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A Double-Canyon Radiation Scheme for Multi-Layer Urban Canopy Models

机译:多层城市雨棚模型的双峡谷辐射方案

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摘要

We develop a double-canyon radiation scheme (DCEP) for urban canopy models embedded in mesoscale numerical models based on the Building Effect Parametrization (BEP). The new scheme calculates the incoming and outgoing longwave and shortwave radiation for roof, wall and ground surfaces for an urban street canyon characterized by its street and building width, canyon length, and the building height distribution. The scheme introduces the radiative interaction of two neighbouring urban canyons allowing the full inclusion of roofs into the radiation exchange both inside the canyon and with the sky. In contrast to BEP, we also treat direct and diffuse shortwave radiation from the sky independently, thus allowing calculation of the effective parameters representing the urban diffuse and direct shortwave radiation budget inside the mesoscale model. Furthermore, we close the energy balance of incoming longwave and diffuse shortwave radiation from the sky, so that the new scheme is physically more consistent than the BEP scheme. Sensitivity tests show that these modifications are important for urban regions with a large variety of building heights. The evaluation against data from the Basel Urban Boundary Layer Experiment indicates a good performance of the DCEP when coupled with the regional weather and climate model COSMO-CLM.
机译:我们针对基于建筑物效应参数化(BEP)的中尺度数值模型中嵌入的城市冠层模型开发了双峡谷辐射方案(DCEP)。新方案计算了城市街道峡谷的屋顶,墙壁和地面的长波和短波辐射,其特征在于街道和建筑物的宽度,峡谷的长度以及建筑物的高度分布。该方案引入了两个相邻城市峡谷的辐射相互作用,从而使屋顶完全纳入了峡谷内部以及与天空的辐射交换中。与BEP相比,我们还独立处理来自天空的直接和漫反射短波辐射,从而允许计算代表中尺度模型内部城市漫反射和直接短波辐射预算的有效参数。此外,我们关闭了入射长波的能量平衡并散射了来自天空的短波辐射,因此新方案在物理上比BEP方案更一致。敏感性测试表明,这些修改对于具有多种建筑高度的城市地区非常重要。根据来自巴塞尔城市边界层实验的数据进行的评估表明,当结合区域天气和气候模型COSMO-CLM时,DCEP的性能很好。

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