植被(病理学)
环境科学
反照率(炼金术)
气候学
蒸散量
季风
大气科学
水分
大气(单位)
可降水量
降水
地质学
气象学
生态学
地理
艺术
表演艺术
病理
生物
医学
艺术史
作者
Yan Yu,Michael Notaro,Fuyao Wang,Jiafu Mao,Xiaoying Shi,Yaxing Wei
标识
DOI:10.1038/s41467-017-02021-1
摘要
Classic, model-based theory of land-atmosphere interactions across the Sahel promote positive vegetation-rainfall feedbacks dominated by surface albedo mechanism. However, neither the proposed positive vegetation-rainfall feedback nor its underlying albedo mechanism has been convincingly demonstrated using observational data. Here, we present observational evidence for the region's proposed positive vegetation-rainfall feedback on the seasonal to interannual time scale, and find that it is associated with a moisture recycling mechanism, rather than the classic albedo-based mechanism. Positive anomalies of remotely sensed vegetation greenness across the Sahel during the late and post-monsoon periods favor enhanced evapotranspiration, precipitable water, convective activity and rainfall, indicative of amplified moisture recycling. The identified modest low-level cooling and anomalous atmospheric subsidence in response to positive vegetation greenness anomalies are counter to the responses expected through the classic vegetation-albedo feedback mechanism. The observational analysis further reveals enhanced dust emissions in response to diminished Sahel vegetation growth, potentially contributing to the positive vegetation-rainfall feedback.
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