A statistical description method of global sub-grid topography for numerical models

被引:0
|
作者
Yaqi Wang
Lanning Wang
Juan Feng
Zhenya Song
Qizhong Wu
Huaqiong Cheng
机构
[1] Beijing Normal University,College of Global Change and Earth System Science (GCESS)
[2] Pilot National Laboratory for Marine Science and Technology,Laboratory for Regional Oceanography and Numerical Modeling
[3] Ministry of Natural Resources,First Institute of Oceanography, and Key Laboratory of Marine Science and Numerical Modeling
来源
Climate Dynamics | 2023年 / 60卷
关键词
Numerical models; Sub-grid topography; Slope and aspect; Tibetan Plateau; Gaussian distribution;
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学科分类号
摘要
Slope and aspect are important topographic elements for thermodynamics and dynamics of atmospheric circulation, especially for local radiation and topographic precipitation. We propose a simple realistic statistical method based on trigonometric function transformation to calculate sub-grid slope and aspect for describing the orographic characteristics of complex areas over the globe. It is found that the transformed conditional probability density function conforms to the Gaussian distribution in most of the global areas (~ 98%), and this feature is not eliminated with the increasing of horizontal resolution. The reasonability of this method is tested over the Tibetan Plateau. The results show that the improvement ratio of surface solar radiation downward (SSRD) over the Tibetan Plateau improved significantly compared with the results from the grid average scheme, especially in autumn. The improvement of root mean square error is approximately 18.2 W/m2, and the improvement ratio reached 38.4%. The improvements of maximum and regional-averaged SSRD over the whole Tibetan Plateau were ~ 130 W/m2 and ~ 44.3 W/m2 respectively. Although we only consider the effect of sub-grid slope and aspect on solar shortwave radiation, which has a certain bias with the observation data, it is sufficient to prove the rationality of the statistical method compared with the unobstructed horizontal surfaces scheme.
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页码:2547 / 2561
页数:14
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