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      • KCI등재

        GIS에 의한 대규모 노천광에서의 배수처리 및 사면안정 예측

        선우춘(Choon Sunwoo),최요순(Yo-Soon Choi),박형동(Hyeong-Dong Park),정용복(Yong-Bok Jung) 한국암반공학회 2007 터널과지하공간 Vol.17 No.5

        이 논문은 GIS 기반의 수리학적 모델링을 통하여 시공측면에서 효과적으로 지표수를 제어하여 배수제어와 사면의 안정성에서의 적용에 관한 것이다. 본 논문에서는 인도네시아 파시르 노천광을 대상으로 연구를 수행한 결과를 제시한다. 신뢰할 수 있는 DEM 자료의 획득을 위하여 상세한 지형측량이 이루어 졌으며, DEM 자료로부터 빗물의 흐름방향, 누적 흐름양, 집수구역 등의 배수 시스템의 특성을 도출하기 위하여 ArcGIS 9.1 소프트웨어가 제공하는 Hydrology 분석 도구를 사용하였다. 수리학적 모델링과 지형적인 분석의 결과는 현재의 배수처리 설비가 적당하지 않으며 또한 집중되는 지표수의 흐름으로 벤치사면에서 많은 침식이 일어날 수 있음을 보여주고 있다. 마지막으로 배수설비설계의 최적화와 물의 흐름의 제어를 통한 사면의 안전성의 증가와 사면을 감시하기 위한 방법을 제시하였다. This paper presents an application of drainage control and slope stability by GIS-based hydrological modeling to control the surface water from an operational point of view. This study was carried out on a region of Pasir open-pit coal mine, Indonesia. A detailed topographical survey was performed at the study area to generate a reliable DEM (Digital Elevation Model). Hydrology tools implemented in ArcGIS 9.1 were used to extract the characteristics of drainage system such as flow direction, flow accumulation and catchment area from DEM. The results of hydrological modeling and spatial analysis showed that current arrangement of pumping facility is not suitable and some vulnerable places to erosion exist on the bench face due to concentrated surface runoff. Finally, some practical measures were suggested to optimize the design of drainage system and to monitor the slope stability by the surface water management at the study region during heavy rainfall.

      • KCI등재

        휴대용 XRF와 GIS를 이용한 폐광산 지역의 토양오염에 관한 연구

        이현규 ( Hyeon Gyu Lee ),최요순 ( Yo Soon Choi ) 한국지리정보학회 2014 한국지리정보학회지 Vol.17 No.3

        In this study, soil contamination maps related to Cu and Pb were created at the Busan abandoned mine in Korea using a handheld X-Ray Fluorescence(XRF) and Geographic Information Systems(GIS). Hydrological analysis was performed using the Digital Elevation Model(DEM) of the study area to identify the flow directions of surface runoff where pollutants can be dispersed from the soil contamination sources. 24 locations for measuring the soil contamination related to Cu and Pb were selected by considering the result of hydrological analysis. The results measured at the 24 locations using the handheld XRF showed that the highest value of Cu contamination is 8,255ppm and that of Pb is 2,146ppm. The field investigation data were entered into ArcGIS software, and then soil contamination maps regarding Cu and Pb with a 5m grid-spacing were created after performing spatial interpolations using the ordinary kriging method. As a result, we could know that high concentrations of Cu and Pb are presented at the waste and tailings dumps around the abandoned mine openings. This study also showed that the handheld XRF and GIS can be utilized to create soil contamination maps related to Cu and Pb in the field.

      • KCI등재

        강원권 및 동남권 지역의 파력발전 잠재성 평가

        장미향 ( Mi Hyang Jang ),최요순 ( Yo Soon Choi ) 한국지리정보학회 2013 한국지리정보학회지 Vol.16 No.4

        This study performed an assessment of wave power potential in the Kangwon and Dongnam regions encompassing the East Sea and part of South Sea. Annual electricity production and economic effects of 28 wave energy converters with 750kW capacity were analyzed using significant wave height and peak wave period data(created from the NOAA`s NWW3 model) and InVEST software(developed by Stanford University and University of Minnesota). Annual electricity production was estimated to be up to 1,207MWh/year and at least 163MWh/year. The spatial pattern of annual electricity production showed that the sea far from land has higher wave power potential than the sea near coast. The net present value(NPV) of 28 wave energy converters was calculated by considering an operation period of 25 years. When assuming that the electricity produced from wave energy converters is transferred to onshore power plants through underwater cables, the NPV was estimated to be up to 5,883USD(6,600,000KRW) and at least -63,494USD(-71,000,000KRW). In contrast, the NPV increased up to 28,095 USD(31,600,000KRW) when assuming that the electricity is utilized in the Ulleungdo and Dokdo. In addition, it was found that the break-even line of NPV in the East Sea becomes closer towards the land according to the increment of electricity price. The NPV of wave energy converters near the Ulleungdo and Dokdo will be 88,158 USD(99,000,000KRW) if the increment of electricity price is 100KRW.

      • KCI등재

        폐금속 광산의 토양 중금속 오염 조사 자료 해석을 위한 핫스팟 분석의 적용

        이채영 ( Chae-young Lee ),김성민 ( Sung-min Kim ),최요순 ( Yo-soon Choi ) 한국지리정보학회 2019 한국지리정보학회지 Vol.22 No.2

        In this study, a hotspot analysis was conducted to suggest a new method for interpreting soil heavy-metal contamination data of abandoned metal mines according to statistical significance level. The spatial autocorrelation of the data was analyzed using the Getis-Ord Gi* statistic in order to check whether soil heavy metal contamination data showing abnormal values appeared concentrated or dispersed in a specific space. As a result, the statistically significant data showing abnormal values in the mine area could be classified as follows: (1) the contamination degree and the hotspot value (z-score) were both high, (2) the contamination degree was high but the z-score was low, (3) the contamination degree was low but the z-score was high and (4) the contamination degree and the z-score were both low. The proposed method can be used to interpret the soil heavy metal contamination data according to the statistical significance level and to support a rational decision for soil contamination management in abandoned mines.

      • KCI등재

        대규모 노천광 연약암반 사면에서의 GPS 계측과 위험도평가에 의한 파괴예측

        선우춘 ( Sun Woo Choon ),정용복 ( Yong Bok Jung ),최요순 ( Yo Soon Choi ),박형동 ( Hyeong Dong Park ) 대한지질공학회 2010 지질공학 Vol.20 No.3

        노천광산에서 사면설계는 안정성과 경제성 측면에서 동시에 접근하여 결정해야 한다. 따라서 일반 사면과 달리 대부분 보강 없이 굴착해야 하기 때문에 사면의 경사가 가장 중요한 설계 변수이다. 본 연구에서는 인도네시아 파시르(Pasir)에 위치한 노천채광방식의 대규모 석탄광산 사면에 대하여 GPS에 의한 변위계측 및 해석을 수행하였다. 파괴시기를 예측하기 위해 계측자료에 대한 역변위속도 분석결과가 현장사면의 사례와 잘 일치하였으며, 이와 같이 불안정한 사면의 파괴시기를 대략적으로 예측할 수 있을 것으로 판단된다. 또한 퍼지이론과 계층분석절차 기법을 접목하여 대규모 석탄 노천광산의 상대적 사면붕괴 위험도를 평가할 수 있는 GIS 분석모델을 제시하였다. 분석모델은 7개의 영향인자들(사면의 각도, 사면 높이, 지표수 영향, 굴착계획, 인장균열, 단층, 배후 저수지)을 동시에 고려하여 채굴적 연약사면의 상대적 붕괴 위험도를 평가할 수 있었다. 따라서 변위계측에 의한 사면파괴시점 예측과 사면붕괴 위험도 평가기법을 동시에 수행한다면 예측시기 및 파괴지점에 대한 정밀도를 향상시킬 수 있을 것이다. The slope design of an open-pit mine must consider economical efficiency and stability. Thus, the overall slope angle is the principal factor because of limited support or reinforcement options available in such a setting. In this study, slope displacement, as monitored by a GPS system, was analyzed for a coal mine at Pasir, Indonesia. Predictions of failure time by inverse velocity analysis showed good agreement with field observations. Therefore, the failure time of an unstable slope can be roughly estimated prior to failure. A GIS model that combines fuzzy theory and the analytical hierarchy process (AHP) was developed to assess slope instability in open-pit coal mines. This model simultaneously considers seven factors that influence the instability of open-pit slopes (i.e., overall slope gradient, slope height, surface flows, excavation plan, tension cracks, faults, and water body). Application of the proposed method to an open-pit coal mine revealed an enhanced prediction accuracy of failure time and failure site compared with existing methods.

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