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海北高寒灌丛草甸蒸散量特征

郑涵1,2,王秋凤1**,李英年3,朱先进1   

  1. (1中国科学院地理科学与资源研究所, 北京 100101; 2中国科学院大学, 北京 100049; 3中国科学院西北高原生物研究所, 西宁 810001)
  • 出版日期:2013-11-18 发布日期:2013-11-18

Characteristics of evapotranspiration in an alpine shrub meadow in Haibei, Qinghai of Northwest China.

ZHENG Han1,2, WANG Qiu-feng1, LI Ying-nian3, ZHU Xian-jin1   

  1. (1Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China; 2University of Chinese Academy of Sciences, Beijing 100049, China; 3Northwest Institute of  Plateau Biology, Chinese Academy of Sciences, Xining 810001, China)
  • Online:2013-11-18 Published:2013-11-18

摘要: 蒸散是陆地生态系统水分循环的重要分量,研究典型生态系统的蒸散规律有助于认识水分循环过程,进而为水资源合理利用提供依据.本研究基于涡度相关法研究了2003—2011年海北高寒灌丛草甸生态系统的蒸散量变化特征及水分收支状况.结果表明: 2003—2011年,研究区蒸散量的季节变化明显,最大值一般出现在生长旺季的7—8月,达4.4~5.7 mm·d-1;最小值多出现在1月或12月(0.09±0.04 mm·d-1).蒸散量的年际动态明显,为451.3~681.3 mm,其中,生长季占70%以上.年蒸散量与年降水量之比的平均值为1.06±0.17,表明该生态系统的年水分收支状况基本平衡,几乎所有的降水都以蒸散的形式消耗.

Abstract: Evapotranspiration (ET) is an important component of hydrological cycle of terrestrial ecosystem. To study the seasonal and interannual ET variation patterns of typical ecosystems is essential to better understand the water cycle process and to provide reference for the rational utilization of water resources. By using eddy covariance method, this paper studied the seasonal and interannual variation characteristics of ET and water budget in an alpine shrub meadow ecosystem in Haibei of Qinghai from 2003 to 2011. There was an obvious seasonal variation of ET in the study area in 2003-2011, with the maximum (4.4-5.7 mm·d-1) in the vigorous growth season (July-August) and the minimum (0.09±0.04 mm·d-1) in January or December. The annual ET varied greatly among the nine consecutive years, being 451.3 mm in 2010 and 681.3 mm in 2007. More than 70% of the annual ET occurred in the growth season from May to September. The average ratio of annual ET to  annual precipitation was 1.06±0.17, indicating that the water budget of this ecosystem was nearly balanced at year scale, and almost all the precipitation was released into atmosphere by ET.