1. 北京师范大学地表过程与资源生态国家重点实验室,北京,100875
2. 北京师范大学地理科学学部,北京,100875
[ "张光辉(1969-),男,教授,博士生导师,主要从事土壤侵蚀与水土保持研究。E-mail:ghzhang@bnu.edu.cn" ]
纸质出版:2020
移动端阅览
张光辉. 对土壤侵蚀研究的几点思考[J]. 水土保持学报, 2020,34(4):21-30.
ZHANG Guanghui. Several Ideas Related to Soil Erosion Research[J]. 2020, 34(4): 21-30.
张光辉. 对土壤侵蚀研究的几点思考[J]. 水土保持学报, 2020,34(4):21-30. DOI: 10.13870/j.cnki.stbcxb.2020.04.004.
ZHANG Guanghui. Several Ideas Related to Soil Erosion Research[J]. 2020, 34(4): 21-30. DOI: 10.13870/j.cnki.stbcxb.2020.04.004.
土壤侵蚀是现代地理环境条件下改变地貌景观的主要过程,也是引起土壤质量退化、沙漠化与石漠化的核心因素,与土壤、生态、水文等多个地表过程密切相关。虽然土壤侵蚀研究需要气候、地质、地貌、土壤、水文、生态等相关学科的基本知识,分析土壤侵蚀发生、发展过程的动力机制,但需要明确界定土壤侵蚀研究的时空尺度。土壤侵蚀与水土保持之间相互联系、相互促进。土壤侵蚀研究的时间尺度以次降雨、月、年为主,研究主题为次降雨侵蚀过程、土壤侵蚀季节变化与年际变化,时间尺度不宜超过100年。土壤侵蚀研究的空间尺度以小流域为主,基于土壤侵蚀垂直分带性,可以进一步分为样点、坡面、沟坡与小流域。在不同空间尺度上,研究内容与研究方法差异明显。土壤侵蚀过程包括土壤分离、泥沙输移和泥沙沉积,各个过程的主控因素存在差异,研究成果积累差异明显,研究重点会随着时空尺度的变化而有所不同。在土壤侵蚀过程研究中,应充分理解分离控制和输移控制及其时空转换阈值。虽然土壤侵蚀研究已经取得了大量成果,但在细沟网络结构及其时空变化、泥沙沉积过程、沟蚀形成与演变动力机制、重力侵蚀发育过程动力学机理、小流域土壤侵蚀过程模型等诸多方面,亟待加强研究。
Soil erosion is a key process to alter landforms under modern geo-environmental conditions. It is also the main element to soil degradation
desertification and rocky desertification and is closely related to earth surface processes of soil
ecology and hydrology. The knowledge of climatology
geology
geomorphology
pedology
hydrology
and ecology are needed to analyze the dynamic mechanisms of soil erosion occurring and development. However
the boundaries of temporal and spatial scales need to be identified clearly. Soil erosion is closely related to soil and water conservation and they are stimulated to each other. The temporal scale of soil erosion research focuses on rainfall event
month
and year. The main topics are erosion processes of rainfall event
seasonal and inter-annual variations in soil erosion. The time scale should be less than 100 years. The spatial scale of soil erosion research should be focus on small watershed. Based on the vertical distribution of soil erosion in small watershed
site
hillslope
gully and small watershed are commonly selected to study soil erosion. Nevertheless
the contents and methods are quite different from different scales. Soil erosion includes three sub-processes of soil detachment
sediment transport and sediment deposition. The key influencing factors and the research accumulations of these sub-processes are significantly different. The studying topics change with the temporal and spatial scales. The detach-limited and transport-limited as well as their altering threshold conditions should be always remind in mind to understand your experimental results. The future studies should be enhanced on rill network and its temporal-spatial variations
sediment deposition
dynamic mechanism of gully formation and evolution
mechanism of gravity erosion development
process-based soil erosion model for small watershed.
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余新晓,张光辉,史志华,等.水土保持学导论[M].北京:科学出版社,2019.
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Nyssen J, Veyret P, Poesen J, et al. The effectiveness of loose rock check dams for gully control in Tigray, northern Ethiopia[J].Soil Use and Management,2004,20:55-64.
Zhang G H, Shen R C, Luo R T, et al. Effects of sediment load on hydraulics of overland flow on steep slopes[J].Earth Surface Processes and Landforms,2010,35:1811-1819.
Zhang G H, Xie Z F. Soil surface roughness decay under different topographic conditions[J].Soil & Tillage Research,2019,187:92-101.
张光辉,刘宝元,张科利.坡面径流分离土壤的水动力学实验研究[J].土壤学报,2002,39(6):882-886.
张光辉.坡面水蚀过程水动力学研究进展[J].水科学进展,2001,12(3):395-402.
曹颖,张光辉,唐科明,等.地表覆盖对坡面流流速影响的模拟试验[J].山地学报,2011,29(6):654-659.
Zhang G H, Luo R T, Cao Y, et al. Impacts of sediment load on Manning coefficient in supercritical shallow flow on steep slopes[J].Hydrological Processes,2010,24:3909-3914.
Zhang G H, Liu B Y, Liu G B, et al. Detachment of undisturbed soil by shallow flow[J].Soil Science Society of America Journal,2003,67:713-719.
栾莉莉,张光辉,王莉莉,等.基于水流功率的坡面流挟沙力模拟[J].泥沙研究,2016(2):61-67.
Zhang G H, Tang K M, Ren Z P, et al. Impact of grass root mass density on soil detachment capacity by concentrated flow on steep slopes[J].Transactions of the American Society of Agricultural and Biological Engineers,2013,56(3):927-934.
Liu F, Zhang G H, Wang H. Effects of biological soil crusts on soil detachment process by overland flow in the Loess Plateau of China[J].Earth Surface Processes and Landforms,2016,41:875-883.
Wang L J, Zhang G H, Wang X, et al. Soil loss:Effects of plant litter incorporation rate under simulated rainfall conditions[J].Land Degradation and Development,2019,30:1293-1302.
李宁宁,张光辉,王浩,等.黄土丘陵沟壑区浅层滑坡堆积体植被演替特征及土壤养分响应[J].山地学报,2018,36(5):669-678.
Wang B, Zhang G H, Shi Y Y, et al. Effect of natural restoration time of abandoned farmland on soil detachment by overland flow in the Loess Plateau of China[J].Earth Surface Processes and Landforms,2013,38:1725-1734.
Zhang B J, Zhang G H, Yang H Y, et al. Temporal variation in soil erosion resistance of steep slopes restored with different vegetation communities on the Chinese Loess Plateau[J].Catena,2019,182:104170.
张光辉.退耕驱动的近地表特性变化对土壤侵蚀的潜在影响[J].中国水土保持科学,2017,15(4):143-154.
Zhang G H, Tang K M, Zhang X C. Temporal variation in soil detachment under different land uses in the Loess Plateau of China[J].Earth Surface Processes and Landforms,2009,34:1302-1309.
Zhang G H, Liu G B, Tang M K, et al. Flow detachment of soils under different land uses in the Loess Plateau of China[J].Transactions of the American Society of Agricultural and Biological Engineers,2008,51(3):883-890.
李智广,张光辉,刘秉正,等.水土流失测验与调查[M].北京:中国水利水电出版社,2005.
Zhang X C, Zhang G H, Garbrecht J D, et al. Dating sediment in a fast sedimentation reservoir using Cesium-137 and lead-210[J].Soil Science Society of America Journal,2015,79(3):948-956.
张光辉.土壤侵蚀模型研究现状与展望[J].水科学进展,2002,13(3):389-396.
Zhang G H, Liu Y M, Han Y F, et al. Sediment transport and soil detachment on steep slopes:Ⅱ. Sediment feedback relationship[J].Soil Science Society of America Journal,2009,73(4):1298-1304.
Sun L, Zhang G H, Fa L, et al. Effects of incorporated plant litter on soil resistance to flowing water erosion in the Loess Plateau of China[J].Biosystems Engineering,2016,147:238-247.
张光辉.土壤分离能力测定的不确定性分析[J].水土保持学报,2017,31(2):1-6.
Zhang G H, Liu Y M, Han Y F, et al. Sediment transport and soil detachment on steep slopes:I. Transport capacity estimation[J].Soil Science Society of America Journal,2009,73(4):1291-1297.
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张光辉.对坡面径流挟沙力研究的几点认识[J].水科学进展,2018,29(2):151-158.
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