Quantitative study on influences of terraced field construction and check-dam siltation on soil erosion
查看参考文献30篇
文摘
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To study the influences of terraced field construction and check-dam siltation on soil erosion of a watershed, we built a simplified watershed model for the Loess Plateau hilly-gully region including terraced fields, slope farmlands, steep-slope grasslands, and dam farmlands, and defined three states of watershed (i.e., pioneer, intermediate, and climax stages, respec- tively). Then, the watershed soil erosion moduli at various stages were studied by using a revised universal soil loss equation. Our results show that the pioneer and climax stages are the extreme states of watershed soil-and-water conservation and control; in the pioneer stage, the soil erosion modulus was 299.56 t·ha~(-1)·a~(-1) above the edge of gully, 136.64 t·ha~(-1)·a~(-1) below the edge of gully, and 229.74 t·ha~(-1)·a~(-1) on average; in the climax stage, the soil erosion modulus was 39.10 t·ha~(-1)·a~(-1) above the edge of gully, 1.10 t·ha~(-1)·a~(-1) below the edge of gully, and 22.81 t·ha~(-1)·a~(-1) on average; in the intermediate stage, the soil erosion modulus above the edge of gully exhibited an exponential decline along with the increase in terraced field area percentage, while the soil erosion modulus below the edge of gully exhibited a linear decline along with the increase in siltation height. |
来源
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Journal of Geographical Sciences
,2012,22(5):946-960 【核心库】
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DOI
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10.1007/s11442-012-0975-5
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关键词
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soil-and-water conservation
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Revised Universal Soil Loss Equation
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succession
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the Loess Plateau
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地址
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1.
Institute of Soil and Water Conservation, CAS and Ministry of Water Resources, Shaanxi, Yangling, 712100
2.
Institute of Soil and Water Conservation, CAS and Ministry of Water Resources, Key Lab of Northwest Water Resources and Environment Ecology of Ministry of Education, Shaanxi, Yangling, 712100
3.
Xi'an University of Technology, Key Lab of Northwest Water Resources and Environment Ecology of Ministry of Education, Xi'an, 710048
4.
Upper and Middle Yellow River Bureau, Yellow River Conservancy Commission of the Ministry of Water Resources, Xi'an, 710021
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语种
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英文 |
ISSN
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1009-637X |
学科
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自然地理学 |
基金
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国家973计划
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National Natural Sci- ence fundation of China
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文献收藏号
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CSCD:4695625
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参考文献 共
30
共2页
|
1.
Dang Weiqin.
Dam System Monitoring Method and Evaluation System Study in a Small Catchment of the Loess Plateau. (in Chinese),2008
|
CSCD被引
1
次
|
|
|
|
2.
Fang Xuemin. Mechanism and effect of silt arrest dams for sediment reduction in the middle Yellow River basin.
Journal of Hydraulic Engineering. (in Chinese),1998,10:49-53
|
CSCD被引
1
次
|
|
|
|
3.
Ferro V. A comparative study of rainfall erosivity estimation for southern Italy and southeastern Australia.
Hydrological Sciences Journal,1999,44:3-24
|
CSCD被引
18
次
|
|
|
|
4.
Hutchinson M F. A new procedure for gridding elevation and stream line data with automatic removal of spurious pits.
Journal of Hydrology,1989,106(3/4):211-232
|
CSCD被引
60
次
|
|
|
|
5.
Jiao Juying. Analysis on soil and water conservation benefit of level terrace under different rainfall condition in loess hilly region.
Journal of Soil Water Conservation. (in Chinese),1999,5(3):59-63
|
CSCD被引
13
次
|
|
|
|
6.
Jiao Juying. 黄土高原丘陵沟壑区淤地坝的淤地拦沙效益分析.
Transactions of the Chinese Society of Agricultural Engineering. (in Chinese),2003,19(6):302-306
|
CSCD被引
40
次
|
|
|
|
7.
Kang Lingling. Analysis and confirm of the indexes of water storage and sediment trapping on the terrace of different type region at the Loess Plateau.
Science of Soil and Water Conservation. (in Chinese),2005,3(2):51-56
|
CSCD被引
8
次
|
|
|
|
8.
Li Tiejian. 黄土沟壑区流域重力侵蚀模拟.
Journal of Tianjin University. (in Chinese),2008,41(9):1136-1141
|
CSCD被引
5
次
|
|
|
|
9.
Liu B Y. Slope gradient effects on soil loss for steep slopes.
Transactions of the ASAE,1994,37(6):1835-1840
|
CSCD被引
305
次
|
|
|
|
10.
Liu B Y. Slope length effects on soil loss for steep slopes.
Soil Science Society of American Journal,2000,64(5):226-228
|
CSCD被引
168
次
|
|
|
|
11.
Liu Baoyuan.
Soil Loss Prediction Model. (in Chinese),2001
|
CSCD被引
3
次
|
|
|
|
12.
Liu Shiliang. 土地整理中不同梯田空间配置的水土保持效应.
Journal of Soil and Water Conservation. (in Chinese),2011,25(4):59-68
|
CSCD被引
14
次
|
|
|
|
13.
McCool D K. Revised slope steepness factor for the Universal Soil Loss Equation.
Trans. ASAE,1987,30(5):1387-1396
|
CSCD被引
183
次
|
|
|
|
14.
Mu Xingmin. 陕北黄土高原降雨侵蚀力时空变化研究.
Journal of Arid Land Resources and Environment. (in Chinese),2010,24(3):37-43
|
CSCD被引
26
次
|
|
|
|
15.
Ran Dachuan. 黄河中游地区淤地坝减洪减沙及减蚀作用研究.
Journal of Hydraulic Engineering. (in Chinese),2004,5(5):7-13
|
CSCD被引
49
次
|
|
|
|
16.
Renard K G.
Predicting soil erosion by water. A guide to conservation planning with the Revised Universal Soil Loss Equation (RUSLE). USDA Agriculture Handbook No.703,1997:404
|
CSCD被引
1
次
|
|
|
|
17.
Renard K G. Using monthly precipitation data to estimate the R-factor in the revised USLE.
J. Hydrol,1994,174:287-306
|
CSCD被引
97
次
|
|
|
|
18.
Richardson C W. Estimation of erosion index from daily rainfall amount.
Transactions of the ASAE,1983,26:153-156
|
CSCD被引
86
次
|
|
|
|
19.
Sharpley A N.
EPIC-erosion/productivity impact calculator: 1. Model documentation. United States Department of Agriculture, No.1768,1990:Pt 1235
|
CSCD被引
1
次
|
|
|
|
20.
Sun Ruyong.
General Ecology. (in Chinese),1993
|
CSCD被引
1
次
|
|
|
|
|