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논문 기본정보

Analysis of sediment movement caused by debris flow using high-resolution satellite imagery in the Xiao Xue River Watershed, Taiwan

논문 개요

기관명, 저널명, ISSN, ISBN 으로 구성된 논문 개요 표입니다.
기관명 NDSL
저널명 應用地質 = Journal of the Japan Society of Engineering Geology
ISSN 0286-7737,
ISBN

논문저자 및 소속기관 정보

저자, 소속기관, 출판인, 간행물 번호, 발행연도, 초록, 원문UR, 첨부파일 순으로 구성된 논문저자 및 소속기관 정보표입니다
저자(한글) SHIRAISHI, Takashi,TSUTSUI, Ken,NAKAGAWA, Hideaki,ESAKI, Tetsuro
저자(영문)
소속기관
소속기관(영문)
출판인
간행물 번호
발행연도 2008-01-01
초록 This research targets the debris flow caused by heavy rain by the Minddule, Acre Typhoons in July and August, 2004 in the Xiao Xue River Watershed (22.0㎢) in middle portion of the Da-Chia River, Taiwan. The sediment movement area were extracted and divided into slope failure and river using the 5m mesh DEM made from high-resolution stereo satellite images and 2-dimentional satellite image analysis. The historical variation, sediment movement volume and topographical characteristics in the slope failure and river were analyzed. As a result, it was found that the collapsed sediment caused by the slope failures at the Chi-Chi Earthquake had accumulated in the bottom of slope or river and the accumulated sediment have flown down the slope and river and become debris flow by heavy rain caused by Minddule, .Sere Typhoons and had led to big scale sediment disasters. The volume of sediment yield and the accumulated sediment in slope failures was 9,814 thousand ㎥, 2,898 thousand ㎥ respectively. The volume of scoured sediment and accumulated sediment in river was 1,353 thousand ㎥, 2,387 thousand ㎥ respectively. The volume of sediment discharge from the Xiao Xue River Watershed to the Da-Chia River was 5,882 thousand ㎥. It is inferred that the analysis method proposed in this research will be a new effective method for sabo plans in a wide area.
원문URL http://click.ndsl.kr/servlet/OpenAPIDetailView?keyValue=03553784&target=NART&cn=NART51543557
첨부파일

추가정보

과학기술표준분류, ICT 기술분류,DDC 분류,주제어 (키워드) 순으로 구성된 추가정보표입니다
과학기술표준분류
ICT 기술분류
DDC 분류
주제어 (키워드) debris flow,digital elevation model,satellite image,sediment disaster