• Title/Summary/Keyword: Andong Dam

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A Development of Dielectric Measurement System for Detecting Physical Parameters of Ground in Subsurface Dam (지하댐 지반 물성치 측정을 위한 유전율 측정 시스템 개발)

  • Kim Man-il;Jeong Gyo-Cheol;Park Chang-Kun
    • The Journal of Engineering Geology
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    • v.14 no.4 s.41
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    • pp.361-369
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    • 2004
  • The authors designed a new technique to measure dielectric constant of a soil media by Frequency Domain Reflectometry (FDR) system and its measurement sensor probe with different length such as 7m, 10cm and 15cm for estimating the variations of dielectric constant. Measurement of dielectric constant of soil material is possible to measure an interference wave generated by between incidence wave and reflection wave which are detected to electro-magnetic wave through the directional coupler at the high frequency range,0.1 to 1.7GHz, by FDR system. The obtained experimental results verified that the technique is very promising for non-destructive and continuous soil volumetric water content measurement monitoring in a laboratory. The relationship between the soil volumetric water content and the dielectric constant of soil media (standard sand) was expressed by a single regression ewe independent of soil texture at a small experimental error. Also the derived regression curve coincided well with that obtained by Topp curve.

Assessment of Biochemical Efficiency for the Reduction of Heavy Metal and Oil Contaminants in Contaminated Soils (토양내 중금속 및 유류 오염농도 저감을 위한 생화학적 기작의 효율성 평가)

  • Kim, Man-Il;Jeong, Gyo-Cheol;Kim, Eul-Young
    • The Journal of Engineering Geology
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    • v.22 no.3
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    • pp.253-262
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    • 2012
  • With the aim of remediating soils contaminated by heavy metals and oil, experimental research was conducted to evaluate the optimal design factors for remediation in terms of efficient soil washing methods and processes. The experiments employed absorptiometric analysis and gas chromatography methods to reduce the concentration of heavy metals such as cooper (Cu), lead (Pb), and zinc (Zn), and total petroleum hydrocarbons (TPH) in contaminated soils. The experimental processes consisted of deciding on the washing solution, washing time, and dilution ratio for contaminated soils. A dissolution analysis of heavy metals was then performed by the addition of surfactant, based on the results of the decision experiments, and the injection processes of microbes and hydrogen peroxide were selected. The experimental results revealed that reduction effects in contaminated soils under the experimental conditions were most efficient with hydrochloric acid 0.1 mole, washing time 1 hour, and dilution ratio 1:3, individually. Additional reduction effects for heavy metals and TPH were found with the addition of a washing solution of 1% of surfactant. The addition of microbes and hydrogen peroxide caused a reduction in TPH concentration.

Analysis of GIUH Model using River Branching Characteristic Factors (하천분기 특성인자를 고려한 지형학적 순간단위도 모형의 해석)

  • Ahn, Seung-Seop;Kim, Dae-Hyeung;Heo, Chang-Hwan;Park, Jong-Kwon
    • Journal of the Korean Association of Geographic Information Studies
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    • v.5 no.4
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    • pp.9-23
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    • 2002
  • The purpose of this research was to develop a model that minimizes time and money for deriving topographical property factors and hydro-meteorological property factors, which are used in interpreting flood flow, and that makes it possible to forecast rainfall-runoff using a least number of factors. That is, the research aimed at suggesting a runoff interpretation method that considers the river branching characteristics but not the topographical and geological properties and the land cover conditions, which had been referred in general. The subject basin of the research was the basin of Yeongcheon Dam located in the upper reaches of the Kumho River. The parameters of the model were derived from the results of abstracting topological properties out of rainfall-runoff observation data about heavy rains and Digital Elevation Modeling(DEM). According to the result of examining calculated peak runoff, the Clark Model and the GIUH Model showed relative errors of 1.9~23.9% and 0.8~11.3%, respectively and as a whole, the peak values of hydrograph appeared high. In addition, according to the result of examining the time when peak runoff took place, the relative errors of the Clark Model and the GIUH Model were 0.5~1 and 0~1 hour respectively, and as a whole, peak flood time calculated by the GIUH Model appeared later than that calculated by the traditional Clark Model.

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A Study on the Spectral Information and Reflectance Characteristic of Levee Crack (제방 균열의 분광정보 및 반사율 특성에 관한 연구)

  • Kim, Jong-Tae;Lee, Chang-Hun;Kang, Joon-Gu
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.9
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    • pp.17-24
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    • 2020
  • This study examined the spectral information and reflectance of cracks of an embankment with drone-based hyperspectral imagery for crack detection. A Nano-Hyperspec mounted on a drone was used as a sensor, and hyperspectral videos of different intensities of illumination of the cracks on the embankment located in the downstream of Andong-Dam were obtained. An analysis of the data value of the illumination and peak data-value, the coefficients of determination were calculated to be 0.9864 of the uncracked areas and 0.9851 of the cracked area. The reflectance of each area showed a similar value and pattern, regardless of the intensity of illumination. This result may have occurred because the reference values of the white reference as the calculation criteria of reflectance varied according to the intensity of illumination. The reflectance at the cracked area was 5.65% lower in visible light and 4.58% lower in near-infrared light than that at the uncracked area. The detection of cracks may offer more precise results in further studies when the gimbal direction and camera angles of the drone are calibrated. Because hyperspectral imagery enables the detection of crack depths and types of clay minerals, which are difficult to identify in general RGB imagery, it can serve as a preemptive measure for evaluating the embankment stability.

Turbid Water Simulation Model for Downstream of the Imha and Andong Dam (임하 및 안동댐 하류하천 탁도모의 시스템 구축)

  • Noh, Joon-Woo;Kim, Jeong-Kon;Lee, Sang-Uk;Park, Sang-Young
    • Proceedings of the Korea Water Resources Association Conference
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    • 2007.05a
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    • pp.1115-1119
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    • 2007
  • 우리나라는 몬순기후대에 속하여 매년 홍수가 발생하고 이시기에 저수지로 유입된 탁수로 말미암아 저수지 인근 및 하류하천에 거주하는 주민들의 민원의 대상이 되고 있다. 이에 따라 유역, 저수지, 및 하천을 포함한 포괄적인 대책을 수립하기 위하여 유역과 저수지 그리고 저수지와 하천을 연계한 통합시스템을 구축함으로써 탁수의 거동을 고려한 저수지 운영에 대한 의사결정을 지원하고자 한다. 본 연구에서는 안동 및 임하댐의 연계운영을 통한 하류하천 탁도관리 방안을 수립하고자 동적수질모형인 Koriv1-win 모형을 구축하여 저수지 수질모의 시스템과 연계 가능하도록 하였다. 모형은 안동댐하류로부터 구미수위표 지점까지 134 km에 달하는 구간에 대하여 구축하였으며 대상구간 내에는 내성천을 비롯 5개의 주요지천이 존재하게 된다. 그림 1에는 수리모듈 및 수질모듈의 검증결과를 나타내고 있으며 탁도모의결과를 검증하기 위하여 임하댐 관리단에서 측정한 자료를 이용하였다. 수리해석결과 구미지점의 유량변동을 잘 반영하는 것으로 모의되었고 수질해석결과도 관측치와 상당히 비슷하게 나타나는 것을 알 수 있었다. 한편 안동댐방류수와 임하댐 방류수가 혼합되는 영역에서 2차원적 흐름양상과 각 댐으로부터 방류되는 방류수의 수온과 탁도의 혼합양상을 모의하였으며 실측을 통하여 모의결과와 비교해 보았다. 저수지 하류하천에 대하여 1차원 및 2차원적 수리해석과 수질해석결과를 통하여 하천에서의 탁수전파 거리 및 고탁도 탁수의 도달 시간을 산정할 수 있도록 함으로써 저수지 연계운영을 통한 하류단 탁도저감에 대한 계획수립이 가능하다.을 것으로 판단된다. 철거 선정 체계는 보 철거를 위해서 보 주변 지역 거주민을 설득하며, 하천의 환경 개선을 위한 합리적인 대안 제시를 목적으로 하고 있다. 선정 체계를 바탕으로 주민 협의 및 대안 제시를 통해 결정된 대상 보는 선정 체계 안에서 보 철거 영향 판단 절차에 따라서 보 철거로 인한 수문, 수리, 지형, 수질, 생태 영향을 판단하게 되며, 이와 더불어 사회 경제적인 영향을 평가하게 된다. 평가결과에 따라서 보를 완전히 철거하거나 다른 대안을 고려하여 보를 부분적으로 철거하거나 개량하게 된다.곳으로 1/3의 자기 생산을 담당하고 있었다. $\ulcorner$경상도지리지$\lrcorner$(慶尙道地理志)에는 $\ulcorner$세종실록$\lrcorner$(世宗實錄) $\ulcorner$지리지$\lrcorner$(地理志)와 동년대에 동일한 목적으로 찬술되었음을 알 수 있다. $\ulcorner$경상도실록지리지$\lrcorner$(慶尙道實錄地理志)에는 $\ulcorner$세종실록$\lrcorner$(世宗實錄) $\ulcorner$지리지$\lrcorner$(地理志)와의 비교를 해보면 상 중 하품의 통합 9개소가 삭제되어 있고, $\ulcorner$동국여지승람$\lrcorner$(東國與地勝覽) 에서는 자기소와 도기소의 위

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Parameter Regionalization of Semi-Distributed Runoff Model Using Multivariate Statistical Analysis (다변량 통계분석을 이용한 준분포형 유출모형 매개변수 지역화)

  • Lee, Byong-Ju;Jung, Il-Won;Bae, Deg-Hyo
    • Journal of Korea Water Resources Association
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    • v.42 no.2
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    • pp.149-160
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    • 2009
  • The objective of this study is to suggest parameter regionalization scheme which is integrated two multivariate statistical methods: principal components analysis(PCA) and hierarchical cluster analysis(HCA). This technique is to apply semi-distributed rainfall-runoff model on ungauged catchments. 7 catchment characteristics (area, mean altitude, mean slope, ratio of forest, water content at saturation, field capacity and wilting point) are estimated for 109 mid-sized sub-basins. The first two components from PCA results account for 82.11% of the total variance in the dataset. Component 1 is related to the location of the catchments relevant to the altitude and Component 2 is connected with the area of these. 103 ungauged catchments are clustered using HCA as the following 6 groups: Goesan 23, Andong 6, Imha 5, Hapcheon 21, Yongdam 4, Seomjin 44. SWAT model is used to simulate runoff and the parameters of the model on the 6 gauged basins are estimated. The model parameters were regionalized for Soyang, Chungju and Daecheong dam basins which are assumed as ungauged ones. The model efficiency coefficients of the simulated inflows for these three dams were at least 0.8. These results also mean that goodness of fit is high to the observed inflows. This research will contribute to estimate and analyze hydrologic components on the ungauged catchments.

Evaluation of Hydrometeorological Components Simulated by Water and Energy Balance Analysis (물수지와 에너지수지 해석에 따른 수문기상성분 평가)

  • Ji, Hee Sook;Lee, Byong Ju;Nam, Kyung Yeub;Lee, Chul Kyu;Jung, Hyun Sook
    • Journal of Korea Water Resources Association
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    • v.47 no.1
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    • pp.25-35
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    • 2014
  • The objective of this study is to evaluate TOPLATS land surface model performance through comparison of results of water and energy balance analysis. The study area is selected Nakdong river basin and high resolution hydrometeorological components of which spatio-temporal resolution is 1 hr and 1 km are simulated during 2003 to 2013. The simulated daily and monthly depth of flows are well fitted with the observed one on Andong and Hapcheon dam basin. In results of diurnally analysis of energy components, change pattern throughout the day of net radiation, latent heat, sensible heat, and ground heat under energy balance analysis have higher accuracy than ones under water balance analysis at C3 and C4 sites. Especially, root mean square errors of net radiation and latent heat at C4 site are shown very low as 22.18 $W/m^2$ and 7.27 $W/m^2$, respectively. Mean soil moisture and evapotranspiration in summer and winter are simulated as 36.80%, 33.08% and 222.40 mm, 59.95 mm, respectively. From this result, when we need high resolution hydrometeorological components, energy balance analysis is more reasonable than water balance analysis. And this results will be used for monitor and forecast of weather disaster like flood and draught using spatial hydrometeorological information.

Study on Potential Water Resources of Andong-Imha Dam by Diversion Tunnel (안동-임하 연결도수로 설치에 따른 가용 수자원량에 관한 연구)

  • Choo, Yeon Moon;Jee, Hong Kee;Kwon, Ki Dae;Kim, Chul Young
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.2
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    • pp.1126-1139
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    • 2014
  • World is experiencing abnormal weather caused by urbanization and industrialization increasing greenhouse gas and one of these phenomenon domestically happening is flood and drought. The increase of green-house gases is due to urbanization and industrialization acceleration which are causing abnormal climate changes such as the El Nino and a La Nina phenomenon. It is expected that there will be many difficulties in water management, especially considering the topography and seasonal circumstances in Korea. Unlike in the past, a variety of water conservation initiatives have been undertaken like the river-management flow and water capacity expansion projects. To meet the increasing demand for water resources, new environmentally-friendly small and medium-sized dams have been built. Therefore, the development of a new paradigm for water resources management is essential. This study shows that additional security is needed for potential water resources through diversion tunnels and is very important to consider for future water supplies and situations. Using RCP 6.0 and RCP 8.5 in representative concentration pathway climate change scenario, specific hydrologic data of study basin was produced to analyze past observed basin rainfall tendency which showed both scenario 5%~9% range increase in rainfall. Through sensitivity analysis using objective function, population in highest goodness was 1000 and cross rate was 80%. In conclusion, it is expected that the results from this study will help to make long-term and stable water supply plans by using the potential water resource evaluation model which was applied in this study.

Analysis of relation between rainfall pattern and runoff response in Andong-dam catchment (안동댐유역의 강우패턴과 유출반응의 관계 분석)

  • Kim, Nam Won;Shin, Mun-Ju
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.361-361
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    • 2018
  • 강우패턴이 유출반응에 미치는 영향을 분석하는 것은 수문연구에서 중요한 주제 중 하나이며 댐유역에 대해 기상 및 유출자료를 사용하여 이를 상세히 분석함으로써 이수기에 필요한 수자원을 예측 및 확보하는 것은 중요하다. 강우패턴이 유출반응에 미치는 영향을 상세히 분석하기 위해서는 댐유역의 상류부터 하류까지 많은 유출관측지점의 자료를 사용해야 하지만 상류의 소유역들은 대부분 미계측유역이라는 문제점이 있다. 본 연구에서는 자료공간확장 방법을 사용하여 미계측유역의 유출자료를 생성하고 이 자료들을 분석함으로써 강우패턴이 유출반응에 미치는 영향을 자세히 분석하였다. 먼저 안동댐유역내 관측유역인 안동댐, 도산, 소천유역을 대상으로 1989년부터 2009년까지의 기간 중 20개의 사상에 대하여 분포형 모형인 GRM 모형의 적용성을 조사하였으며 전반적으로 0.5 Nash-Sutcliffe 계수 이상의 타당한 모형효율성 결과를 얻었다. 그 후 자료공간확장 방법을 사용하여 안동댐 상류에 위치한 47개의 미계측 소유역들의 유출자료를 생성하였으며 세 관측유역을 포함한 총 50개 유역의 유출자료를 연구에 사용하였다. 그리고 총 50개 유역의 평균강우량 시계열 자료를 생성하고 이동평균방법을 사용하여 이 평균강우량 자료를 강우강도-지속시간 곡선으로 변환하였다. 강우패턴과 유출반응간의 관계를 분석하기 위해 합리식의 유출계수와 강우강도비율을 사용하였으며 유출계수와 강우강도비율을 계산하기 위해 유역별 도달시간을 사용하였다. 여기서 강우강도비율은 강우강도지속시간 곡선을 사용하여 첨두강우강도를 도달시간에 해당하는 평균강우강도로 나눠준 값이다. 그리고 이 유출계수와 강우강도비율을 유역면적에 대해 도시함으로써 그 경향을 조사하였다. 그 결과 20개 사상은 유출계수, 강우강도비율과 유역면적을 사용하여 물리적으로 타당한 네 가지의 타입으로 분류될 수 있었다. 이 네 가지 타입은 강우의 이동 및 분포와 상관이 있었는데 첫번째 타입은 안동댐 유역전체에 강우가 거의 등분포하는 경우, 두 번째는 강우가 유역의 상류방향으로 이동하는 경우, 세 번째는 강우가 유역의 하류방향으로 이동하는 경우, 그리고 네 번째는 강우가 유역에 무작위로 분포하는 경우였다. 이것은 어떠한 사상에 대해서도 유출계수와 강우강도비율을 유역면적에 대해 도시함으로써 강우패턴과 유출간의 관계를 분석할 수 있다는 것을 나타낸다. 그리고 이 네 가지 타입에 대한 강우사상들의 비율은 각각 65%, 20%, 10%, 그리고 5% 였다. 이 타입별 강우사상의 비율은 향후 강우-유출관계에 의한 수자원 예측 및 확보에 활용될 수 있다.

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Optimal Reservoir Operation Using Goal Programming for Flood Season (Goal Programming을 이용한 홍수기 저수지 최적 운영)

  • Kim, Hye-Jin;Ahn, Jae-Hwang;Choi, Chang-Won;Yi, Jae-Eung
    • Journal of the Korean Society of Hazard Mitigation
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    • v.11 no.2
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    • pp.147-156
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    • 2011
  • The purpose of multipurpose reservoir operation in flood season is to reduce the peak flood at a control point by utilizing flood control storage or to minimize flood damage by controlling release and release time. Therefore, the most important thing in reservoir operation for flood season is to determine the optimal release and release time. In this study, goal programming is used for the optimal reservoir operation in flood season. The goal programming minimizes a sum of deviation from the target value using linear programming or nonlinear programming to obtain the optimal alternative for the problem with more than two objectives. To analyze the applicability of goal programming, the historical storm data are utilized. The goal programming is applied to the reservoir system operation as well as single reservoir operation. Chungju reservoir is selected for single reservoir operation and Andong and Imha reservoirs are selected for reservoir system operation. The result of goal programming is compared with that of HEC-5. As a result, it was found that goal programming could maintain the reservoir level within flood control level at the end of a flood season and also maintain flood discharge within a design flood at a control point for each time step. The goal programming operation is different from the real operation in the sense that all inflows are assumed to be given in advance. However, flood at a control point can be reduced by calculating the optimal release and optimal release time using suitable constraints and flood forecasting system.