值可应用于矩形横截面块,其中宽度是深度尺寸的11倍或更大。

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