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首页> 外文期刊>Journal of Climate >Climatology of Upper-Tropospheric Relative Humidity from the Atmospheric Infrared Sounder and Implications for Climate
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Climatology of Upper-Tropospheric Relative Humidity from the Atmospheric Infrared Sounder and Implications for Climate

机译:大气红外探测器的对流层上相对湿度气候学及其对气候的影响

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摘要

Recently available satellite observations from the Atmospheric Infrared Sounder (AIRS) are used to calculate relative humidity in the troposphere. The observations illustrate many scales of variability in the atmosphere from the seasonal overturning Hadley-Walker circulation to high-frequency transient variability associated with baroclinic storms with high vertical resolution. The Asian monsoon circulation has a strong impact on upper-tropospheric humidity, with large humidity gradients to the westof the monsoon. The vertical structure of humidity is generally bimodal, with high humidity in the upper and lower troposphere, and a dry middle troposphere. The highest variances in humidity are seen around the midlatitude tropopause. AIRS data are compared to a simulation from a state-of-the-art climate model. The model does a good job of reproducing the mean humidity distribution but is slightly moister than the observations in the middle and upper troposphere. The model has difficultly reproducing many scales of observed variability, particularly in the Tropics. Differences in humidity imply global differences in the top of atmosphere fluxes of W m~(-2).
机译:来自大气红外测深仪(AIRS)的最新卫星观测数据可用于计算对流层中的相对湿度。这些观测结果说明了大气的各种变化尺度,从季节性翻转的哈德利-瓦尔克环流到与具有高垂直分辨率的斜压风暴有关的高频瞬变。亚洲季风环流对高对流层湿度有强烈影响,季风以西的湿度梯度较大。湿度的垂直结构通常是双峰的,对流层上部和下部的湿度较高,而对流层中部则干燥。在中纬度对流层顶附近,湿度变化最大。将AIRS数据与来自最新气候模型的模拟进行比较。该模型在再现平均湿度分布方面做得很好,但是比对流层中上层的观测结果略微潮湿。该模型很难重现许多尺度的观测到的变异性,特别是在热带地区。湿度的差异意味着W m〜(-2)的大气通量顶部的整体差异。

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