• Title/Summary/Keyword: Imjin River

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The Ichthyofauna and Fish Community in the Lower Course of the Imjin River (임진강 하류역의 어류상과 어류군집)

  • Lee, Wan-Ok;Byeon, Hwa-Kun
    • Korean Journal of Ecology and Environment
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    • v.39 no.1 s.115
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    • pp.32-40
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    • 2006
  • The Ichthyofauna and fish community were studied in the lower course of Imjin River from April 2003 to October 2004. During the survey period 80 species belonging to 23 families were collected. Twenty-five species (31.1%) of them were Korean endemic species. Exotic fishes were Carassius cuvieri, Lepomis macrochirus and Micropterus salmoides, and they complied 1.3% of total catch. The species of Hemibarbus mylodon was identified as natural monument, and acheilognathus signifer, Pseudopungtungia tenuicorpa, Gobiobotia macrocephala and Gobiobotia brevibarba were endangered species. Migration fish were Coilia ectens, Anguilla japonica, Plecoglossus altivelis and Takifugu obscurus. Dominant species were Zacco platypus (St. 1), Microphysogobio yaluensis (St. 2), Hemibarbus labeo (St. 3, 4) and coilia ectens (St. 5). The lower course of Imjin River was more abundance of species, high diversity and richness, and lower dominance index than those of the lower course of Han River.

Flood Runoff Simulation Using Physical Based Distributed Model for Imjin-River Basin (물리적기반의 분포형모형을 활용한 임진강유역 홍수유출모의)

  • Park, Jin-Hyeog;Hur, Young-Teck
    • Journal of Korea Water Resources Association
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    • v.42 no.1
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    • pp.51-60
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    • 2009
  • 2/3 of the Imjin River Basin area is located in North Korea, so it was hard to acquire reliable rainfall and hydrological information. This point is one of the factors that has added to flood damage. In this study, flood runoff for the river basin was simulated using hydrological radar, which is installed in an effort to reduce flood damage in the Imjin River Basin, which habitually suffers from flood damage. The feasibility of the distributed flood model was reviewed for the river basin, which is lacking in hydrological data such as rainfall and recent soil data. Based on the hydrograph, observed value was not consistent partially because of insufficient data, but peak discharge and the overall pattern showed relatively precise runoff results which can be applied in actual work.

Assessment of Spatiotemporal Water Quality Variation Using Multivariate Statistical Techniques: A Case Study of the Imjin River Basin, Korea (다변량 통계기법을 이용한 시·공간적 수질변화의 평가: 임진강유역에 관한 연구)

  • Cho, Yong-Chul;Lee, Su-Woong;Ryu, In-Gu;Yu, Soon-Ju
    • Journal of Korean Society of Environmental Engineers
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    • v.39 no.11
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    • pp.641-649
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    • 2017
  • In the study, the water quality of the Imjin River basin with pollutants of changing characteristics it was determined through statistical analysis, correlation analysis, principle component and factor analysis, and cluster analysis. Among all analyzed data points, the average water quality concentration at the Sincheon 3 site shows high levels of BOD 13.4 mg/L, COD 19.9 mg/L, T-N 11.145 mg/L, T-P 0.336 mg/L, TOC 14.2 mg/L, indicating that Sincheon basin requires intersive water quality management out of the entire drainage basin. The correlational analysis of comprehensive water quality data shows statistically significant correlation between COD, TOC, BOD, T-N water quality factors, as well as finding of high correlation between organic and nutrients. The principal component analysis show that 2 main components being extracted at 81.221% from the measuring station's entire data, while seasonal data show 3 main components being extracted at 96.241%. Factor analysis of the entire data set and the seasonal data identify BOD, COD, T-N, T-P, TOC as the common factors influencing water quality. The spatial and temporal cluster analysis showed 4 groups and 3 groups, respectively, according to seasonal characteristics and land use. By analysing the water quality factors for the Imjin River basins over an 8 year period, with consideration to the spatial and temporal characteristics, this study will become the fundamental analytic data that will help understand the future changes of water quality in the Imjin River basin.

A Study on the Soil Erosion by Landuse in the Imjin River Basin, DMZ of Cental Korea (임진강유역의 토지이용에 따른 지표침식에 관한 연구)

  • Lee, Min-Boo;Kim, Nam-Shin;Jin, Shizhu;Kim, Hang-Deok
    • Journal of the Korean Geographical Society
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    • v.43 no.3
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    • pp.263-275
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    • 2008
  • This Study deals with the comparative analysis on the estimation of surface soil erosion volume between South and North Korea using RUSLE model in Imjin River basin located on DMZ of Central Korea. Comparatively North Korea areas have been more eroded three times as much as South Korea parts. Because of cropland development such as com Held in the hillslope, in North Korea, more surface soil erosion and transportation to the river bed has given rise to frequent flood hazards. It seems that the study can dedicate to mitigation of environmental problems such as soil erosion and flooding in unaccessible Imjin River basin located on DMZ.

The Conprehesion of the River Wetlands Through JangJyoua Wetlands in ImJin Gang (임진강 장좌못을 통하여 본 하천습지의 이해)

  • Moon, Hyun-Sook
    • Journal of the Speleological Society of Korea
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    • no.72
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    • pp.47-52
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    • 2006
  • JangJyoua wetland is the bow lake that was become through the change of river change. It is the river wetlands and the swamps-type III. The water in wetlands is in and out through the Imjin old river channel. The river wetlands has been classified by many scholar. But there are two conditions that JangJyoua is developed on the floodplains and is same the ground water table between JangJyoua and ImjinGang. So, JangJyoua is the swamps-type III.

Application of Rainfall-Runoff Models and Provision of Radar Rainfall Data during Flood in Imjin River Basin (임진강 유역의 홍수기 강우-유출모형 적용 및 레이더강우 자료의 활용방안)

  • Kim Seong-joon;Park Roh-hyuk;Maeng Sung-jin
    • KCID journal
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    • v.5 no.1
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    • pp.47-62
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    • 1998
  • The purpose of this study is to evaluate storm runoff models of Imjin river basin(8,117.5$km^2$) for the provision of radar rainfall situation. Two lumped models, Storage Function Model(SFM) and HEC-1 model which are now in use broadly and prov

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Estimation of river discharge using satellite-derived flow signals and artificial neural network model: application to imjin river (Satellite-derived flow 시그널 및 인공신경망 모형을 활용한 임진강 유역 유출량 산정)

  • Li, Li;Kim, Hyunglok;Jun, Kyungsoo;Choi, Minha
    • Journal of Korea Water Resources Association
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    • v.49 no.7
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    • pp.589-597
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    • 2016
  • In this study, we investigated the use of satellite-derived flow (SDF) signals and a data-based model for the estimation of outflow for the river reach where in situ measurements are either completely unavailable or are difficult to access for hydraulic and hydrology analysis such as the upper basin of Imjin River. It has been demonstrated by many studies that the SDF signals can be used as the river width estimates and the correlation between SDF signals and river width is related to the shape of cross sections. To extract the nonlinear relationship between SDF signals and river outflow, Artificial Neural Network (ANN) model with SDF signals as its inputs were applied for the computation of flow discharge at Imjin Bridge located in Imjin River. 15 pixels were considered to extract SDF signals and Partial Mutual Information (PMI) algorithm was applied to identify the most relevant input variables among 150 candidate SDF signals (including 0~10 day lagged observations). The estimated discharges by ANN model were compared with the measured ones at Imjin Bridge gauging station and correlation coefficients of the training and validation were 0.86 and 0.72, respectively. It was found that if the 1 day previous discharge at Imjin bridge is considered as an input variable for ANN model, the correlation coefficients were improved to 0.90 and 0.83, respectively. Based on the results in this study, SDF signals along with some local measured data can play an useful role in river flow estimation and especially in flood forecasting for data-scarce regions as it can simulate the peak discharge and peak time of flood events with satisfactory accuracy.

Establishment of Hydraulic Model for flow Analysis of the Lower Han River (한강 하류부 흐름해석을 위한 수리학적 모형의 구축)

  • Kim, Sang-Ho;Kim, Won
    • Journal of Korea Water Resources Association
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    • v.35 no.5
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    • pp.485-500
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    • 2002
  • Hydraulic model was developed to analyze the complex flow due to channel structures, tide, and tributaries in the lower Han river and Imjin river. DWOPER-2K model which can automatically process the data transformation in the model was developed as the 1-D hydraulic routing model. Observed data in tidal zone and the recent channel geometry data were collected for hydraulic model. And the flow over the Jamsil and Singok submerged weir was analyzed properly and roughness coefficient was optimized to each regions and each discharges. By the results of verification of the model, the model developed in this study may contribute to improvement of the accuracy of flood forecasting and channel management because this model can efficiently and properly analyze the various kind of flow occurred in the region of the lower Han river and Imjin river.

Analysis of the vegetation effects on the flow in Chopyeong Island of the Imjin River using a HEC-RAS 2D model (HEC-RAS 2D 모형을 이용한 임진강 초평도 식생이 흐름에 미치는 영향 분석)

  • Lee, Du Hana;Rhee, Dong Sop
    • Journal of Korea Water Resources Association
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    • v.56 no.9
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    • pp.575-586
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    • 2023
  • River vegetation has important functions such as providing a habitat for the river ecosystem and physical stability of the river bank. It also has adverse effects such as aggravating flood damages due to the increase in roughness coefficient and drag forces. River vegetation management is very important in finding a balance between flood and ecological management. There are still many uncertainties about the effect of vegetation on rivers. In this study, in order to analyze the effect of vegetated flow, the flow patterns according to the vegetation roughness are analyzed through a two-dimensional unsteady flow model for Chopyeong island of the Imjin River. According to the results of the 2D flow analysis using the HEC-RAS 2D model, the velocity distribution in the bend of the Imjin River was greatly affected by the vegetation roughness of Chopyeong Island. The formation of the main flow outside the bend of Chopyeong Island during flooding is presumed due to the influence of tree and grass on Chopyeong Island. If tree are distributed throughout Chopyeong Island, the velocity outside the bend is expected to be higher. River vegetation causes the effect of raising the water level, and could cause a change in the velocity distribution.

Evaluation of Spatially Disproportionate Rain Gauge Network for the Correction of Mean-Field Bias of Radar Rainfall: A Case Study of Ganghwa Rain Radar (레이더 강우의 편의 보정을 위한 지역적으로 편중된 우량계망의 평가: 강화 강우레이더의 사례 연구)

  • Yoo, Chul-Sang;Yoon, Jung-Soo;Kim, Byoung-Soo;Ha, Eun-Ho
    • Journal of Korea Water Resources Association
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    • v.42 no.6
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    • pp.493-503
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    • 2009
  • Estimation of the mean-field bias of radar rainfall is to determine the difference between the areal means of radar and rain gauge rainfall, where the rain gauge rainfall is assumed to be the truth. To exactly determine this bias, the variance of the difference between two observations must be small enough, thus, enough number of observations is indispensible. So, the problem becomes to determine the number of rain gauges to satisfy the level of variance of the difference between two observations. Especially, this study focuses on the case when the rain gauges are disproportionate spatially. This is the problem for the Ganghwa rain radar for the observation of rainfall within the Imjin river basin and the same problem also occurs when a radar is located in between land and ocean. This study considered the Imjin river basin, and compared two cases when rain gauges are available only within the downstream part, about one third of the whole basin, and over the whole basin. Based on the results derived, the rain gauge density within the downstream part of the Imjin river basin was proposed to secure the same accuracy obtained when the rain gauges are available over the whole Imjin river basin.