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Consideration of variable atmospheric transmissivity in passive microwave snowpack retrievals over Tibetan Plateau

机译:藏高原无源微波滑雪中可变大气透射率的思考

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The seasonal snow over the Tibetan Plateau is an important parameter for the regional energy and water cycle. The snow there experience a different trend compared to that of the Northern Hemisphere in the past decades. Because of the shallow and patchy snow with a fast precipitation process and cloud occurrence, the traditional snow algorithm (18GHz and 27GHz gradient brightness temperature) experiences an insufficient accuracy there when employed the global coefficients. In this paper, the atmosphere condition was assumed to play a key role. Through the simulation, and the realistic atmospheric balloon measurement, the transmittance difference between Plateau and low land area was calculated, and the correspondent cloud influence was analyzed. As a result, we need to consider the cloud and water vapor effect, the method over the Tibetan Plateau needs to consider these two components, i.e. the existence of clouds over snow cover areas, and the atmospheric water vapor content, which typically separates high elevation regions from low lying landscapes.
机译:西藏高原上的季节性雪是区域能源和水循环的重要参数。与过去几十年的北半球相比,雪有不同的趋势。由于浅层和薄片,具有快速降水过程和云发生,传统的雪算法(18GHz和27GHz梯度温度)在采用全球系数时,体验到那里的准确性不足。在本文中,假设大气条件发挥关键作用。通过仿真和现实的大气气球测量,计算平台和低陆地面积之间的透射率差异,分析了对应的云影响。因此,我们需要考虑云和水蒸汽效应,藏高平台的方法需要考虑这两个组分,即云层的存在,以及通常将高升高分离的大气水蒸气含量低洼景观的地区。

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