• Title/Summary/Keyword: Yeongsan River Basin

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Decolorization of Acid Orange II from Aqueous Solutions using Loess (황토를 이용한 Acid Orange II의 색도제거)

  • Park, Jae Hong
    • Journal of Korean Society on Water Environment
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    • v.27 no.2
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    • pp.141-146
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    • 2011
  • Loess, a natural clay, was evaluated as an adsorbent for the decolorization of Acid Orange II, an azo and reactive dye, from aqueous solution. Adsorption studies were performed at $30^{\circ}C$ and the effect of reaction time, loess dosage, initial concentration, loess particle size, pH, agitation rate were investigated to determine the optimum operation conditions. The removal efficiencies of color were measured to evaluate the effectiveness of loess. From this study, it was found that optimal reaction time was 10 min. Color removal efficiencies of Acid Orange II were increased as higher loess dosage, initial concentration and agitation rate. However, color removal efficiencies decreased when pH is high and loess particle becomes large. Adsorption of Acid Orange II fitted to the pseudo-second-order rate kinetics more than first-order rate kinetics. Langmuir and Freundlich adsorption isotherm constants and correlation coefficients were calculated and compared. It was concluded that the adsorption data of Acid Orange II onto loess fitted to the Freundlich model more than Langmuir model.

Improvement Plan for the Prevention and Biosecurity of Animal Disease (가축전염병 예방 및 방역을 위한 개선방안)

  • Park, Jae Hong
    • Journal of Korean Society on Water Environment
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    • v.27 no.3
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    • pp.371-376
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    • 2011
  • If animal disease, i.e., livestock foot-and-mouth disease, avian influenza, brings out, animals have to be disposed to prevent the virus spreading. Mainly, animals have been disposed by carcass disposal. However, If not done properly, carcass disposal can lead to environmental problems, i.e., soil and ground water pollution, etc. Therefore, various disposal methods, i.e., rendering, cremation, etc., have to be considered with burial. Also, various supplement policies are needed to prevent the animal disease. The purpose of this study was to find effective solutions for the prevention and biosecurity of animal disease.

Alternatives Development for Basin-wide Flood Mitigation Planning: A Case Study of Yeongsan River Basin (유역치수계획을 위한 대안수립: 영산강 유역의 사례연구)

  • Yi, Choong-Sung;Shim, Myung-Pil;Lee, Sang-Won
    • Journal of Korea Water Resources Association
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    • v.43 no.6
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    • pp.507-516
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    • 2010
  • The purpose of this study is to propose the alternative development method by means of determining the optimal project size from the economic viewpoint, improving the existing method depending on engineering aspects. To this end, this study defined the flood mitigation projects as the production activities carried out by inputs and outputs, and proposed the alternative development method on the basis of optimizing input and output combinations. This paper, as the case study of the proposed method, developed alternatives for the flood mitigation planning of Youngsan River Basin by determining the optimal project scale. As the result of determining optimal project size, the net benefit of the optimal alternative tended to be dependent on the net benefits of the large individual proposals. Due to such problem, the effect of relatively small individual proposals are underestimated and possibly be excluded from the optimal alternative, which may result in exclusion of the potential damaged regions protected by them from the flood mitigation project. Thus for the selective flood protection by region, individual proposals need to be categorized into the global measures and local measures according to the flood protection area.

A Study on the Seasonal Pre-reserved Planning of Water Resources in Korea (수자원의 계절별 적기확보방안에 관한 연구)

  • Heo, Jun-Haeng;Song, Jae-U;Lee, Gil-Chun
    • Water for future
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    • v.16 no.2
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    • pp.111-122
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    • 1983
  • The water demand has been rapidly increased by the growth of population, industrialization, unbanization, water pollution and so on. This study carried out the seasonal pre-reserved planning for the five zones, comparing the water demand with the available water resources up to the goal year, 2001. The results of this study are as follows; 1) It is principle that the monthly water demand is supplied by the surface and ground water as the increasing tendency of it, and the deficit of water is supplemented by the water supplying capacity of dam. And water demand should be completely reserved before supplying the deficit of water. 2) The monthly and seasonal maximum deficit of water demand take place in June and summer. 3) The periods when the deficit of water demand exceeds the water supplying capacity of dam are 1984-1990, 1994-2001 in zone III. 4) To reserve the deficit of water demand in zone III, we would like to pre-construct Masan-Keumbo estuary barrage from 2001 to 1991 in Seomjin river basin, the deficit of water demand is supplied by the diversion of water from Yeongsan river basin with the developments of the ground water and small reservoirs until 1986.

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Assessment of water supply stability in Yeongsan river basin by water transfer control from Seomjin river basin coupling SWAT and MODSIM (SWAT-MODSIM 모형을 이용한 섬진강 도수유량 변화에 따른 영산강 유역의 용수공급 안정성 평가)

  • Kim, Sehoon;Lee, Jiwan;Kim, Yongwon;Kim, Seongjoon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.41-41
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    • 2020
  • 국토해양부의 수자원장기종합계획보고서(2011)에 따르면 영산강 유역(3,371.4 ㎢)의 경우, 연평균 이용 가능한 수자원 총량이 우리나라의 3.9%으로 약 30억㎥이 나타나고 있다. 이는 우리나라 내륙 5대 권역별 중 가장 적은 수자원을 보유하고 있으며, 섬진강 유역(4,896.5 ㎢)으로부터 용수를 공급받고 있다. 이러한 물 부족은 이상가뭄의 발생 시 제한급수와 수질오염의 원인이 되고 있다. 이에 본 연구에서는 유역 수문 모형인 SWAT과 유역간 물공급 및 분배 모형인 MODSIM을 이용하여 섬진강 유역(4,896.5 ㎢)의 도수에 따른 영산강 유역(3,371.4 ㎢)의 물 공급 능력 평가를 수행하였다. 먼저 하천유역 네트워크 물수지 모형인 MODSIM 모형은 농업용 수리시설을 고려하여 영산강 유역 8개의 중권역으로 구분하였으며, 모형의 유역별 유입량(공급량) 자료는 SWAT 모형의 소유역별 유출 결과를 사용하였다. SWAT 모형의 검·보정은 13년(2005~2017) 동안의 유역 내 1개 수위관측소(마륵 관측소)와 5년 5개월(2012년 8월~2017년 12월) 동안의 2개 보지점(승촌보, 죽산보)의 일별 유입량 및 저수량 자료를 이용하였다. 마륵 수위관측소 유출량 검·보정 결과 Nash-Sutcliffe의 모형효율계수(NSE)와 결정계수(Coefficient of determination, R2)는 0.69, 0.79이며, 2개의 보에서는 NSE 및 R2는 0.68~0.70, 0.75~0.83으로 검·보정되었다. 이후 MODSIM 모형을 이용하여 37개년(1981~2017) 동안의 물수지 분석을 수행하였으며, 최종적으로 가뭄에 취약한 지역을 파악하고 용수별(생·공·농업용수) 공급량 및 부족량을 정량적으로 검토하는 연구가 될 것으로 판단된다.

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A study on estimating the quick return flow from irrigation canal of agricultural water using watershed model (유역모델을 이용한 농업용수 신속회귀수량 산정 연구)

  • Lee, Jiwan;Jung, Chunggil;Kim, Daye;Maeng, Seungjin;Jeong, Hyunsik;Jo, Youngsik;Kim, Seongjoon
    • Journal of Korea Water Resources Association
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    • v.55 no.5
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    • pp.321-331
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    • 2022
  • In this study, we tried to present a method for calculating the amount of regression using a watershed modeling method that can simulate the hydrological mechanism of water balance analysis and agricultural water based on watershed unit. Using the soil water assessment tool (SWAT), a watershed water balance analysis was conducted considering the simulation of paddy fields for the Manbongcheon Standard Basin (97.34 km2), which is a representative agricultural area of the Yeongsan river basin. Before evaluating return flow, the SWAT was calibrated and validated using the daily streamflow observation data at Naju streamflow gauge station (NJ). The coefficient of determination (R2), Nash-Sutcliffe Efficiency (NSE), Root-Mean-Square Error (RMSE) of NJ were 0.73, 0.70, 0.64 mm/day. Based on the calibration results for three years (2015-2017), the quick return flow and the return rate compared to the water supply amount for the irrigation period (April 1 to September 30) were calculated, and the average return flow rate was 53.4%. The proposed method of this study may be used as foundation data to optimal agricultural water supply plan for rational watershed management.

Comparative Analysis by Soil Loss and Sediment Yield Analysis Calculation Method of River using RUSLE and GRID (RUSLE와 GRID를 이용한 하천의 토양유실량 및 유사유출량 산정방법별 비교분석)

  • Park, Eui-Jung;Kim, Chul
    • Journal of the Korean Association of Geographic Information Studies
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    • v.10 no.2
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    • pp.112-121
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    • 2007
  • In occasion of soil loss happened in a basin, soil in the near of a stream may flow into the stream easily, but in case that soil is far away from the stream, sediment yield transferred to rivers by rainfall diminishes. To forecast sediment yield of a stream is an essential item for management of basins and streams. Therefore, sediment yield of soil loss produced from a basin is needed to be calculated as accurate as possible. Purpose of the present research is to calculate soil erosion amount in a basin and to forecast sediment yield flowed into a stream by rainfall and analyze sediment yield in the stream. There are various methods that analyze sediment yield of rivers. In the present study, the soil erosion amount was calculated using Revised Universal Soil Loss Equation(RUSLE) and GRID, and sediment yield was calculated using sediment delivery ratio and empirical methods. DEM data, slope of basin, soil map and landuse constructed by GIS were used for input data of RUSLE. The upstream area of the Yeongsan river basin in Gwangju metropolitan city was selected for the study area. Three methods according to the calculation of LS factor were applied to estimate the soil erosion amount. Two sediment delivery ratio methods for the respective methods were applied and, correspondingly, six occasions in sediment yield were calculated. In addition, the above results were compared by relative amount with estimation by the empirical method of Ministry of Construction & Transportation. Sediment yield calculated in the present study may be utilized for the plan, design and management of dams and channels, and evaluation of disaster impact.

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A Study on the Assessment of Pollution Loads at Small Stream in Yeongsan River Watershed (영산강수계 소하천의 오염부하량 평가에 관한 연구)

  • Ha, Don-Woo;Shim, Hongbin;Kim, Haesung;Kim, Yoonsoo;Cho, Sohyun;Song, Chang-Soo;Kang, Taegu;Kim, Yeong-Suk
    • Journal of Korean Society on Water Environment
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    • v.34 no.1
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    • pp.1-9
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    • 2018
  • In this study, the load of the river was calculated by using the actual data of the Yeong-bon C1, Yeong-bon C2, Yeong-bon C3 monitoring points of the Yeong-san river watershed to determine the excess. As a result, the BOD is 75.83 % at the Yeong-bon C1 and the five-year average value is higher than at other points. The Yeong-bon C3 was 72.15 % and Yeong-bon C2 was analyzed as 68.78 %. The five-year average of the T-P was 71.95 % for the Yeong-bon C2 and 69.86 % for the Yeong-bon C3 and 69.16 % for Yeong-bon C1; these levels exceeded the target water quality standards of 50 %. As a result of analyzing the pollutant load, we found that the Yeong-bon C1 has been highly affected by the nonpoint pollution source because the excess rate is high in the upper section of the flow rate. The Yeong-bon C2 showed a high excess rate in the lower part of the flow rate, and it was estimated that the influence of the point pollution source was large. The excess rate of the Yeong-bon C3 is small in the interval deviation, and it was evaluated as being affected by both point and non-point pollution sources. The TMDL monitoring network data were used to estimate the exceed ratio for the target water quality assessment, and the implementation evaluation was made by the flow exceedance probability interval to analyze the monitoring data so that the data could be utilized according to the purpose of the measurement network.

Evaluation of Future Water Deficit for Anseong River Basin Under Climate Change (기후변화를 고려한 안성천 유역의 미래 물 부족량 평가)

  • Lee, Dae Wung;Jung, Jaewon;Hong, Seung Jin;Han, Daegun;Joo, Hong Jun;Kim, Hung Soo
    • Journal of Wetlands Research
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    • v.19 no.3
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    • pp.345-352
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    • 2017
  • The average global temperature on Earth has increased by about $0.85^{\circ}C$ since 1880 due to the global warming. The temperature increase affects hydrologic phenomenon and so the world has been suffered from natural disasters such as floods and droughts. Therefore, especially, in the aspect of water deficit, we may require the accurate prediction of water demand considering the uncertainty of climate in order to establish water resources planning and to ensure safe water supply for the future. To do this, the study evaluated future water balance and water deficit under the climate change for Anseong river basin in Korea. The future rainfall was simulated using RCP 8.5 climate change scenario and the runoff was estimated through the SLURP model which is a semi-distributed rainfall-runoff model for the basin. Scenario and network for the water balance analysis in sub-basins of Anseong river basin were established through K-WEAP model. And the water demand for the future was estimated by the linear regression equation using amounts of water uses(domestic water use, industrial water use, and agricultural water use) calculated by historical data (1965 to 2011). As the result of water balance analysis, we confirmed that the domestic and industrial water uses will be increased in the future because of population growth, rapid urbanization, and climate change due to global warming. However, the agricultural water use will be gradually decreased. Totally, we had shown that the water deficit problem will be critical in the future in Anseong river basin. Therefore, as the case study, we suggested two alternatives of pumping station construction and restriction of water use for solving the water deficit problem in the basin.

Similarity of Zooplankton Community Structure among Reservoirs in Yeongsan-Seomjin River Basin (영산강, 섬진강 수계 내 주요 저수지에 대한 동물플랑크톤 군집 구조의 유사성 분석)

  • Ko, Eui-Jeong;Kim, Gu-Yeon;Joo, Gea-Jae;Kim, Hyun-Woo
    • Korean Journal of Ecology and Environment
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    • v.52 no.4
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    • pp.285-292
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    • 2019
  • Our study was based on the long-term surveys with respect to the major reservoirs located in the Yeongsan and Seomjin river basins. A total of 45 survey sites have been surveyed four times a year from 2008 to 2017. We identified 166 zooplankton species, including 127 rotifers, 26 cladocerans, and 13 copepods. Mean population density and species number of small reservoirs were higher than those of mid and large reservoirs. Considering outliers exceeding the 90th percentile between species occupancy and mean abundance, 10 of 11 habitat generalists were rotifers, and Bosmina longirostris was the only cladoceran. Habitat specialist consisted of three species of rotifers and emerged from one to three survey sites. According to the modularity results, it was found that the survey sites covering the entire river basins were characterized into five groups, which was similar to the classification by maximum water surface areas(MWSA). The result of the eigenvector centrality showed that the size of MWSA had a greater impact on the similarity of zooplankton community structure between reservoirs than the difference in distance between reservoirs. In the case of survey points in near dam or estuary bank of Juam and Youngsan reservoirs, modularity class were separated from other internal survey points of those. Given that the zooplankton interactions may contribute to freshwater functions more than species diversity. These topological features provide new insight into studying zooplankton distribution patterns, their organization and impacts on freshwater-associated function.