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Effects of micro-topography and vegetation type on soil moisture in a large gully on the Loess Plateau of China

Bowei Yu, Gaohuan Liu, Qingsheng Liu, Jiuliang Feng, Xiaoping Wang, Guozhong Han, Chong Huang
Available Online 24 August 2017, nh2017023; DOI: 10.2166/nh.2017.023
Bowei Yu
State Key Laboratory of Resources and Environmental Information System, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China E-mail: liuqs@lreis.ac.cnUniversity of Chinese Academy of Sciences, Beijing 100049, China
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Gaohuan Liu
State Key Laboratory of Resources and Environmental Information System, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China E-mail: liuqs@lreis.ac.cn
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Qingsheng Liu
State Key Laboratory of Resources and Environmental Information System, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China E-mail: liuqs@lreis.ac.cn
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Jiuliang Feng
Institute of Soil and Water Conservation of Shanxi Province, Taiyuan 030013, China
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Xiaoping Wang
Institute of Soil and Water Conservation of Shanxi Province, Taiyuan 030013, China
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Guozhong Han
Institute of Soil and Water Conservation of Shanxi Province, Taiyuan 030013, China
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Chong Huang
State Key Laboratory of Resources and Environmental Information System, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China E-mail: liuqs@lreis.ac.cn
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Abstract

Large gullies occur globally and can be classified into four main micro-topographic types: ridges, plane surfaces, pipes and cliffs. Afforestation is an effective method of controlling land degradation worldwide. However, the combined effects of afforestation and micro-topography on the variability of soil moisture remain poorly understood. The primary objectives of this study were to determine whether afforestation affects the spatial pattern of the root-zone (0–100 cm) soil moisture and whether soil moisture dynamics differ among the micro-topographic types in gully areas of the Chinese Loess Plateau. The results showed that in the woodland regions, the spatial mean moisture values decreased by an average of 6.2% and the spatial variability increased, as indicated by the standard deviation (17.1%) and the coefficient of variation (22.2%). In general, different micro-topographic types exerted different influences on soil moisture behavior. The plane surface presented the largest average soil moisture values and the smallest spatial variability. The lowest soil moisture values were observed in the ridge, mainly due to the rapid drainage of these areas. Although pipe woodland region can concentrate surface runoff during and after rainfall, the larger trees growing in these areas can lead to increased soil moisture evapotranspiration.

  • afforestation
  • gully
  • loess plateau
  • micro-topography
  • soil moisture
  • First received 9 February 2017.
  • Accepted in revised form 23 June 2017.
  • © IWA Publishing 2017

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Hydrology Research: 49 (2)
  Volume 49,issue 2

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Effects of micro-topography and vegetation type on soil moisture in a large gully on the Loess Plateau of China
Bowei Yu, Gaohuan Liu, Qingsheng Liu, Jiuliang Feng, Xiaoping Wang, Guozhong Han, Chong Huang
Hydrology Research Aug 2017, nh2017023; DOI: 10.2166/nh.2017.023
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Effects of micro-topography and vegetation type on soil moisture in a large gully on the Loess Plateau of China
Bowei Yu, Gaohuan Liu, Qingsheng Liu, Jiuliang Feng, Xiaoping Wang, Guozhong Han, Chong Huang
Hydrology Research Aug 2017, nh2017023; DOI: 10.2166/nh.2017.023

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Keywords

afforestation
gully
Loess Plateau
micro-topography
soil moisture
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