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Introduction of Hydraulic Field Investigation Method to Utilize on the Inhabitation Environment Definition at a River
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  • Introduction of Hydraulic Field Investigation Method to Utilize on the Inhabitation Environment Definition at a River
  • Introduction of Hydraulic Field Investigation Method to Utilize on the Inhabitation Environment Definition at a River
저자명
Lee. Hyun-Seok,Kim. Young-Sung,Lee. Geun-Sang,Seo. Jin-Won,Yang. Jae-Rheen,Kwon. Hyung-Joong
간행물명
한국하천호수학회지= Korean journal of limnology
권/호정보
2008년|41권 4호|pp.547-553 (7 pages)
발행정보
한국하천호수학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

In recent years, attention on the inhabitation environments of animals and plants which coexist with humans is growing more and more, and relevant research is being activated. In habitats of rivers, a lot of factors are interacting, even among them, some elements especially such hydraulic factors as water velocity and water depth, and such geological shapes as gravels, sand and mud are being considered as primary elements. In this study, various field investigations are carried out to determine the relationship between the river habitats of fishes and hydraulic primary elements using high-tech equipments. Furthermore numerical experiments to classify such habitats according to topographical spaces are carried out. In detail, hydraulic field investigations performed in this study can be summarized as topographical survey, discharge measurement, water level fluctuation monitoring and so on. In numerical experiments, the RMA2 model of the commercial program, Surface-Water Modeling System (SMS), which is widely used in conducting a two-dimensional analysis of the flow behavior of a river is utilized. In conclusion, as a result of field investigation, the relationship between water velocity and water depth is obtained. And the relationship between water velocity and water temperature is identified, too. Finally, using above obtained results, the inhabitation environment was classified into Riffle, Glide, Run, Pool, and E.D.Z according to the relationship between water velocity and water depth.