[1]AO Liman,JIANG Chaohua,XU Qinxue,et al.Influence of Rock Surface Morphology on Runoff and Sediment in Karst Slope of Southwest China[J].Research of Soil and Water Conservation,2023,30(05):52-60.[doi:10.13869/j.cnki.rswc.2023.05.005.]
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Influence of Rock Surface Morphology on Runoff and Sediment in Karst Slope of Southwest China

References:
[1] 陈洪松,冯腾,李成志,等.西南喀斯特地区土壤侵蚀特征研究现状与展望[J].水土保持学报,2018,32(1):10-16.
[2] 苏维词.中国西南岩溶山区石漠化的现状成因及治理的优化模式[J].水土保持学报,2002,16(2):29-32,79.
[3] Dai Q, Peng X, Zhao L, et al. Effects of underground pore fissures on soil erosion and sediment yield on karst slopes [J]. Land Degradation & Development, 2017,28(7):1922-1932.
[4] 张信宝,王世杰,曹建华,等.西南喀斯特山地水土流失特点及有关石漠化的几个科学问题[J].中国岩溶,2010,29(3):274-279.
[5] 李阳兵,邵景安,王世杰,等.岩溶生态系统脆弱性研究[J].地理科学进展,2006,25(5):1-9.
[6] 苏维词.喀斯特土地石漠化类型划分及其生态治理模式探讨[J].中国土地科学,2008,22(4):32-37.
[7] 李瑞,陈康,刘瑞禄,等.基于小流域尺度的黔北喀斯特地区产流产沙特征[J].农业工程学报,2019,35(11):139-147.
[8] Gong T X, Zhu Y J, Shao M A. Effect of embedded-rock fragments on slope soil erosion during rainfall events under simulated laboratory conditions [J]. Journal of Hydrology, 2018,563:811-817.
[9] Cerda A. Effects of rock fragment cover on soil infiltration, interrill runoff and erosion [J]. European Journal of Soil Science, 2001,52(1):59-68.
[10] Lv J, Luo H, Xie Y. Effects of rock fragment content, size and cover on soil erosion dynamics of spoil heaps through multiple rainfall events [J]. Catena, 2019,172:179-189.
[11] 王济,蔡雄飞,雷丽,等.不同裸岩率下我国西南喀斯特山区土壤侵蚀的室内模拟[J].中国岩溶,2010,29(1):1-5.
[12] Rodrigo-Comino J, García-Díaz A, Brevik E C, et al. Role of rock fragment cover on runoff generation and sediment yield in tilled vineyards[J]. European Journal of Soil Science, 2017,68(6):864-872.
[13] Dai Q, Peng X, Yang Z, et al. Runoff and erosion processes on bare slopes in the Karst Rocky Desertification Area [J]. Catena, 2017,152:218-226.
[14] 宋兰,张玉启,何丙辉,等.喀斯特槽谷区岩石与坡面夹角对产流产沙过程的影响[J].水土保持学报,2022,36(3):9-15.
[15] Smets T, Poesen J, Bochet E. Impact of plot length on the effectiveness of different soil-surface covers in reducing runoff and soil loss by water [J]. Progress in Physical Geography:Earth and Environment, 2008,32(6):654-677.
[16] 李瑞,盘礼东.岩石裸露与水土流失关系研究现状及石漠化因子研究存在的问题[J].水土保持学报,2021,35(5):10-15,23.
[17] Fang Q, Zhao L, Hou R, et al. Rainwater transformation to runoff and soil loss at the surface and belowground on soil-mantled karst slopes under rainfall simulation experiments [J]. Catena, 2022,215:106316.
[18] Peng X, Dai Q, Li C, et al. Role of underground fissure flow in near-surface rainfall-runoff process on a rock mantled slope in the karst rocky desertification area [J]. Engineering Geology, 2018,243:10-17.
[19] Martínez-Zavala L, Jordán A. Effect of rock fragment cover on interrill soil erosion from bare soils in Western Andalusia, Spain[J]. Soil Use and Management, 2008,24(1):108-117.
[20] Han Z, Wang X Y, Song D D, et al. Response of soil erosion and sediment sorting to the transport mechanism on a steep rocky slope [J]. Earth Surface Processes and Landforms, 2019,44(12):2467-2478.
[21] 殷亮.喀斯特石牙出露坡地产流产沙特征及影响因素研究[D].昆明:云南大学,2017.
[22] Fu Z Y, Chen H S, Zhang W, et al. Subsurface flow in a soil-mantled subtropical dolomite karst slope:A field rainfall simulation study [J]. Geomorphology, 2015,250:1-14.
[23] 罗为群,蒋忠诚,韩清延,等.岩溶峰丛洼地不同地貌部位土壤分布及其侵蚀特点[J].中国水土保持,2008,321(12):46-49.
[24] 甘卓亭,叶佳,周旗,等.模拟降雨下草地植被调控坡面土壤侵蚀过程[J].生态学报,2010,30(9):2387-2396.
[25] Sohrt J, Ries F, Sauter M, et al. Significance of preferential flow at the rock soil interface in a semi-arid karst environment [J]. Catena, 2014,123:1-10.
[26] 吴庆华,朱国胜,崔皓东,等.降雨强度对优先流特征的影响及其数值模拟[J].农业工程学报,2014,30(20):118-127.
[27] Wang D, Shen Y, Huang J, et al. Rock outcrops redistribute water to nearby soil patches in karst landscapes[J]. Environmental Science and Pollution Research, 2016,23:8610-8616.
[28] 车明轩,宫渊波, Khan M N,等.不同雨强、坡度对秸秆覆盖保持水土效果的影响[J].水土保持学报,2016,30(2):131-135,42.
[29] 李彦海,陈晓燕,韩珍,等.紫色土细沟水流输沙能力对近地表水流作用的响应[J].土壤学报,2021,58(3):657-664.
[30] 张兴奇,顾礼彬,张科利,等.坡度对黔西北地区坡面产流产沙的影响[J].水土保持学报,2015,29(4):18-22,72.
[31] 闫帅旗,朱冰冰,边熇.不同覆盖位置下草地坡面水流路径长度变化特征[J].农业工程学报,2021,37(3):116-123.
[32] 蔡雄飞,赵士杰,王济,等.基于侵蚀过程的喀斯特坡耕地土壤重金属迁移机制[J].科学技术与工程,2021,21(23):9767-9774.
[33] 张会茹,郑粉莉.不同降雨强度下地面坡度对红壤坡面土壤侵蚀过程的影响[J].水土保持学报,2011,25(3):40-43.
[34] 黄晓虎,王常明,宋朋燃,等.黄土边坡降雨侵蚀特征的物理模拟试验研究[J].工程地质学报,2015,23(4):725-730.
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