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首页> 外文期刊>Geophysical Research Letters >Testing Brutsaert's temperature roughness parameterization for representing urban surfaces in atmospheric models
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Testing Brutsaert's temperature roughness parameterization for representing urban surfaces in atmospheric models

机译:测试Brutsaert的温度粗糙度参数化以表示大气模型中的城市表面

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[1] It is verified whether Brutsaert's temperature roughness parameterization, developed for surfaces composed of solid obstacles arrays, is suitable for representing urban surfaces in high-resolution atmospheric models. In order to do so, the temperature roughness parameterization is incorporated into a land surface scheme coupled to a mesoscale meteorological model, and the latter is subsequently used to perform a simulation over the larger area of Paris on a cloud-free day. As a main result, it is found that simulated land surface temperature compares favourably to observed values obtained from thermal infrared satellite imagery. This confirms the validity of Brutsaert's thermal roughness parameterization, thus warranting its use in regional-scale prognostic atmospheric models employed for, e.g., weather forecasting or air pollution studies.
机译:[1]验证了由固体障碍物阵列组成的表面开发的Brutsaert的温度粗糙度参数设置是否适合在高分辨率大气模型中表示城市表面。为此,将温度粗糙度参数化合并到与中尺度气象模型耦合的陆地表面方案中,随后将后者用于在无云的日子在巴黎的较大区域执行模拟。作为主要结果,发现模拟陆地表面温度与从热红外卫星图像获得的观测值相比具有优势。这证实了Brutsaert的热粗糙度参数化的有效性,从而保证了将其用于区域规模的预测性大气模型中,例如,天气预报或空气污染研究。

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