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Analysis on Precipitable Water Vapor over the Tibetan Plateau Using FengYun-3A Medium Resolution Spectral Imager Products

机译:凤云-3A中型光谱成像仪藏高高原沉淀水蒸气分析

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The Tibetan Plateau is the largest and highest plateau in the world, and its complex terrain affects the distribution of precipitable water vapor (PWV) in the atmosphere, which plays an important role in the weather and climate of East Asia. In this paper, the characteristics of PWV over the Tibetan Plateau are studied using the FengYun-3A Medium Resolution Spectral Imager (MERSI) water vapor products, which are retrieved from the MERSI raw images of Chinese second-generation polar orbit meteorological satellite. Firstly, the accuracy of the MERSI 5-minute water vapor product is validated using three referenced water vapor data from TERRA/MODIS, ground-based GPS, and AERONET sun photometer over the Tibetan Plateau. Then, the spatial distribution and seasonal variation of PWV over the plateau are analyzed, and the effects of topographic factors on PWV are discussed. The results indicate that the MERSI 5-minute water vapor product has a good accuracy over the Tibetan Plateau, which the mean absolute error of MERSI water vapor product is in the range of 28.91%-37.54%, the mean absolute error range between 1.87 and 2.76 millimeter (mm), and the mean bias is between -1.14 and 0.64?mm comparing three referenced data. The PWV content appears as a typical spatial pattern over the Tibetan Plateau where there is a decrease from east to west of the Tibetan Plateau with increasing elevation, with the highest values over the south of Tibet. A second pattern also appears over the eastern part of the Tibetan Plateau, where the PWV content in the Qaidam Basin and the south of Tarim Basin are also considerably high. The seasonal variation of PWV content over the Tibetan Plateau presents to be highest in summer, followed by autumn and spring, and lowest in winter. The PWV content changes periodically during the year, which fits with a quadratic polynomial over monthly scales. The topographical factors of the Tibetan Plateau were found to affect the water vapor, where the altitude and latitude are negatively correlated with water vapor, while the slope and longitude show a positive correlation with water vapor; however, the aspect does not appear to have any significant influence on water vapor.
机译:西藏高原是世界上最大,最高的高原,其复杂的地形影响了大气中可降水水蒸气(PWV)的分布,这在东亚的天气和气候中起着重要作用。在本文中,使用凤云-3a中料光谱成像仪(MERSI)水蒸气产品研究了PWV的特点,从中国第二代极性轨道气象卫星的MERSI原始图像中检索。首先,使用来自Terra / Modis,基于地面的GPS和AeroNet Sun Photeter的三个引用的水蒸气数据验证了MERSI 5分钟水蒸气产品的准确性。然后,分析了PWV在高原上的空间分布和季节变化,讨论了PWV的地形因素的影响。结果表明,MERSI 5分钟的水蒸气产品在藏高平台上具有良好的精度,其MERSI水蒸气产品的平均绝对误差为28.91%-37.54%,平均绝对误差范围在1.87之间2.76毫米(mm),平均偏置在-1.14和0.64之间,比较三个引用的数据。 PWV含量在西藏高原上呈现出典型的空间模式,其中从藏高高原以西下降,高度增加,西藏南部的最高价值。第二种模式也出现在西藏高原的东部,其中QAIDAM盆地和塔里木盆地南部的PWV含量也相当高。藏高高原PWV含量的季节变化在夏季最高,其次是秋季和春季,冬季最低。 PWV内容在年内定期改变,这适合每月尺度的二次多项式。发现藏高平台的地形因素影响水蒸气,海拔高度和纬度与水蒸气呈负相关,而坡度和经度显示与水蒸气的正相关;然而,这些方面似乎对水蒸气产生了任何重大影响。

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