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Numerical Simulation Experiment of Land Surface Physical Processes and Local Climate Effect in Forest Underlying Surface

机译:森林下垫面地表物理过程和局部气候效应的数值模拟实验

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摘要

Based on the basic principles of atmospheric boundary layer and plant canopy micrometeorology, a forest underlying surface land surface physical process model and a two-dimensional atmospheric boundary layer numerical model are developed and numerical simulation experiments of biosphere and physiological processes of vegetation and soil volumetric water content have been done on land surface processes with local climate effect. The numerical simulation results are in good agreement with realistic observations, which can be used to obtain reasonable simulations for diurnal variations of canopy temperature, air temperature in canopy, ground surface temperature, and temporal and spatial distributions of potential temperature and vertical wind velocity as well as relative humidity and turbulence exchange coefficient over non-homogeneous underlying surfaces. It indicates that the model developed can be used to study the interaction between land surface process and atmospheric boundary layer over various underlying surfaces and can be extended to local climate studies. This work will settle a solid foundation for coupling climate models with the biosphere.
机译:根据大气边界层和植物冠层微气象学的基本原理,建立了森林底层地表物理过程模型和二维大气边界层数值模型,并对植被和土壤体积水的生物圈和生理过程进行了数值模拟实验。内容已在具有当地气候影响的地表过程中完成。数值模拟结果与实际观测值吻合良好,可以用于对冠层温度,冠层中的气温,地表温度以及潜在温度和垂直风速的时空分布进行合理的模拟非均匀底层表面上的相对湿度和湍流交换系数。这表明开发的模型可用于研究陆地表层过程与各种下伏地表上的大气边界层之间的相互作用,并可扩展到局部气候研究。这项工作将为气候模型与生物圈的耦合奠定坚实的基础。

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