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首页> 外文期刊>Atmospheric chemistry and physics >Validating the MYSTIC three-dimensional radiative transfer model with observations from the complex topography of Arizona's Meteor Crater
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Validating the MYSTIC three-dimensional radiative transfer model with observations from the complex topography of Arizona's Meteor Crater

机译:利用亚利桑那州陨石坑复杂地形的观测结果验证MYSTIC三维辐射传输模型

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摘要

The MYSTIC three-dimensional Monte-Carlo radiative transfer model has been extended to simulate solar and thermal irradiances with a rigorous consideration of topography. Forward as well as backward Monte Carlo simulations are possible for arbitrarily oriented surfaces and we demonstrate that the backward Monte Carlo technique is superior to the forward method for applications involving topography, by greatly reducing the computational demands. MYSTIC is used to simulate the short- and longwave radiation fields during a clear day and night in and around Arizona's Meteor Crater, a bowl-shaped, 165-m-deep basin with a diameter of 1200 m. The simulations are made over a 4 by 4 km2 domain using a 10-m horizontal resolution digital elevation model and meteorological input data collected during the METCRAX (Meteor Crater Experiment) field experiment in 2006. Irradiance (or radiative flux) measurements at multiple locations inside the crater are then used to evaluate the simulations. MYSTIC is shown to realistically model the complex interactions between topography and the radiative field, resolving the effects of terrain shading, terrain exposure, and longwave surface emissions. The effects of surface temperature variations and of temperature stratification within the crater atmosphere on the near-surface longwave irradiance are then evaluated with additional simulations.
机译:MYSTIC三维蒙特卡洛辐射传递模型已得到扩展,可以在严格考虑地形的情况下模拟太阳辐射和热辐射。对于任意定向的曲面而言,向前和向后的蒙特卡洛模拟都是可能的,并且我们证明,通过大大减少计算需求,向后的蒙特卡洛技术优于涉及地形的应用的正向方法。 MYSTIC用于模拟亚利桑那州的流星陨石坑及其周围的晴朗白天和夜晚的短波和长波辐射场。流星陨石坑为碗形,深165 m的盆地,直径为1200 m。使用10米水平分辨率数字高程模型和2006年在METCRAX(流星陨石坑实验)野外实验期间收集的气象输入数据,在4 x 4 km2的区域上进行了仿真。内部的多个位置的辐照度(或辐射通量)测量然后将陨石坑用于评估模拟。事实证明,MYSTIC可以真实地模拟地形和辐射场之间的复杂相互作用,从而解决地形阴影,地形暴露和长波表面发射的影响。然后通过附加的模拟评估表面温度变化和火山口大气中温度分层对近表面长波辐照度的影响。

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