• Title/Summary/Keyword: Aggradation

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Landscape Changes during the 20th Century of Ssangho, Gapyeongri wetland, Gunggaeho and Yeomgaeho, Yangyang-gun, Gangwon Province (강원도 양양군 쌍호, 가평리습지, 궁개호, 염개호의 20세기 경관 변화)

  • YOON, Soon-Ock;HWANG, Sangill;PARK, Chung-Sun;JIN, Min-Kyoung
    • Journal of The Geomorphological Association of Korea
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    • v.17 no.4
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    • pp.41-52
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    • 2010
  • Coastal lagoons(Ssangho, Gapyeongri wetland, Gunggaeho and Yeomgaeho) distribute densely around Osan-ri, Yangyang-gun. While Ssangho with the representative lagoon group in the East Coast has maintained the lagoon conditions of water surface since it was formed during the Climax of transgression, the others were formed at the swale areas of sand beach. They vary considerably in area reduction rates and position variations during the 20th century, and the causes examined can be divided into natural, human and other factors. They result in the lagoon aggradation stage by geomorphic development, reclamation due to rapid industrialization and urban development during the 20th century, and lacks of understanding on values of small coastal lagoon or errors in mapping and lags of survey techniques. Therefore, the plans for lagoon restorations should be proceeded by the individual properties of lagoons. The restorations of Ssangho are recommended preferentially and it is desirable to restore to the lagoon conditions of 1920s when the influences of human were minimum.

State-of-the-art of Pier Scour Prediction for Design Application

  • Choi, Gye-Woon;Ahn, Sang-Jin;Kang, Kwan-Won
    • Korean Journal of Hydrosciences
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    • v.2
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    • pp.39-59
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    • 1991
  • Scour at bridge pier is a complicated three-dimensional problem involving interaction of fluld force on movable aid nonuniformily distributed sand grains. Although several analytical solution approaches, experimental research and field investigations for scout at piers have been conducted, no comprehensive and universally acceptable solution is so far available. Even though many methods and equations for predicting scour at piers are available in the literature, hydraulic and/or bridge design engineers are often at a loss over which method or equation is applicable for the specific bridge sites. To provide better understanding about scour phenomena and better predicting of scour at piers, intensive research is conducted through comprehensive review of published literature. Based on the research the state-of-the-art of pier scour prediction for design application is provided as a design guide for practicing engineers in this field. Recommendations for applying aggradation and degradation, contraction scour, and local scour prediction methods or equations are suggested. It is hoped that this paper may provide good information for the prediction of scour at piers.

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Numerical investigation of space effects of serial spur dikes on flow and bed changes by using Nays2D (수치모형을 이용한 수제 간격에 따른 흐름 및 하도변화 연구)

  • Lee, Kyung Su;Jang, Chang-Lae
    • Journal of Korea Water Resources Association
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    • v.49 no.3
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    • pp.241-252
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    • 2016
  • In this study, the characteristics of flow and bed changes with variation of space and length of serial spur dikes were investigated with 2 dimensional numerical simulation. Upstream spur dike was affected by flow and made a role as a single spur dike. As time increased, local scouring was developed around outside of spur dike, and migrated upstream. The aggradation of the bed at the back of spur-dike was made at the initial stage of experiment and numerical modelling. However, the aggradation of the bed was increased in the downstream area. The scour whole around a spur dike upstream was not deep as the Dimensionless spur-dike interval (b) of the dike increased. The depth of scour hole was nearly constant at the dynamic equilibrium state. The dimensionless scour depth ($y_s/H$) increased with L/b. The spur dike downstream had the characteristics of single spur dike as the L/b was larger than 10. However, the spur dike downstream was affected by the dike upstream as the L/b was less than 4, and the bed of the upstream in the spur dike was aggradated and the effects of the serial spur dikes on the bed decreased.

Analysis of Long-Term Riverbed-Level and Flood Stage Variation due to Water Gate Operation of Multi-functional Weirs at Geum River (다기능보의 수문운영에 따른 금강의 장기하상변동 및 홍수위변화 분석)

  • Jeong, Anchul;Jung, Kwansue
    • Journal of Korea Water Resources Association
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    • v.48 no.5
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    • pp.379-391
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    • 2015
  • Multi-functional weirs has been installed in four rivers are hydraulic structures across the river. The structures were divided into movable and fixed weirs. Hence, riverbed-level variation and sediment transport can be varied due to water gate operation. In this study, the long-term riverbed-level variation of Geum river basin due to water gate operation of multi-functional weirs was studied. Result of this study shows that the variation of thalweg elevation was greater than the variation of annual average riverbed elevation due to multi-functional weirs construction and water gate operation. Maximum riverbed degradation of thalweg elevation that occurred was 2.79m and riverbed aggradation was 1.90m. Maximum riverbed degradation of the annual average riverbed elevation that occurred was 2.16m and riverbed aggradation was 1.24m. Analysis result of flood stage by the variation of riverbed-level shows that flood stages were increased in majorities area. The maximum increase in the value of flood stage was 2.23m. For this reason, flood stages can be greater than the freeboard of the levees. Therefore, we should consider the water gate operation of multi-functional weirs when planning and managing sediment in the river. We are expecting to use the result of this study in river planning for river management and selecting the river regime.

Bed Changes downstream the Singok Submerged Weir in the Han River Estuary - from 2009 to 2010 (한강 하구 신곡수중보 하류에서 하상변동 - 2009년부터 2010년까지)

  • Hwang, Seung-Yong;Lee, Samhee
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.38 no.6
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    • pp.819-829
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    • 2018
  • The bed change survey was carried out and its tendency was analyzed at the downstream of the Singok Submerged Weir in the Han River Estuary (HRE). In order to focus on the bed change in the low flow channel, we calculated the mean bed elevation based on the bankfull discharge. Thanks to the amount of bed changes calculated by using the 'averaged bed', we could compare the riverbeds of various periods with consistent criteria. In the HRE, revealed was the bed change cycle between degradation by flood and aggradation by tide at the non-flood season.

A Study on the Wetland Restoration for the prevention of Stream Aggradation (하천 육역화방지를 위한 습지복원방안에 관한 연구)

  • Ahn, Hong-Kyu
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.218-218
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    • 2020
  • 우리나라의 하천은 홍수방어와 토지이용을 목적으로 제방을 설치하고 하도를 직강화화 시켰으며, 저수로와 홍수터를 분리하는 단면의 조성 그리고 하천의 홍수터를 농경지나 공원 및·주차장 등으로 활용하는 등 홍수터를 인위적으로 고착화시켜왔다. 더욱이, 상류의 댐 및 저수지에서 방류량을 조절함으로써 중소규모의 홍수가 줄어드는 등 하천 흐름의 변화를 나타내는 유황이 단순해져 하상변화가 감소되고 건조화됨으로 인하여, 식생침입 등에 따른 하천 수림화가 진행되고 이로 인하여 하천이 습지라고 볼 수 없는 육역화 현상이 심화되고 있는 현실이다. 따라서 자연과 인간이 공존하기 위한 올바른 하천환경 관리를 위하여 해당하천에 대한 육역화의 원인규명 및 대책수립이 필요하다. 본 연구에서는 1986년에 신곡 수중보가 건설되었고 이로인하여 하류의 수리적 환경 등의 여건변화로 사주의 변화가 급격히 진행된 한강의 장항습지를 대상으로 하천 육역화 현황 분석 및 외국의 하천 육역화 복원사례를 통하여 장항습지에서의 복원방안을 제안하였다. 장항습지는 한강하구를 향하여 우안으로 가늘고 길게 형성된 사주로서, 본 연구에서는 종단길이 약 7.5km(신곡수중보~일산대교)를 대상으로 하였으며, 조사구간 내 사주의 폭은 최장 약 500m, 최단 약 60m 정도이다. 장항습지의 경년별 면적비교 결과, 장항습지는 1985년대비 현재 약 11.7배로 확대되었으며, 특히 2016년도에 급격히 증가된 것으로 분석되었다.

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A Study on the formation of river topography and Stream Aggradation (하천의 지형형성과 하도육역화에 관한 연구)

  • Ahn, Hong-Kyu;Kang, Joon-Gu;Lee, Sam-Hee
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.51-51
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    • 2022
  • 최근 하천복원의 패러다임은 자연성 회복이라는 커다란 목표아래 하천연속성 확보 및 지형의 자연성 회복, 유황의 회복으로 하천의 역동성과 생태계건강성을 회복하는 것으로 변화되었다. 과거우리나라의 하천은 홍수방어 및 토지이용을 목적으로 제방을 설치하고 하도를 직강화화 시켰으며, 저수로와 홍수터를 분리하는 하도계획으로 인하여 하천의 홍수터를 농경지나 공원 및· 주차장 등으로 활용하는 등 홍수터를 인위적으로 고착화시켜왔다. 더욱이, 상류의 댐 및 저수지에서 방류량을 조절함으로써 중소규모의 홍수가 줄어드는 등 하천 흐름의 변화를 나타내는 유황이 단순해져 미지형 하상변화가 감소되었다. 뿐만아니라 하상이 건조화됨으로 인하여, 식생침입 등에 따른 하천 수림화가 진행되고 이로 인하여 하천이 습지라고 볼 수 없는 육역화 현상이 심화되고 있는 현실이다. 따라서 자연과 인간이 공존하기 위한 올바른 하천환경 관리를 위하여 수림화 및 육역화 정도 분석 및 해당하천에 대한 육역화의 원인규명, 이에 대한 대책 수립이 요구된다. 본 연구에서는 하천지형의 형성과정, 하천식생의 정착과정, 하도육역화의 정의, 육역화 방지를 위한 국외사례를 분석하며, 한강 장항습지의 사례를 통하여 육역화방지 대책 및 복원방안을 제안하였다

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Simulation of Improvement Method for Narrow Cross-Section in Hyungsan River Using HEC-6 (HEC-6를 이용한 형산강 협착부 개선방안 모의)

  • Kim, Jung-Min;Kim, Young-Do;Lyu, Si-Wan;Lee, Nam-Joo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.953-957
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    • 2008
  • 일반적으로 하천은 오랫동안 장기간의 변화를 겪으며 안정되어 있다. 산사태나 홍수 등 자연적인 변화뿐 아니라 댐이나 교량 등 인위적인 변화에 따라 흐름이나 유사량이 변하게 되며 이런 동적변형상태를 복원하는 과정에서 침식과 퇴적이 반복적으로 이루어져 대규모 하상변동이 이루어지게 된다. 이러한 하천에서 발생하는 대규모의 하상변동에는 일반적으로 1차원 해석이 적용된다. 하천의 일정 하도구간을 고려할 경우 구간의 상류단면으로부터 유입하는 유입토사량과 하류단면에서 유출되는 유출토사량과의 비에 따라 그 구간에는 하상상승(aggradation)및 하상저하(degradation)가 발생하게 되고 이것이 거시적 측면에서 하상변동이라 할 수 있다. 이러한 장기하상변동은 경우에 따라서 이수용도의 수문 혹은 취수구가 노출되거나, 교량의 교각에 국부세굴이 발생되어 붕괴위험이 생기는 등 심각한 문제가 발생할 수가 있다. 본 연구에서는 하상변동 예측 모형 중 신뢰성 및 적용성이 우수한 것으로 인식되고 있는 HEC-6 모형을 형산강수계에 적용하여 4가지 협착부 개선방안에 따른 장기하상변동에의 영향을 검토하고자 하였다. 하천기본계획상의 횡단면도와 유사량 실측값을 이용하여 유사모의 결과를 검증하고 2020년까지의 모형의 계산 값을 이용하여 4가지 대안에 따른 모의 결과와 원안의 결과와 비교 및 분석하였다. 모의한 결과 형산강의 하상변동치가 크지 않은 것은 형산강의 하상이 어느 정도 안정되어 있어 장기적인 하상변동이 크지 않기 때문이다. 따라서 협착부 개선에 따른 대안 1, 2, 3, 4의 하상이 크게 변하지 않음을 보였다. 지형 변화에 따른 장기하상변동에의 영향이 크지 않은 것을 확인할 수 있다.

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Three-dimensional Numerical Analysis of Dam-break Waves on a Fixed and Movable Bed (고정상 및 이동상 수로에서 댐 붕괴파의 3차원 수치해석)

  • Kim, Dae Geun;Hwang, Gun
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.31 no.4B
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    • pp.333-341
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    • 2011
  • This study analyzed the propagation of dam-break waves in an area directly downstream of a dam by using 3D numerical modeling with RANS as the governing equation. In this area, the flow of the waves has three dimensional characteristics due to the instantaneous dam break. In particular, the dam-break flows are characterized by a highly unsteady and discontinuous flow, a mixture of the sharp flood waves and their reflected waves, a mixture of subcritical and supercritical flow, and propagation in a dry and movable bed. 2D numerical modeling, in which the governing equation is the shallow water equation, was regarded as restricted in terms of dealing with the sharp fluctuation of the water level at the dam-breaking point and water level vibration at the reservoir. However, in this 30 analysis of flood wave propagation due to partial dam breaking and dam-break in channels with $90^{\circ}$ bend, those phenomena were properly simulated. In addition, the flood wave and bed profiles in a movable bed with a flat/upward/downward bed step, which represents channel aggradation or degradation, was also successfully simulated.

Topographical change of sandbar and vegetation settlement in Jang-Hang wetlands for Han River Estuary Wetlands Restoration (한강 하구 습지복원을 위한 장항습지의 사주 지형변화 및 식생정착)

  • Ahn, Hong-Kyu;Kim, Si-Nae;Chung, Sang-Joon;Lee, Dong-Jun;Lee, Sam-Hee
    • Journal of Wetlands Research
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    • v.14 no.2
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    • pp.277-288
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    • 2012
  • Estuary is unique habitat ground under substantial changes of water quality, river side, bed material, and micro topography. Construction of SinGok underwater weir with excessive dredging for downstream of weir has changed hydraulic conditions of Han River. This study investigates spatial changes of estuary and expansion process of vegetation on sandbar for JangHang estuary in Han River through analysis of physical and ecological characteristics. As a result of investigation, we found that area of sandbar in JangHang estuary is expanded six times compared between 1985 and 2006, and area of Phragmites australis is gradually decreased while area of Salix subfragilis Anderson. is increased. Also the analysis result of soil layer shows that the Jang-Hang wetlands are created by effect from river, and woody plants are settled from middle part of wetlands, then spread to upper and lower part of wetlands.