环境科学
大气(单位)
大气科学
赤道
植被(病理学)
归一化差异植被指数
气候学
土地覆盖
全球变化
反照率(炼金术)
降水
气候变化
水蒸气
自然地理学
土地利用
纬度
气象学
地理
地质学
生态学
医学
海洋学
大地测量学
病理
生物
艺术
表演艺术
艺术史
作者
Kang Jiang,Zhihua Pan,Feifei Pan,Jialin Wang,Guolin Han,Yu Song,Ziyuan Zhang,Na Huang,Shen Ma,Chen Xiao,Zhenzhen Zhang,Jingyu Men
标识
DOI:10.1016/j.scitotenv.2022.156214
摘要
The water and energy in the land surface and lower atmosphere have a strong coupling relationship. Apart from the land surface temperature (Ts) and air temperature (Ta), the land surface-air temperature difference (Ts-Ta) is also an essential parameter reflecting the coupling process. However, the global spatiotemporal variations and influencing factors of Ts-Ta remain not well explored. Here, ERA5-land reanalysis data, GIMMS NDVI data, and elevation data were used to analyze the global spatiotemporal heterogeneity and influencing factors of Ts-Ta. It was found that annual mean Ts-Ta exhibited a decreasing trend from the equator to polar areas. And the annual Ts-Ta increased at 0.009 °C/10a from 1981 to 2020. The variations of global net radiation mainly determined the spatiotemporal heterogeneity of global Ts-Ta. The different properties of the land surface and near-surface atmosphere were the main factors affecting the Ts-Ta, including soil moisture, vegetation, snow cover, and the water vapor content in the atmosphere. In addition, Ts and Ta also affected each other. These findings are conducive to a better understanding of the land-atmosphere coupling, and it is of great significance to take better measures to adapt the global climate change.
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