• Title/Summary/Keyword: Stream Maintenance Water

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The Evaluation of River Naturalness Improvement Using AHP (계층분석과정기법(AHP)을 이용한 하천자연도평가법 개선)

  • Cho, Hong-Je;Yoon, Jong-Chun
    • Journal of Wetlands Research
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    • v.11 no.3
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    • pp.21-35
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    • 2009
  • To propose a sound direction for river rehabilitation plan, the naturalness of the river must be evaluated. In this study, the conventional methods for evaluating the naturalness of rivers proposed by Park, et al. has been improved to estimate the weights for each items subject to assessment and applied adequate Analytic Hierarchy Process (AHP). To estimate the weights, survey was conducted on a group of 83 experts in Civil and Environmental Engineering with a customized questionnaire. The results of the survey were generalized and used to estimate the weights of each items. Among the 14 evaluation items that have been generated as a result of the estimation, a total of 7 weight values such as water quality, variations in water flow, vegetation around minor bed, curve of waterway, vegetation around flood plain, variety in minor bed width, and diversity of stream bed materials appeared to be high. The improved method for evaluating the naturalness of rivers was applied to Hoe-ya River, where the method has successfully discriminated the sections having low degree of naturalness. The proposed assessment method can be employed as a criterion to determine the business zones in the river environment maintenance projects.

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Extension Techniques of Partially Recorded Stream-flow to Continuous Daily Data (부분관측된 유량자료의 연속 일유량자료로 확장법)

  • Baek, Kyong-Oh;Yim, Dong-Hee
    • Proceedings of the Korea Water Resources Association Conference
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    • 2011.05a
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    • pp.397-397
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    • 2011
  • 2004년부터 4대강 물환경연구소는 수질오염총량관리제의 원활한 추진을 위해 총량관리단위유역 말단부에서 8일 간격으로 청천(晴天)시를 중심으로 유량과 수질을 동시에 측정하기 시작하였다. 그 결과 연중 하천유량과 수질의 연동 여부 및 변동 추이를 확인하는 것이 가능하게 되었다. 그러나 8일 간격으로 생산되는 유량은 지침의 정의와 맞물려 기준유량의 산정에 또 다른 어려움을 주고 있다. '한강수계 오염총량관리계획수립 지침'에 따르면 '기준유량은 과거 10년간 평균 저수량으로 한다'고 명시되어 있다. 여기서 저수량이란 유량의 크기를 누가일수로서 표시하여 1년을 통하여 275일은 이보다 더 작지 않은 유량으로 정의된다. 따라서 정확한 저수량을 산정하기 위해서는 1년 365개 매일의 유량자료가 필요하다. 하지만 8일 간격으로 유량을 측정하게 되면 1년 365개 대신 최대 45 여개의 일 유량자료만 취득 가능하므로 유황분석에 어려움이 발생할 수밖에 없다. 본 연구에서는 수질오염총량관리단위유역의 말단부에서 8일 간격으로 계측된 유량자료가 있을 때 이를 연속적인 일유량으로 확대할 수 있는 방법론 중 하나를 소개한다. 미 지질조사국(USGS)에서 주로 사용되는 이 방법은 A지점(부분계측이 이루어지는 지점)의 결측치를 동일 유역 혹은 수문학적으로 유사한 유역의 B지점(연속계측이 이루어지는 지점)의 자료를 이용하여 보완하는 방식이다. 이를 위해 먼저 부분계측이 이루어진 날과 같은 날짜의 유량자료를 연속계측자료에서 추출한 다음 두 자료(A지점에서의 모든 유량과 B지점에서의 추출된 유량)의 상관성을 비교해 본다. 두 자료간에 상관도가 높다면 이를 잘 표현하는 방정식을 통해 A지점의 결측치를 내 외삽한다. 여기서 두 자료간 상관도를 잘 묘사할 수 있는 방법으로 본 연구에서는 최소제곱법(Least Square Estimator, LSE)과 분산확장법(Maintenance of Variance Extension, MOVE)을 비교,분석해 보았다. 한강수계 수질오염총량관리단위유역 중 동일지점에 8일 간격 부분계측 유량자료와 일 연속자료가 동시에 존재하는 곳이 6지점이 있었으며 이 자료들을 바탕으로 LSE와 MOVE의 정확도를 검증해 본 결과 MOVE가 일 연속유량 확장에 더 나은 결과를 보였다.

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Levee Stability Assessment depending on Level of Inland and Riverside land in Flow State (흐름상태와 제내지 및 제외지의 표고변화에 따른 제방의 파이핑안정성 평가)

  • Kang, Taeun;An, Hyunuk;Kim, Yeonsu;Jung, Kwansue
    • Journal of Korea Water Resources Association
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    • v.48 no.4
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    • pp.269-279
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    • 2015
  • Nowadays, the world has suffered by natural disaster of climate change due to global warming. Korea has also faced with similar situation. To prevent these natural disaster, Four Major River Management has conducted. One of conducted content in Four Major River Management is the levee maintenance which classified into fill-up the inland, levee of reinforcement and so on. These maintenances may make the characteristics of groundwater flow change and affect to the levee safety (piping phenomenon). Therefore, analysis on groundwater fluctuation according to level of riverside and inland should be required. This study focus on levee of Hoe stream, which is connected to Nakdong river, and piping safety factor in the levee analyzed by using pore water pressure. Besides, groundwater fluctuation, which is depended on level of riverside and inland, is simulated by using the SEEP/W (2D ground water model). This simulation considered steady flow and unsteady flow. As a result, piping safety factor increased due to rising the inland level. Piping safety factor of riverside was effected by only river water level. Therefore, external levee factor considering inland level raising and suitable control of river water level is need to increase piping safety factor.

Study on the Environmental Quality Assessment of River Revetment Technique by Life-Cycle-Assessment (전과정 평가에 의한 하천 호안 공법의 환경성 평가에 관한 연구)

  • Kim, Kook-Il;Ahn, Won-Sik
    • Journal of Korea Water Resources Association
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    • v.40 no.6 s.179
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    • pp.485-494
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    • 2007
  • This study was performed to evaluate the environmental qualities of the revetment construction methods and the river-facility materials using Life-Cycle-Assessment(LCA) for the nature-friendly design of close-to-nature river, The investigation results on the environmental qualities of energy and materials used to the close-to-nature river plan showed that the environmental impacts per unit weight increased in the order of gasoline > diesel > cement > wood. The environmental impacts per unit area of revetment construction method exhibited that the environmental loadings increased in the order of gabion > revetment > cribwork. In addition, it was observed that the environmental impact was reduced by improving the materials of zinc-galvanized wire. The model basin investigated in this study was the $0.3km^2$ area of river improvement works in Kyung stream, which is a tributary to the Seomjin river and the second regional stream. The research was conducted based on the 30years by life expectancy of artificial facilities. For the comparisons of revetment techniques with respect to the environmental qualities, the method resulted in the highest environmental loadings. The method using ready-mixed concrete ranked second in the environmental loadings of revetment techniques. The present results of this study are expected to play a beneficial role in the nature-friendly design of close-to-nature river by quantitatively identifying the environmental quality of total procedures (i.e., combination of techniques, selection of river-facility materials, maintenance of river-facility) applied to close-to-nature river plan.

The Change of Water Balance due to Urbanization in Gwangju River Basin (도시화에 수반되는 광주천 유역의 물수지 변화)

  • Yang, Hea-Kun;Kim, Jong-Il
    • Journal of the Korean association of regional geographers
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    • v.10 no.1
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    • pp.192-205
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    • 2004
  • The purpose of this paper is to analyze the factors, which have influence upon changes of hydrological environment in time series, and evaluate water balance changes caused by urbanization. The results of the analysis and evaluation are as follow: At first, the river runoff at Gwangju River Basin keep base flow of river by storage capacity recharged in June to September and show peak in August and minimum flow in May. The groundwater recharge by urbanization accounted for 46.1% of rainfall at early-urban stage, and decreased to 36.5% and 29.9% in the 1960's and the 1990's respectively, and is likely to decrease to 27.8% in the 2010's. On the other hand, the overland flow was 9.6% of rainfall in the 1960's and 16.2% in the 1990's, and is likely to increase to 18.3% in the 2010's. When such a phenomenon is kept continuously, distorted water balance shall be worsened to create not only frequent occurrence of urban flood but also decreased base flow of Gwangju River to accelerate dry stream phenomenon. The time series study on urban redevelopment and environment maintenance describes distorted phenomenon to supply the information for nature-friendly land use, and examines relations between human activities and natural environment.

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A Study on the Installation of Groyne using Critical Movement Velocity and Limiting Tractive Force (이동한계유속과 한계소류력을 활용한 수제 설치에 관한 연구)

  • Kim, Yeong Sik;Park, Shang Ho;An, Ik Tae;Choo, Yeon Moon
    • Journal of Wetlands Research
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    • v.22 no.3
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    • pp.194-199
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    • 2020
  • Unlike in the past, the world is facing water shortages due to climate change and difficulties in simultaneously managing the risks of flooding. The Four Major Rivers project was carried out with the aim of realizing a powerful nation of water by managing water resources and fostering the water industry, and the construction period was relatively short compared to the unprecedented scale. Therefore, the prediction and analysis of how the river environment changes after the Four Major Rivers Project is insufficient. Currently, part of the construction section of the Four Major Rivers Project is caused by repeated erosion and sedimentation due to the effects of sandification caused by large dredging and flood-time reservoirs, and the head erosion of the tributaries occurs. In order to solve these problems, the riverbed maintenance work was installed, but it resulted in erosion of both sides of the river and the development of new approaches and techniques to keep the river bed stable, such as erosion and excessive sedimentation, is required. The water agent plays a role of securing a certain depth of water for the main stream by concentrating the flow so much in the center and preventing levee erosion by controlling the flow direction and flow velocity. In addition, Groyne products provide various ecological environments by forming a natural form of riverbeds by inducing local erosion and deposition in addition to the protection functions of the river bank and embankment. Therefore, after reviewing the method of determining the shape of the Groyne structure currently in use by utilizing the mobile limit flow rate and marginal reflux force, a new Critical Movement Velocity(${\bar{U}}_d$) and a new resistance coefficient formula considering the mathematical factors applicable to the actual domestic stream were developed and the measures applicable to Groyne installation were proposed.

Numerical Analysis of Heat Transfer and Fuel Conversion for MCFC Preconverter (MCFC 프리컨버터 촉매의 열전도특성과 연료전환율 해석)

  • Byun, Do-Hyun;Sohn, Chang-Hyun
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.36 no.4
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    • pp.425-430
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    • 2012
  • In this study, a preconverter of an MCFC for an emergency electric power supplier is numerically simulated to increase the hydrogen production from natural gas (methane). A commercial code is used to simulate a porous catalyst with a user subroutine to model three dominant chemical reactions-steam reforming, water-gas shift, and direct steam reforming. To achieve a fuel conversion rate of 10% in the preconverter, the required external heat flux is supplied from the outer wall of the preconverter. The calculated results show that the temperature distribution and chemical reaction are extremely nonuniform near the wall of the preconverter. These phenomena can be explained by the low heat conductivity of the porous catalyst and the endothermic reforming reaction. The calculated results indicate that the use of a compact-size preconverter makes the chemical reaction more uniform and provides many advantages for catalyst maintenance.

Study on Environmental Changes of River in the Suburban Area and Transition of Relations between Residents and River

  • Hiroyuki Kaga;Kumi Kawano;Yasuhiko Shimomura;Noboru Masuda
    • Journal of the Korean Institute of Landscape Architecture International Edition
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    • no.2
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    • pp.185-191
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    • 2004
  • This study dealt with the Kogi River, located in Kaizuka City, Osaka, which has experienced different improvements from the upper through the lower regions, aimed at revealing temporal relations between residents and the river, as well as probing future problems and directions regarding the river in the suburban area, by conducting a survey of local residents. The result showed that, in the upper region where nature remains in its natural state and the good water quality has been maintained, the relations between the residents and the river continued until around 1965; meanwhile in the middle region the relations have been disappearing since about 1955, and in the lower region where the stream has been repeatedly rehabilitated since 1955, there are fewer involvements of the people with the river. It also revealed that the weaker the relations between people and the river became, the larger the number of residents, even in the upper region, who became concerned over the deteriorating river environment after about 1975, and that in the middle and lower areas, about a decade earlier than in the upper area, the number of those who were aware of the environmental deterioration began to increase. Consequently, with an eye to resuming the relations between people and the river in an suburban area, their future challenges would be the space improvements depending on the environmental characteristics of the area; for example, the recovery of grassy banks for the purpose of protection in the lower region; the preservation and maintenance of many waterside woods as well as the creation of open spaces utilizing the river banks in the middle area; and throughout the whole region, the establishment of a system in which the relations between man and the river can be passed down to future generations, by utilizing the local human resources including those who know the former river landscapes or about the playing in and around the river.

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The Prediction and Analysis of Bed Changes Characteristics in the Seomjin River Downstream (섬진강 하류의 하상변동 특성 분석 및 예측)

  • Ceon, Ir-Kweon;Kim, Min-Hwan
    • Journal of the Korean Society of Hazard Mitigation
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    • v.9 no.1
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    • pp.115-121
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    • 2009
  • It is to use effectively for stream channel and watershed management as the prediction and the analysis of bed changes characteristics in the Seomjin river downstream. The necessary data (section, bed composition material, pivot point water elevation, coefficient of roughness) with regard to analysis of the bed changes characteristics were based upon the survey data and analysis results in the Seomjin river maintenance basic plan. The prediction of bed changes was also completed with HEC-6 model. The study results were summarized as follows: The main factor of bed changes in the Seomjin river downstream can be decided by extreme extraction of bed aggregate rather than the change of hydrological data. According to the analysis of bed stability based on the relation between friction velocity and representative grain size, and the relation between dimensionless tractive force and representative grain size, the Seomjin river downstream appears to be increased overall. The bed composition material in the stream channel of the Seomjin river of 2003 year shows higher composition rate of gravel and lower composition rate of sand as compared to those of 1989 year. According to result that the prediction of bed changes, it is estimated that the bed will be risen approximately 1.5 m to the place up to 9 km from the estuary, have been repetitively risen and fallen up to 1 m to the place between $9{\sim}21\;km$ section, and fallen about 0.5m to the place between $22{\sim}25\;km$ section. As a result, the bed of the Seomjin river downstream can be decided to be risen gradually. However, since the prediction of this study is based on the assumption that there will be no forced aggregate picking, the bed changes can be much greater than expected when there is a massive aggregate picking as it had happened before.

Stable Channel Analysis and Design for the Abandoned Channel Restoration Site of Cheongmi Stream using Regime Theory (평형하상 이론을 이용한 청미천 구하도 복원 대상구간의 안정하도 평가 및 설계)

  • Ji, Un;Julien, Pierre Y.;Kang, Joon Gu;Yeo, Hong Koo
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.30 no.3B
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    • pp.305-313
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    • 2010
  • River restoration or rehabilitation should be conducted in a way to maximize the channel stability with natural river configuration close to the equilibrium condition considering divers aspects of fluvial hydraulics, erosion and sedimentation, fluvial geomorphology, and ecological environment and to minimize the maintenance work. Therefore, the channel stability evaluation for present condition based on the equilibrium channel concept should be preceded for the river restoration project. Methods for equilibrium channel theory have generally been developed following either analytical regime theory or empirical regime theory. The main purpose of this paper is to evaluate the stability of present channel condition for the section of abandoned channel restoration in Cheongmi Stream using the Stable channel Analytical Model (SAM) and equilibrium hydraulic geometry equations. The results of analytical and empirical regime theories should provide fundamental and essential information to design the stable channel geometry. As a calculation result of Copeland's method for the study reach, the equilibrium channel has a narrower channel width, deeper water depth, and more gentle slope than the present channel geometry. As results of equilibrium hydraulic geometry equations, predicted equilibrium widths are less than the channel width in the field. It is represented that the current bed slope must be gentle to reach the equilibrium condition according to the results of Julien and Wargadalam method.