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Precipitation trend-Elevation relationship in arid regions of the China

机译:中国干旱地区降水趋势与海拔的关系

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摘要

Based on monthly precipitation data at 128 meteorological stations in the arid regions of the China (ARC), we investigated that the regional characteristics of precipitation trend and the precipitation trend-elevation relationship during the period of 1961-2012. There is growing evidence that the elevation-dependent wetting (EDWE), which is the precipitation wetting trend is amplified with elevation. The precipitation trend increases significantly with elevation except for the altitude from 500 to 1500 m, the highest correlation appears above 1500 m, increases by 13 mm/decade with each 1000 m. With the elevation increasing every 1000 m, precipitation tendency rate increases by 7 mm/decade from 1000 to 2000 m and increases by 10 mm/decade from 2000 to 4000 m. EDWE has an impact on the change of the cryospheric systems, ecosystems and water resources, especially in arid regions of China. We discuss mechanisms that contribute towards EDWE: water vapor changes and warming-driven water circulation speeds up. We suggest future needs to increase evidence of understand the EDWE in other mountainous regions, and its controlling mechanisms through integrated the observational network of surface in-situ climate observations, satellite data and high-resolution climatic modeling. (C) 2016 Elsevier B.V. All rights reserved.
机译:根据中国干旱地区(ARC)128个气象站的月降水量数据,我们调查了1961-2012年期间降水趋势的区域特征和降水趋势与海拔的关系。越来越多的证据表明,海拔依赖性湿润(EDWE),即降水湿润趋势随海拔升高而放大。除海拔高度从500至1500 m以外,降水趋势随海拔的增加而显着增加,最高相关性出现在1500 m以上,每增加1000 m则增加13 mm /十年。随着海拔高度每增加1000 m,降水趋势速率从1000到2000 m增加7 mm /十年,并从2000到4000 m增加10 mm /十年。 EDWE对冰冻圈系统,生态系统和水资源的变化有影响,特别是在中国的干旱地区。我们讨论了促成EDWE的机制:水蒸气变化和变暖驱动的水循环加速。我们建议未来需要通过整合地表原地气候观测,卫星数据和高分辨率气候模拟观测网络来增加了解其他山区EDWE及其控制机制的证据。 (C)2016 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Global and planetary change》 |2016年第8期|1-9|共9页
  • 作者单位

    China Meteorol Adm, Inst Desert Meteorol, Urumqi 830002, Peoples R China;

    China Meteorol Adm, Inst Desert Meteorol, Urumqi 830002, Peoples R China;

    China Meteorol Adm, Inst Desert Meteorol, Urumqi 830002, Peoples R China;

    China Meteorol Adm, Inst Desert Meteorol, Urumqi 830002, Peoples R China;

    Xinjiang Normal Univ, Urumqi 830054, Peoples R China|Lanzhou Univ, Coll Earth & Environm Sci, Lanzhou 734000, Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Precipitation trend; Elevation; EDWE; Arid regions of the China;

    机译:降水趋势海拔EDWE中国干旱地区;

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