• Title/Summary/Keyword: 모래톱

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Geomorphological significance and role of the sand bars of major river valleys in the South Korea - case study on the Nakdong river valleys - (한국 하천 모래톱의 지형학적 의미와 효능 - 낙동강 하곡을 사례로 -)

  • OH, Kyung-Seob;YANG, Jae-Hyuk;CHO, Heon
    • Journal of The Geomorphological Association of Korea
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    • v.18 no.2
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    • pp.1-14
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    • 2011
  • Remarkable development of sand bars is an important characteristic of fluviatile landform of Korea. Their development owes, in one part, to the supply of abundant sandy materials to river valley floor, originated from the weathering of essentially granitic rocks, distributed almost all over the country. It owes, in other part, to river valley disposition presenting many angular sinuosity guided by fracture grid, impeding regular migration of sandy materials along valley floor. Besides, high amplitude of river discharge fluctuation of the country plays is proved to be favorable hydrological factor for the development of the sand bars. The sand bars play important roles in favor of river hydro-ecological environment. They mitigate the amplitude of discharge fluctuation regime. In flood spell, sand grains in the main channel migrate so as to broden wet section. At the spell of low water level, they newly accumulate as to impede rapid stream discharge. Especially high quantity of reserved water in porous space of sand bar is preciously available both for human livelihood and for ecological environment.

Spatial Distribution and Successional Changes of Riparian Vegetation on Sandbars Exposed after Watergate-Opening of Weirs in the Geumgang River, South Korea (보 개방 후 노출된 금강 모래톱에서 하천 식생의 공간 분포와 천이)

  • Lee, Cheolho;Kim, Hwirae;Cho, Kang-Hyun
    • Ecology and Resilient Infrastructure
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    • v.9 no.3
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    • pp.194-205
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    • 2022
  • Sandbars formed by sediment transportation and sedimentation are some of the most important habitats for specific wildlife and they provide an aesthetic landscape in streams. The purpose of this study was to understand the successional process of the colonization and development of early vegetation over time on sandbars exposed by the opening of a gate at a downstream weir. We selected the following four study sites in the Geumgang River, South Korea: three weir-upstream sites with different gate-opening times and a control site that was not affected by weir operation. Changes in the structural characteristics and spatial distribution of the riparian vegetation on the sandbars exposed after opening the gate at the weir were surveyed according to the different exposure periods of the sandbars at the study sites. The newly formed sandbars accounted for more than 33% of the area of the existing floodplain in the three weir-upstream sites of the Geumgang River after opening the gate at the weir. Nine main plant communities were distributed on the exposed sandbars. These communities were classified as annual mesophytic, perennial hydrophytic, perennial hygrophytic, subtree, and tree vegetation based on their species traits. As the duration of exposure of the sandbar increased, the area of the bare sandbar and the annual herbaceous and perennial hydrophytic communities decreased, and the areas occupied by perennial hygrophytic, subtree, and tree communities increased. Changes in vegetation on the sandbar were classified into three types of succession according to the condition of the aquatic habitat before the gate-opening and the degree of physical disturbance caused by the water flow after the gate-opening. The types of succession were: 1) succession starting from hydrophytes in the lentic aquatic zone, 2) succession starting from annual herbaceous hygrophytes in the lotic aquatic zone, and 3) willow-dominated succession in the disturbed channel side. Our results suggested that the dynamics of successional changes in vegetation should be considered during weir operation to ecologically manage the habitats and landscape of the fluvial landforms, including sandbars in streams.

Vegetation Recruitment and Restoration of a Gravel Bar in Tama River (다마천(多摩川)자갈사주의 식생이입 및 복원 과정)

  • Kim, Jin-Hong
    • Proceedings of the Korea Water Resources Association Conference
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    • 2011.05a
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    • pp.196-196
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    • 2011
  • 본 연구에서는 일본 다마천 자갈사주의 식생 이입 과정을 조사하고, 과도한 식생 이입에 영향을 미치는 하상토의 특성과 수리적 특성을 분석하여 자갈사주의 복원을 위한 방안에 관하여 조사하였다. 다마천 자갈사주는 넓게 분포하였던 자갈하천(white river)에 버드나무 등의 식생이 과다하게 성장하여(green river), 이를 억제하기 위한 대책을 수립하여 시행하였다. 또한 이곳에 서식하는 고유종(야생 국화)를 복원하기 위한 연구도 진행되었다. 다마천 자갈사주 식생번무의 원인으로, 자갈과 모래 채취, 하천 개수, 상류의 댐과 보의 축조를 들 수 있으며, 자갈사주를 복원하기 위한 종합적인 연구계획이 수립되어 사업이 시행되었다. 복원 대책으로 홍수터를 파고 모래톱 복원, 상류로부터 자갈과 모래 공급, 저수로 확장, 과다 성장한 버드나무나 아카시아 벌목, 표토 제거를 계획하였으며 이를 시행하였다. 모래톱은 성긴 조약돌로 포설하였으며, 다양한 높이로 조성하여 침수 빈도를 다양하게 변화시켰다. 가장 높은 모래톱은 5년 빈도로 하였다. 자갈사주의 복원 및 관리를 위한 모니터링 그룹도 발족하여 현재 자갈사주의 복원 모니터링이 진행 중이며, 이를 바탕으로 체계적이고 계획적인 복원 사업이 진행되고 있다.

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Role of Sand Shoal in the Intertidal Flat Sedimentation, Gomso Bay, Southwestern Korea (서해 곰소만 조간대 퇴적작용에서 모래톱의 역할)

  • Lee, In-Tae;Chun, Seung Soo
    • Journal of the Korean earth science society
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    • v.22 no.2
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    • pp.120-129
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    • 2001
  • A sand shoal (1300 m long and 400 m wide) with an orientation of north-south is formed on the lower tidal flat of Gomso Bay, southwestern coast of Korea. Surface bedforms, sedimentary structures, sedimentation rate, grain size distribution and can-corer sediments have been measured and analysed along the sand shoal proper zone B and its offshore zone A and onshore zone C during the period of 14 months. These three zones can be differentiated based on sedimentological characteristics: A zone - fine sand (3${\varphi}$ mean), linguoid-type ripples, 70 mm/month in sedimentation rate and no bioturbation, B zone - medium sand (2.5${\varphi}$ mean), dunes (4${\sim}$5 m in wavelength), 30 mm/month in sedimentation rate and no bioturbation, and C zone - coarse silt (5${\varphi}$ mean), sinuous-type ripples, 10 mm/month in sedimentation rate and well-developed bioturbation. These characteristics indicate that the zone C represents a relatively low-energy regime environment whereas the zone A corresponds to a relatively high-energy environment. The zone B would play an important role for a barrier to dissipate the approaching wave energy, resulting in maintaining of low-energy conditions in the inner part of Gomso-Bay intertidal flat behind.

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Evaluation of Habitat Diversity Changes by Weir Operation of the Sejongbo Weir in Geum River using High-resolution Aerial Photographs (항공사진을 이용한 금강 세종보 수문개방에 따른 서식처 다양도 변화 분석)

  • Ock, Giyoung;Choi, Mikyoung;Kim, Jeong-cheol;Park, Hyung-Geun;Han, Ji Hyun
    • Ecology and Resilient Infrastructure
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    • v.7 no.4
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    • pp.366-373
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    • 2020
  • This study investigated habitat diversity changes by conducting weir operations at the Sejongbo site in the Geum River basin. High-resolution aerial photographs taken before and after the weir-opening operation were used for habitat analyses. We classified water and bar areas into 17 types, such as lotic habitats, including riffles, runs, and glides, and lentic habitats, including reservoirs, pools, bar-head backwaters, and bar ponds. Then, we estimated each habitat area quantitatively, calculated a habitat diversity index, and established a habitat diversity map. Our results indicated that after the weir-opening operation, lotic habitats and new types of shallow lentic habitats increased in the water area. In addition, for the bar area, bare lands without cultivation increased distinctively. Finally, we observed that the habitat diversity index drastically increased after the weir-opening operation, which could provide a relatively simple channel of diverse habitats.

An Analysis of Hydrological and Ecological Characteristics of River Wetlands -Case Study of Wangjin District in Geumgang River- (하천습지의 수문생태적 특성 분석 -금강 왕진지구를 사례로-)

  • SeungWon Hong;MiOk Park;BonHak Koo
    • Journal of Wetlands Research
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    • v.25 no.4
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    • pp.315-325
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    • 2023
  • This study analyzed the disturbance process of river wetlands based on modern and contemporary maps and aerial photographs, and analyzed land cover and NDVI changes in the hydro-ecological impact zone around the Wangjin District. A stable sandbar was formed near Wangjinnaru and was naturally connected to the agricultural land within inland, but after the sandbar and river wetland were destroyed due to heavy floods, embankment construction, land readjustment, and comprehensive river management, artificial replaced wetlands and ecological parks were created, and sandbars in the form of river island were restored again. The change in land cover in the hydro-ecological impact zone showed that rice paddies and fields in agricultural areas decreased from 36.3% in 2013 to 22.9% in 2022, with the largest change in area to 814,476m2. It was confirmed that the land cover was undergoing vegetation over time. Since the vegetation condition is good, a healthy food chain is formed in the waterfront ecosystem, which can be expected to be biodiversity-positive. Summarizing seasonal changes in the vegetation index, the overall change in the vegetation index was the largest in spring (March), followed by summer (June), and the change in autumn (September) was the smallest except for water. By land use, the overall vegetation index (NDVI) increased, including 39.1% improvement in alternative wetlands, 38.2% improvement in load, 44.3% improvement in ecological parks, 35.6% improvement in agricultural areas, and -8.1% decrease in water.

Development of a Method for Tracking Sandbar Formation by Weir-Gate Opening Using Multispectral Satellite Imagery in the Geumgang River, South Korea (금강에서 다분광 위성영상을 이용한 보 운영에 따른 모래톱 형성 추적 방법의 개발)

  • Cheolho Lee;Kang-Hyun Cho
    • Ecology and Resilient Infrastructure
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    • v.10 no.4
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    • pp.135-142
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    • 2023
  • A various technology of remote sensing and image analysis are applied to study landscape changes and their influencing factors in stream corridors. We developed a method to detect landscape changes over time by calculating the optical index using multispectral images taken from satellites at various time points, calculating the threshold to delineate the boundaries of water bodies, and creating binarized maps into land and water areas. This method was applied to the upstream reach of the weirs in the Geumgang River to track changes in the sandbar formed by the opening of the weir gate. First, we collected multispectral images with a resolution of 10 m × 10 m taken from the Sentinel-2 satellite at various times before and after the opening of the dam in the Geumgang River. The normalized difference water index (NDWI) was calculated using the green light and near-infrared bands from the collected images. The Otsu's threshold of NDWI calculated to delineate the boundary of the water body ranged from -0.0573 to 0.1367. The boundary of the water area determined by remote sensing matched the boundary in the actual image. A map binarized into water and land areas was created using NDWI and the Otsu's threshold. According to these results of the developed method, it was estimated that a total of 379.7 ha of new sandbar was formed by opening the three weir floodgates from 2017 to 2021 in the longitudinal range from Baekje Weir to Daecheong Dam on the Geumgang River. The landscape detection method developed in this study is evaluated as a useful method that can obtain objective results with few resources over a wide spatial and temporal range.