IMHE OpenIR  > 成都山地所知识仓储(2009年以前)
debris flow distribution and occurrence trend
Language英语
He, N; Chen, NS
Corresponding AuthorHe, N
2012
Source PublicationInternational Conference on Civil, Architectural and Hydraulic Engineering (ICCAHE 2012) ; PROGRESS IN INDUSTRIAL AND CIVIL ENGINEERING, PTS. 1-5
Pages3345-3350
Conference Date2012-8-10~12
Conference PlaceZhangjiajie, PEOPLES R CHINA
Publication Place, LAUBLSRUTISTR 24, CH-8717 STAFA-ZURICH, SWITZERLAND
PublisherTRANS TECH PUBLICATIONS LTD
Funding OrganizationChangsha Univ Sci & Technol; Hunan Univ; Xiangtan Univ; Nanhua Univ; Hunan Univ Sci & Technol; Hunan City Univ
Abstract

Debris flow disaster occurred frequently, at the same time it covered a wide area in China. Through statistics analyzing debris flow disaster data from 1914 to 1999, obtain that debris flow hazards mainly distributed in the east longitude 100-110, 25-300 north latitude and 30-35 north latitude in China. This region is mainly affected by subtropical climate and central Asia humid tropical monsoon climate, such climate have little rainfall in winter but intense rainfall in summer, due to the complex topography and different monsoon circulation, the frequency of debris flow occurrence in this area is much higher than other areas. After the earthquake in May 12, 2008, the slope material structure are destroyed which in turn provide adequate loose clastic-sediment for debris flow to initiate, several years later the loose clastic-sediment may reconsolidate again and reach new balance. Compare the frequency and scale of debris flow before and after the earthquake, know that after earthquake the frequency and scale of debris flow are much serious than the events occurred before earthquake, then gradually tend to stable. Based on these phenomena could predict the scale and trend in the future, at the same time it could provide reference for debris flow prevention and reduction, and then reduce the loss that caused by debris flow hazards.

KeywordDebris Flow Wen-chuan Earthquake Disaster Prevention And Reduction Economic Loss
DOI10.4028/www.scientific.net/AMM.204-208.3345
Citation statistics
Document Type会议论文
Identifierhttp://ir.imde.ac.cn/handle/131551/7229
Collection成都山地所知识仓储(2009年以前)
山地灾害与地表过程重点实验室
Recommended Citation
GB/T 7714
He, N,Chen, NS. debris flow distribution and occurrence trend[C]. , LAUBLSRUTISTR 24, CH-8717 STAFA-ZURICH, SWITZERLAND:TRANS TECH PUBLICATIONS LTD,2012:3345-3350.
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