[1]肖培青,郑粉莉,姚文艺.坡沟产沙关系及其侵蚀机理研究进展[J].水土保持研究,2004,11(04):101-104.
 XIAO Pei-qing,ZHENG Fen-li,YAO Wen-yi.Research Progress on Relationship of Sediment Yield and Erosion Mechanism Between Hill Slope and Gully Slope System[J].Research of Soil and Water Conservation,2004,11(04):101-104.
点击复制

坡沟产沙关系及其侵蚀机理研究进展

参考文献/References:

[1] 朱显谟.黄土区土壤侵蚀的分类[J].土壤学报, 1956, 4(2):99-115.
[2] 承继成.坡地流水作用的分带性[A].中国地理学会1963年学会论文集[C].北京:科学出版社, 1965.99-104.
[3] 陈永宗.黄河中游黄土丘陵沟壑区坡地的侵蚀发育[J].地理集刊, 1976, (10):35-51.
[4] 罗来兴.划分晋西、陕北、陇东黄土区沟间地和沟谷地的地貌类型[J].地理学报, 1956, 22(3):201-221.
[5] 刘元保, 朱显谟, 周佩华, 等.黄土高原土壤侵蚀垂直分带性研究[J].中国科学院西北水土保持研究所集刊, 1988, 第7集:5-8.
[6] 中国科学院黄土高原综合考察队.黄土高原地区土壤侵蚀区域特征及其治理途径[M].北京:中国科学技术出版社, 1991.53-77.
[7] 刘秉正, 吴发启.黄土塬区沟谷系统的侵蚀发展研究[J].西北林学院学报, 1993, 8(2):7-15.
[8] 蒋德麒, 赵诚信, 陈章霖.黄河中游小流域泥沙来源初步分析[J].地理学报, 1966, 32(1):20-35.
[9] 唐克丽.杏子河流域坡耕地的水土流失及其防治[J].水土保持通报, 1983, 3(5):43-48.
[10] 龚时, 蒋德麒.黄河中游黄土丘陵沟壑区沟道小流域的水土流失及治理[J].中国科学, 1978, (6):671-678.
[11] 曾伯庆.晋西黄土丘陵沟壑区水土流失规律及治理效益[J].人民黄河, 1980, (2):20-25.
[12] 徐雪良.韭园沟流域沟间地、沟谷地来水来沙量的研究[J].中国水土保持, 1987, (8):23-26.
[13] 陈永宗, 等.黄土高原现代侵蚀与治理[M].北京:科学出版社, 1988.170-181.
[14] 张科利.黄土坡面侵蚀产沙分配及其与降雨特征关系的研究[J].泥沙研究, 1991, (4):39-45.
[15] 焦菊英, 刘元宝, 唐克丽.小流域沟间地与沟谷地径流泥沙来量的探讨[J].水土保持学报, 1992, 6(2):24-28.
[16] 郑粉莉, 唐克丽, 白红英.林地开垦后坡沟侵蚀产沙关系的研究[J].中国水土保持, 1994, (8):19-20.
[17] 陈浩, 王开章.黄河中游小流域坡沟侵蚀关系研究[J].地理研究, 1999, 18 (4):363-372.
[18] 陈浩, 等.流域坡面与沟道的侵蚀产沙关系研究[M].北京:气象出版社, 1993.139-172.
[19] 雷阿林.坡沟系统土壤侵蚀动力机制模拟试验研究[D].陕西杨陵:中科院西北水土保持研究所.1996.
[20] 郑粉莉, 康绍忠.黄土坡面不同侵蚀带侵蚀产沙关系及其机理[J].地理学报, 1998, 53(5):422-427.
[21] 郑粉莉, 高学田.黄土坡面土壤侵蚀过程与模拟[M].西安:陕西人民出版社, 2000.96-119.
[22] 肖培青, 郑粉莉.上方来水来沙对细沟侵蚀产沙过程的影响[J].水土保持通报, 2001, 21(1):23-25.
[23] 肖培青, 郑粉莉, 张成娥.细沟侵蚀过程与细沟水流水力学参数的关系研究[J].水土保持学报, 2001, 15(1):54-57.
[24] 肖培青, 郑粉莉.上方来水来沙对细沟水流水力学参数的影响[J].泥沙研究, 2002, (4):69-74.
[25] Horton R E, Leach H R, Vliet V R.Laminar sheet-flow[J].Transaction of the American Geophysical Union, 1934, 15:393-404.
[26] Horton, R E.Development of sreams and their drainage basins, Hydrophysical approach to quantitative morpholopgy[J].Bull.Geo.Soc.Am., 1945, 56:275-370.
[27] Yoon N Y, Wenzel G H.Mechanics of sheet flow under simulated rainfall[J].ASCE, 1971, 97(9):1367-1386.
[28] 姚文艺.坡面阻力规律试验研究[J].泥沙研究, 1996, 3(1):74-81.
[29] Abrahams A D, Gang Li Parsin A J.Rill hydraulics on a semiarid hillsope in the Southern Arizona[J].Earth Surface Process and Landforms, 1996, 21:35-47.
[30] Foster G R, et al.A laboratory study of rill hydraulics:1.velocity relationships[J].Trans.ASAE, 1984, 27:790-796.
[31] Gerard Govers.Relationship between discharge, velocity and flow area for rills eroding loose, non-layered materials[J].Earth Surface Processes and Landforms, 1992, 17:515-528.
[32] Julien P Y, Simons D B.Sediment transport capacity of overland flow[J].Trans of ASAE.1985, 28(3):775-761.
[33] Lu J Y, Casol E A.Sediment transport relationships for shallow flow conditions[A].Proceedings of the fourth international symposium on river sedimentation[C].Beijing:China Ocean Press, 1989.1923-1931.
[34] Guy B T, Dickison W T, Rudra R P.The roles of rainfall and runoff in the sediment transport capacity of interrill flow[J].Transactions of the ASAE, 1987, 30:1378-1386.
[35] Liebenow A M, Elliot W J, Laflen J M et al.interrill erodibility:collection and analysis of data from cropland soils[J].Transctions of the ASAE, 1990, 33:1882-1888.
[36] Rose C W, Willans J R.A mathematical model of soil erosion and deposition process[J].Soil Science Society of America Journal, 1983, 47:991-995.
[37] 雷阿林, 唐克丽, 王文龙.土壤侵蚀链概念的科学意义及特征[J].水土保持学报, 2000, 14(3):79-83.
[38] Ellison W D.Soil erosion studies-Part I:[J] Agric.Eng., 1947, 28:145-146.
[39] Ellison W D, Ellison O T.Soil erosion studies -Part VI:Soil detachment by surface flow[J]. Agric.Eng.1947, 28:402-408.
[40] Ellison, W D, Ellison O T.Soil erosion studies -Part VⅡ:Soil transportation by surface flow[J].Agric.Eng, .1947, 28:442-444, 450.
[41] 陈国祥.土壤侵蚀与流域产沙的物理过程及预报模型[A].全国泥沙基本理论研究学术讨论会会议论文集[C].北京:水利水电出版社, 1992.242-243.
[42] Meyer L D, Wischmeier W H.Mathematical simulation of the process of soil erosion by water[J].Trans of ASAE, 1969, 12:754-758.
[43] Forster G R, Meyer L D, Onstad C A.An erosion equation derived from basic erosion principles[J].Trans.of ASAE.1977, 20(4):678-672.
[44] Foster G R, Meyer L D.A closed-form soil erosion equation for upland areas[A].In:Shen H W (ed.).Symposium of Sedimentation[C], Colorado:State Univ., Ft.Collins.Co., 1972.12-19
[45] Ascogh J C, Baffaut C, Nearing M A.The WEPP watershed model:Ⅰ.Hydrology and erosion[J].Trans of the ASAE, 1996, 40(4):921-933.

相似文献/References:

[1]罗婷,王文龙,李宏伟,等.开发建设中扰动地面新增水土流失研究[J].水土保持研究,2012,19(03):30.
 LUO Ting,LI Hong-wei,BAI Yun.Study on the Newly Occurred Soil and Water Loss on the Disturbed Lands in the Site of Development and Construction[J].Research of Soil and Water Conservation,2012,19(04):30.
[2]王斌科,唐克丽.子午岭林区的植被破坏与侵蚀产沙特点[J].水土保持研究,1993,(01):68.
 Wang Binke,Tang Keli.Characteristics of Vegetation Destruction by Human Beingand Soil Erosion and Yield Sediment in Ziwuling Forest Area[J].Research of Soil and Water Conservation,1993,(04):68.
[3]吴普特,刘普灵,武春龙,等.坡面侵蚀垂直分布特征动态变化过程初步研究[J].水土保持研究,1997,4(02):41.
 Wu Pute,Liu Puling,Wu Chuniong,et al.Study on the Changeable Process of Soil Erosion Spatial Distribution Characteristics on the Slope Surface[J].Research of Soil and Water Conservation,1997,4(04):41.
[4]余新晓,秦永胜.森林植被对坡地不同空间尺度侵蚀产沙影响分析[J].水土保持研究,2001,8(04):66.
 YU Xin-xiao,QIN Yong-sheng.Effect of Forest Cover on Sediment Yield Produced by Erosion in Different Spatial Scales[J].Research of Soil and Water Conservation,2001,8(04):66.
[5]田磊,戴静,祁永刚.流域侵蚀产沙模型述评[J].水土保持研究,2002,9(04):77.
 TIAN Lei,DAI Jing,QI Yong-gang.Comment on Model of Erosion and Sediment Production in Watershed[J].Research of Soil and Water Conservation,2002,9(04):77.
[6]刘前进,蔡强国,刘纪根.不同空间尺度上侵蚀产沙模型研究[J].水土保持研究,2004,11(02):69.
 LIU Qian-jin,CAI Qiang-guo,LIU Ji-gen.Study of Soil Erosion Modeling in Different Spatial Scales[J].Research of Soil and Water Conservation,2004,11(04):69.
[7]王占礼,黄新会,牛振华.国内主要流域侵蚀产沙模型评述[J].水土保持研究,2004,11(04):28.
 WANG Zhan-li,HUANG Xin-hui,NIU Zhen-hua.Review of Models of Soil Erosion and Sediment Yield in Catchment in China[J].Research of Soil and Water Conservation,2004,11(04):28.
[8]陆中臣,陈劭锋,陈浩.黄土高原侵蚀产沙的地貌临界[J].水土保持研究,2006,13(01):1.
 LU Zhong-chen,CHEN Shao-feng,CHEN Hao.The Geomorphic Thresholds of Erosional Sediment in the Loess Plateau[J].Research of Soil and Water Conservation,2006,13(04):1.
[9]陈劭锋,陆中臣.黄土高原多沙粗沙区侵蚀产沙的临界问题[J].水土保持研究,2007,14(03):206.
 CHEN Shao-feng,LU Zhong-chen.Thresholds of the Erosion Sediment Yield in the Area with Abundant and Coarse Sediment of the Loess Plateau[J].Research of Soil and Water Conservation,2007,14(04):206.
[10]贾莲莲,李占斌,李鹏,等.黄土区野外模拟降雨条件下坡面径流——产沙试验研究[J].水土保持研究,2010,17(01):1.
 JIA Lian-lian,LI Zhan-bin,LI Peng,et al.Study on Rainfall Runoff-Sediment Yield Under Modeling Rain Condition in the Loess Plateau[J].Research of Soil and Water Conservation,2010,17(04):1.

备注/Memo

收稿日期:2004-7-10;改回日期:。
基金项目:国家自然科学基金重点项目(40335050;50239080);中国科学院知识创新重要方向项目(KZCX3-SW-422)
作者简介:肖培青(1972- ),女,河南卫辉人,博士生,主要从事土壤侵蚀过程模拟方面的研究。

更新日期/Last Update: 1900-01-01