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青藏高原坡面冻土土壤水分空间变异特性

曹伟 盛煜 吴吉春 李静 王生廷

水科学进展2017,Vol.28Issue(1):32-40,9.
水科学进展2017,Vol.28Issue(1):32-40,9.DOI:10.14042/j.cnki.32.1309.2017.01.004

青藏高原坡面冻土土壤水分空间变异特性

Spatial variability of permafrost soil-moisture on the slope of the Qinghai-Tibet Plateau

曹伟 1盛煜 2吴吉春 1李静 1王生廷1

作者信息

  • 1. 中国科学院西北生态环境资源研究院冻土工程国家重点实验室,甘肃兰州730000
  • 2. 重庆市国土资源和房屋勘测规划院,重庆400020
  • 折叠

摘要

Abstract

Permafrost degradation and its freezing-thawing process affect the physical,chemical and biological processes of ecological and hydrological systems in cold regions.In particular,the movement of water in frozen soil is the most important carrier or the main form of migration-transformation of matter and energy in each surface layer in cold regions.Thus,the movement of water in frozen soil is one of the primary forces driving water-resources deterioration and ecological-function degradation.One of the key problems is to reveal the spatial and temporal variability of soil moisture movement and its main controlling factors in permafrost regions.In the Qinghai-Tibet Plateau,the occurrence of permafrost is complex due to different terrain features.Therefore,the spatial variability of the permafrost soil-mois ture is more significant.Thus,we explore the spatial variability and its main controlling factors of permafrost soil-moisture on the northern-slope of the Bayan Har Mountains in the Qinghai-Tibet Plateau.The method of classification and regression tree (CART) is adopted to identify the main controlling factors influencing the soil moisture movement.Ad ditionally,the relationships between soil moisture and environmental factors are revealed by the use of canonical correspondence analysis (CCA).The results show the following:① This greatly enhances the horizontal flow in the freezing period due to the terrain slope and the freezing-thawing process.Vertical migration is the main form of soil moisture movement,and it causes the soil-moisture content in the up-slope to be higher than that in the down-slope.In con trast,the soil-moisture content in the up-slope is lower than that in the down-slope during the melting period.② The main environmental factors that affect the slope-permafrost soil-moisture are elevation,soil texture,soil temperature and vegetation coverage.However,there are differences in the impact factors of the soil moisture in different freezing thawing stages.The main factors are elevation,soil texture and soil temperature in the freezing stage,with relative contribution rates of 19.97%,19.45% and 9.56%,respectively.In the melting stage,the main factors are elevation,vegetation coverage and soil texture,with relative contribution rates of 37.4%,14.9% and 10.7%,respectively.③ The main factors that affect the slope-permafrost soil-moisture at the shallow depth of 0-20 cm are slope,elevation and vegetation coverage,with correlation coefficients of 0.941 2,0.903 9 and 0.563 1,respectively.At the middle and lower depths,the main factors influencing the soil moisture are complex.

关键词

青藏高原/坡面尺度/多年冻土/土壤水分/空间变异特征

Key words

Qinghai-Tibet Plateau/slope scale/permafrost/soil moisture/spatial variability

分类

天文与地球科学

引用本文复制引用

曹伟,盛煜,吴吉春,李静,王生廷..青藏高原坡面冻土土壤水分空间变异特性[J].水科学进展,2017,28(1):32-40,9.

基金项目

中国科学院重点部署项目(KZZD-EW-13) (KZZD-EW-13)

中国博士后科学基金资助项目(2016T90962) (2016T90962)

The study is financially supported by the Chinese Academy of Sciences (CAS) Key Research Program (No.KZZD-EW-13) and the China Postdoctoral Science Foundation (No.2016T90962). (CAS)

水科学进展

OA北大核心CSCDCSTPCD

1001-6791

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