Effects of physical soil crusts on infiltration and splash erosion in three typical Chinese soils

来源 :International Journal of Sediment Research | 被引量 : 0次 | 上传用户:himayu
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Physical soil crusts likely have significant effects on infiltration and soil erosion,however,little is known on whether the effects of the crusts change during a rainfall event.Further,there is a lack of discussions on the differences among the crusting effects of different soil types.The objectives of this study are as follows:(i) to study the effects of soil crusts on infiltration,runoff,and splash erosion using three typical soils in China,(ii) to distinguish the different effects on hydrology and erosion of the three soils and discuss the primary reasons for these differences,and(iii) to understand the variations in real soil shear strength of the three soils during rainfall events and mathematically model the effects of the crusts on soil erosion.This study showed that the soil crusts delayed the onset of infiltration by 5 to 15 min and reduced the total amount of infiltration by 42.9 to 53.4%during rainfall events.For a purple soil and a loess soil,the initial crust increased the runoff by 2.8%and 3.4%,respectively,and reduced the splash erosion by 3.1%and 8.9%,respectively.For a black soil,the soil crust increased the runoff by 42.9%and unexpectedly increased the splash erosion by 95.2%.In general,the effects of crusts on the purple and loess soils were similar and negligible,but the effects were significant for the black soil.The soil shear strength decreased dynamically and gradually during the rainfall events,and the values of crusted soils were higher than those of incrusted soils,especially during the early stage of the rainfall.Mathematical models were developed to describe the effects of soil crusts on the splash erosion for the three soils as follows:purple soil,F_c =0.002?-0.384;black soil,F_c =-0.022?+ 3.060;and loess soil,F_c.= 0.233lnt-1.239.Combined with the equation R_c =F_c·(R_(uc)-1).the splash erosion of the crusted soil can be predicted over time. There is a lack of discussions on the differences among the crusting effects of different soil types The objectives of this study are as follows: (i) to study the effects of soil crusts on infiltration, runoff, and splash erosion using three typical soils in China, (ii) to distinguish the different effects on hydrology and erosion of the three soils and discuss the primary reasons for these differences, and (iii) to understand the variations in real soil shear strength of the three soils during rainfall events and mathematically model the effects of the crusts on soil erosion. This study showed that the soil crusts delayed the onset of infiltration by 5 to 15 min and reduced the total amount of infiltration by 42.9 to 53.4% ​​during rainfall events. For a purple soil and a loess soil, the initial crust increased th e runoff by 2.8% and 3.4%, respectively, and reduced the splash erosion by 3.1% and 8.9% respectively. For a black soil, the soil crust increased the runoff by 42.9% and unexpectedly increased the splash erosion by 95.2% .In general, the effects of crusts on the purple and loess soils were similar and negligible, but the effects were significant for the black soil. the soil shear strength decreased dynamically and gradually during the rainfall events, and the values ​​of crusted soils were higher than those of incrusted soils, especially during the early stage of the rainfall. Mathematical models were developed to describe the effects of soil crusts on the splash erosion for the three soils as follows: purple soil, F_c = 0.002 -0.384; black soil, F_c = -0.022? + 3.060; and loess soil, F_c. = 0.233lnt - 1.239. Combined with the equation R_c = F_c · (R_ (uc) -1). The splash erosion of the crusted soil can be predicted over time.
其他文献
Rapid population growth in the upper Blue Nile basin has led to fast land-use changes from natural forest to agricultural land.This resulted in speeding up the
目的建立芪黄胶囊的质量控制方法。方法采用薄层色谱法对芪黄胶囊中女贞子、匙羹藤叶、青风藤、大黄进行定性鉴别,HPLC-ELSD法对制剂中黄芪甲苷进行含量测定。结果薄层鉴别分
Subtidal sediments of Isla del Coco(Cocos Island),Costa Rica were described in their grain size,sorting,organic matter,and carbonates from 27 dredge samples(3-7
该文从挂篮荷载计算、施工流程、支座及临时固结施工、挂篮安装及试验、合拢段施工、模板制作安装、钢筋安装、混凝土的浇筑及养生、测量监控等方面人手,介绍了S226海滨大桥
该文从挂篮荷载计算、施工流程、支座及临时固结施工、挂篮安装及试验、合拢段施工、模板制作安装、钢筋安装、混凝土的浇筑及养生、测量监控等方面人手,介绍了S226海滨大桥
该文从挂篮荷载计算、施工流程、支座及临时固结施工、挂篮安装及试验、合拢段施工、模板制作安装、钢筋安装、混凝土的浇筑及养生、测量监控等方面人手,介绍了S226海滨大桥
The objective of this article is to study the geotechnical and environmental characteristics of sediments dredged from two Tunisian harbors:Rades and Gabes.The
该文从挂篮荷载计算、施工流程、支座及临时固结施工、挂篮安装及试验、合拢段施工、模板制作安装、钢筋安装、混凝土的浇筑及养生、测量监控等方面人手,介绍了S226海滨大桥
该文从挂篮荷载计算、施工流程、支座及临时固结施工、挂篮安装及试验、合拢段施工、模板制作安装、钢筋安装、混凝土的浇筑及养生、测量监控等方面人手,介绍了S226海滨大桥
该文从挂篮荷载计算、施工流程、支座及临时固结施工、挂篮安装及试验、合拢段施工、模板制作安装、钢筋安装、混凝土的浇筑及养生、测量监控等方面人手,介绍了S226海滨大桥