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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Analysis of tropical radiative heating profiles: A comparison of models and observations
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Analysis of tropical radiative heating profiles: A comparison of models and observations

机译:分析热带辐射加热的概要:A比较模型和观测

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摘要

The vertical distribution of radiative heating in the atmosphere is an important driver of atmospheric circulation. Evaluation of model simulations of the Earth's radiation budget typically focus only on performance at the top of the atmosphere or at the surface. In this study, we compare the vertical distribution of cloud properties and radiative heating rates calculated from observations at the Department of Energy's Atmospheric Radiation Measurement (ARM) sites on the islands of Nauru and Manus to simulations performed using the Multiscale Modeling Framework (MMF) and the Community Atmosphere Model (CAM). Significant differences are found in the vertical profiles and diurnal cycle of cloud amount, condensed water content, and cloud effect on heating rates between the two models and between the models and the observations. The differences in the heating rates between the models and ARM results depend partly on the details of the parameterization of effective radius and absorption coefficients used and partly on differences in cloud frequency, vertical location of clouds, and optical thickness. Since the same radiative model is used in the CAM and MMF, differences in the effect of clouds on heating rates between the two models are due to the differing treatment of cloud processes in the models and the interaction of clouds and radiation on the local scale in the MMF.
机译:辐射加热的垂直分布大气是一个的重要推动力大气环流的影响。模拟地球辐射的预算通常只关注性能的顶部大气中或表面。我们比较云的垂直分布属性和辐射加热率计算在美国能源部的观察大气辐射测量(ARM)的网站模拟的岛国瑙鲁和手使用多尺度建模框架执行(MMF)模型(CAM)和社区氛围。显著差异在垂直的概要文件和昼夜循环的云,冷凝水的内容,和云的影响加热率之间的两个模型之间模型和观测。在模型之间的加热率和手臂结果部分取决于的细节参数化的有效半径和吸收系数和部分使用云计算频率的差异,垂直位置云的光学厚度。辐射模型用于凸轮和MMF,云层在加热的影响的差异两个模型之间的利率由于不同的云过程的治疗模型和云层和之间的交互辐射在当地规模MMF。

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