IMHE OpenIR  > 山地表生过程与生态调控重点实验室
A New Soil Erosion Model for Hilly Region Based on Information Technology
Yu Tian1,2; Jihui Fan1; Feipeng Xiao3; Genwei Cheng1
Source PublicationADVANCED RESEARCH ON COMPUTER SCIENCE AND INFORMATION ENGINEERING (Communications in Computer and Information Science Vol.153)
Author of SourceShen G ; Huang X
meetingInternational Conference on Advanced Research on Computer Science and Information Engineering
Conference DateMAY 21-22, 2011
Conference PlaceZhengzhou
Contribution Rank1
AbstractResearch and development of watershed scale soil erosion model has been the frontiers in the field of soil erosion in the past 50 years and has been focused on by water and soil conservation workers around the world. However, the present models cannot well simulate the actual conditions of soil erosion in hilly areas. Soil erosion model for small-watershed of hilly areas (SEM-SHA) is a new distributed hydrological model which is developed according to the physical process of sediment yield in the hilly areas. This paper introduced the development, characteristics, structure and function, and input and output of the model. The model was also used in the Lizi River watershed in the hilly areas of the Jialing River. The simulation results showed the SEM-SHA model was fit for the hilly region.
Keywordhilly area hydrological model Jialing River SEM-SHA water and soil loss
Indexed ByCPCI ; EI
WOS IDWOS:000306817200077
EI Accession NumberAccession number:20112914164500
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Document Type会议论文
Corresponding AuthorGenwei Cheng
Affiliation1.Institute of Mountain Hazards and Environment, Chinese Academy of Sciences and Ministry of Water Conservancy, Chengdu 610041, China;
2.Graduate University of Chinese Academy of Sciences, Beijing 100049, China;
3.Guangxi Technical College of Water Conservancy and Electric Power, Nanning 530023, China
First Author Affilication中国科学院水利部成都山地灾害与环境研究所
Corresponding Author Affilication中国科学院水利部成都山地灾害与环境研究所
Recommended Citation
GB/T 7714
Yu Tian,Jihui Fan,Feipeng Xiao,et al. A New Soil Erosion Model for Hilly Region Based on Information Technology[C]//Shen G, Huang X:SPRINGER-VERLAG BERLIN,2011:473-483.
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