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马粪沟流域不同景观带水文过程

杨永刚 肖洪浪 赵良菊 邹松兵 尹振良

水科学进展2011,Vol.22Issue(5):624-630,7.
水科学进展2011,Vol.22Issue(5):624-630,7.DOI:32.1309.P.20110911.1135.019

马粪沟流域不同景观带水文过程

Hydrological processes in different landscapes on Mafengou River basin

杨永刚 1肖洪浪 2赵良菊 1邹松兵 1尹振良1

作者信息

  • 1. 中国科学院寒区旱区环境与工程研究所内陆河流域生态水文重点实验室,甘肃兰州730000
  • 2. 山西大学黄土高原研究所,山西太原030006
  • 折叠

摘要

Abstract

There is less research about integrated hydrological processes in alpine cold regions at present. This paper aims to explore the hydrological processes in different landscapes on the Mafengou River basin of an alpine cold region. This is done through the identification of the composition of alpine runoff of different origins including glacier, snow, frozen soil, surface water, groundwater, and precipitation using isotope and hydrochemical methods. A mixing model is employed for hydrograph separation. The result shows that the groundwater from the alpine cold desert zone and shrub zone contributes about 52% of river discharge in the Mafengou River during the wet seasons. The recharge of groundwater is achieved by transforming thawed frozen soil water into river channels, and infiltrating glacier snow melt water and precipitation on the land surface. Other contributions include 11 % melt water directly coming from the glacier snow zone, 20% surface runoff on the alpine cold desert zone and alpine shrub meadow zone, 9% thawed frozen soil water from the alpine grassland zone, and 8% precipitation water. The study suggests that the direct runoff generated from precipitation events rarely occurs over the whole basin. Much precipitation will infiltrate into the soil either becoming interflow or recharging groundwater, and then drain into river channels.

关键词

同位素/水化学/水文过程/景观带/冻土/地下水

Key words

isotope/ hydrochemical/ hydrological processes/ landscape zone/ frozen soil/ groundwater

分类

天文与地球科学

引用本文复制引用

杨永刚,肖洪浪,赵良菊,邹松兵,尹振良..马粪沟流域不同景观带水文过程[J].水科学进展,2011,22(5):624-630,7.

基金项目

冻土工程国家重点实验室开放基金项目(SKLFSE200905) (SKLFSE200905)

国家自然科学基金项目(91025016 ()

40801021) ()

水科学进展

OA北大核心CSCDCSTPCD

1001-6791

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