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2种典型黄土坡面侵蚀特征分析及物理意义解释OA北大核心CSTPCD

Analysis of slope erosion characteristics and physical meaning interpretation for two typical loess

中文摘要英文摘要

研究土壤性质对侵蚀特征的影响可为深刻理解土壤侵蚀机理,以及优化评估模型参数提供重要理论支持.基于此,本研究采用室内模拟降雨试验,在90 mm/h降雨强度及4个坡度(5°、7.5°、10°和15°)条件下,分析黄土丘陵沟壑区2种典型黄土的侵蚀特征,并结合数学关系和物理意义对其侵蚀机制进行解释.结果表明:1)相对于土壤A,土壤B产流快,径流量高,更易发育细沟,侵蚀也更严重,土壤B的总径流量和总侵蚀量分别是土壤A的1.26~1.51倍和3.74~57倍.2)总体来看产流初始阶段侵蚀量、片蚀量和细沟侵蚀阶段侵蚀量均随坡度而增加,片蚀阶段土壤B的含沙量是土壤A的1.09~4.47倍,细沟侵蚀阶段前者是后者2.01倍.土壤B在细沟侵蚀阶段的侵蚀量可达总侵蚀量的98%以上,平均含沙量是片蚀阶段的7.09~32.39倍,相应情况下土壤A分别是96%和10.49倍.3)2种土壤的产沙量与含沙量的关系可用y=ax+b表示,经过优化处理,线性关系的R2可达0.98及以上,斜率a可用以表征径流的侵蚀能力,截距6用来表征可搬运物质类型及丰富程度.本研究对于深入理解土壤质地在坡面侵蚀中的作用,以及为生态保护提供理论支持具有重要的理论与实践意义.

[Background]Soil physical property is an important index to reflect soil erosion resistance,especially when soil particle composition is different,its sensitivity to rainfall and runoff is significantly different.At the same time,in the current research on soil erosion mechanism,more attention is paid to the representational relationship between various elements,but not enough attention is paid to the interpretation of their physical significance.Thus,to study the effect of soil properties on erosion characteristics and the physical significance of erosion rules can provide important theoretical support for the deep understanding of soil erosion mechanism and the optimization of evaluation model.[Methods]This study applied indoor simulated rainfall experiment to analyzed the erosion characteristics of Ansai soil(soil A)and Suide soil(soil B)in loess hilly and gully region under the conditions of 90 mm/h rainfall intensity and four slopes(5°,7.5°,10° and 15°),and explained the erosion mechanism based on the mathematical relationship and physical significance.[Results]1)Compared with soil A,soil B has fast yield and high runoff,and is more prone to rill development and more serious erosion.2)In general,the amount of erosion at the initial stage of runoff generation,sheet erosion stage and rill erosion stage increase with the slope.The sediment content of soil B in the sheet erosion stage is 1.09-4.47 times of that of soil A.The rill erosion stage of the former is 2.01 times that of the latter.The erosion amount of soil B in rill erosion stage is more than 98%of the total erosion amount,and the average sediment content of soil B is 7.09-32.39 times of that in sheet erosion stage,while that of soil A is 96%and 10.49 times,respectively.3)The relationship between sediment yield and sediment content of the two soils can be expressed by y=ax+b.After optimization,the R2 of the linear relationship can reach 0.98 or above.Based on the analysis of mathematical relationship and physical significance,slope a can be used to express the erosion capacity of runoff,and intercept b can be used to characterize the type and abundance of removable substances.Soil particle composition has an important effect on soil erosion.Soil with high clay and silt content has lower sediment concentration and lower soil erosion intensity.[Conclusions]This study has important theoretical and practical significance both for deeply understanding the role of soil texture in slope erosion and for providing theoretical support for ecological protection.

白玉;和继军;孙莉英;田磊;蔡强国;王铭微

首都师范大学,城市环境过程和数字模拟国家重点试验室培育基地,水资源安全北京实验室,100048,北京中国科学院地理科学与资源研究所,100101,北京||中国科学院大学资源与环境学院,100190,北京北京水利水电学校,100024,北京

农业科学

片蚀细沟侵蚀模拟降雨侵蚀机制

sheet erosionrill erosionsimulated rainfallerosion mechanism

《中国水土保持科学》 2024 (003)

36-45 / 10

国家自然科学基金"黄土丘陵沟壑区坡面侵蚀过程对临界坡长的响应机制"(52179071),"黄土坡面细沟形态与土壤再分布空间特征的耦合机制研究"(41977069)

10.16843/j.sswc.2023091

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