Key Laboratory of Geospatial Technology for the Middle and Lower Yellow River Regions, Ministry of Education;College of Environment and Planning of Henan University, 475004, Kaifeng, Henan, China
Abstract:[Background] Influenced by interaction effects of human activities and natural factors, soil and water conservation function of the riparian zone in Beijiang River is facing serious degradation.[Methods] Based on the field runoff scouring experiment on the red soil slope in the riparian zone of the Beijiang River, this study analyzed the changes in hydrodynamic parameters and their relationship with erosion and sediment yields under different slope gradients (7°, 9°, 11°, and 15°) and runoff inflow rates (15 L/min, 12 L/min, and 9 L/min).[Results]1) The average flow velocity increased with runoff inflow rates and presented significantly positive linear correlation with slope gradient (P<0.01) under the same runoff inflow condition. Reynolds number increased slightly with the increase of runoff inflow time, while it was irregular and complex with increasing slope gradients. The Froude number decreased firstly and then tended to be stable with the increase of the runoff inflow time, and the average Froude number was greater than 1 in all treatments, demonstrating that overland flow was in a state of torrent and presented significantly positive linear correlation with slope gradient (P<0.01). The resistance coefficient increased with runoff inflow time, and increased initially and then decreased with increasing slope gradients, inferring nonlinear relationship existed between resistance coefficient and slope gradient. 2) Runoff coefficient increased first and then maintained stable with the increasing runoff inflow time, and showed significant power function relation with slope gradient (P<0.05). The relationship between sediment yield and discharge duration presented the same variation tendency as Reynolds number, while there was a significant linear relationship between sediment yield and slope (P<0.05). 3) The sediment yield had significantly positive linear correlation with the flow shear stress and stream power (P<0.01).[Conclusions] As the last barrier, the riparian zone is of great significance for retarding surface runoff and trapping sediment from upland into river, thus above results can provide scientific evidence for water and soil conservation of riparian slope in red soil area.
吴长松, 赵清贺, 刘璞, 张祎帆, 卞子亓, 徐珊珊. 北江红壤河岸坡面侵蚀水动力特征[J]. 中国水土保持科学, 2017, 15(5): 1-7.
WU Changsong, ZHAO Qinghe, LIU Pu, ZHANG Yifan, BIAN Ziqi, XU Shanshan. Hydrodynamic characteristics of surface runoff on red soil slope in the riparian zone of the Beijiang River. SSWC, 2017, 15(5): 1-7.
JIANG Penghui, CHENG Liang, LI Manchun, et al. Impacts of LUCC on soil properties in the riparian zones of desert oasis with remote sensing data:a case study of the middle Heihe River basin, China[J]. Science of the Total Environment, 2015, 506/507:259.
[2]
高传友, 赵清贺, 刘倩. 北江干流河岸带不同植被类型土壤粒径分形特征[J]. 水土保持研究, 2016, 23(3):37. GAO Chuanyou, ZHAO Qinghe, LIU Qian. Soil particle-size fractal characteristic under different vegetation types in riparian zone of the main stream of Beijiang River[J]. Research of Soil & Water Conservation, 2016, 23(3):37.
[3]
TANG Qiang, BAO Yuhai, HE Xiubin, et al. Sedimentation and associated trace metal enrichment in the riparian zone of the Three Gorges Reservoir, China[J]. Science of the Total Environment, 2014, 479/480(1):258.
[4]
戴矜君, 程金花, 张洪江, 等. 野外放水条件下坡面流水动力学特征[J]. 中国水土保持科学, 2016, 14(3):52. DAI Jinjun, CHENG Jinhua, ZHANG Hongjiang, et al. Hydrodynamic characteristics of surface runoff on field scour[J]. Science of Soil and Water Conservation, 2016, 14(3):52.
[5]
赵清贺, 卢训令, 汤茜, 等. 黄河中下游河岸缓冲带土壤粒径分形特征[J]. 中国水土保持科学, 2016, 14(5):37. ZHAO Qinghe, LU Xunling, TANG Qian, et al. Fractal dimension characteristic of soil particle size in the riparian buffer zone of the middle and lower reaches of the Yellow River[J]. Science of Soil and Water Conservation, 2016, 14(5):37.
[6]
郭太龙, 卓慕宁, 李定强, 等. 华南红壤坡面侵蚀水动力学机制试验研究[J]. 生态环境学报, 2013, 22(9):1556. GUO Tailong, ZHUO Muning, LI Dingqiang, er al. Experimental study on soil erosion and flow hydraulics on red soil slope[J]. Ecology and Environmental Sciences, 2013, 22(9):1556.
[7]
ZHAO Qinghe, LI Dingqiang, ZHAO Muning, et al. Effects of rainfall intensity and slope gradient on erosion characteristics of the red soil slope[J]. Stochastic Environmental Research and Risk Assessment, 2015, 29(2):609.
[8]
罗榕婷, 张光辉, 曹颖. 坡面含沙水流水动力学特性研究进展[J]. 地理科学进展, 2009, 28(4):567. LUO Rongting, ZHANG Guanghui, CAO Ying. Progress in the research of hydrodynamic characteristics of sediment-laden overland flow[J]. Progress in Geography, 2009, 28(4):567.
[9]
张乐涛, 高照良, 田红卫. 工程堆积体陡坡坡面土壤侵蚀水动力学过程[J]. 农业工程学报, 2013, 29(24):94. ZHANG Letao, GAO Zhaoliang, TIAN Hongwei. Hydrodynamic process of soil erosion in steep slope of engineering accumulation[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2013, 29(24):94.
[10]
杨春霞, 姚文艺, 肖培青, 等. 坡面径流剪切力分布及其与土壤剥蚀率关系的试验研究[J]. 中国水土保持科学, 2010, 8(6):53. YANG Chunxia, YAO Wenyi, XIAO Peiqing, et al. Distribution of shear stress and the relationship between soil detachment rate and shear stress under experiments[J]. Science of Soil and Water Conservation, 2010, 8(6):53.
[11]
赵其国, 黄国勤, 马艳芹. 中国南方红壤生态系统面临的问题及对策[J]. 生态学报, 2013, 33(24):7615. ZHAO Qiguo, HUANG Guoqin, MA Yanqin. The problems in red soil ecosystem in southern of China and its countermeasures[J]. Acta Ecologica Sinica, 2013, 33(24):7615.
[12]
戴矜君, 程金花, 张洪江, 等. 野外放水条件下坡面流水动力学特征[J]. 中国水土保持科学, 2016, 14(3):52. DAI Jinjun, CHENG Jinhua, ZHANG Hongjiang, et al. Hydrodynamic characteristics of surface runoff on field scour[J]. Science of Soil and Water Conservation, 2016, 14(3):52.
[13]
郭太龙, 王全九, 王力, 等. 黄土坡面水力学特征参数与土壤侵蚀量间关系研究[J]. 中国水土保持科学, 2008, 6(4):7. GUO Tailong, WANG Quanjiu, WANG Li, et al. Relationship between hydraulic characteristics and soil erosion amount on loess slope[J]. Science of Soil and Water Conservation, 2008, 6(4):7.
[14]
张志玲, 范昊明, 郭成久, 等. 模拟降雨条件下坡面水流流速与径流输出特征研究[J]. 水土保持研究, 2008, 15(6):32. ZHANG Zhiling, FAN Haoming, GUO Chengjiu, et al. Study on the relationship between flow velocity of sloping face and runoff characteristic under the simulated rainfall[J]. Research of Soil & Water Conservation, 2008, 15(6):32.
[15]
吕威, 武新英, 李法虎. 径流量和坡度对复合坡薄层径流水力学特性的影响[J]. 水土保持学报, 2016, 30(5):11. LV Wei, WU Xinying, LI Fahu. Shallow runoff hydraulic characteristics affected by runoff rate and slope gradient of composite slope[J]. Journal of Soil and Water Conservation, 2016,30(5):11.
[16]
任熠, 王先拓, 王玉宽, 等. 紫色土坡面细沟流的水动力学特征试验研究[J]. 水土保持学报, 2007, 21(6):39. REN Yi, WANG Xiantuo, WANG Yukuan, et al. Study on hydrodynamic characters of rill flow on purple soil slope[J]. Journal of Soil and Water Conservation, 2007, 21(6):39.