• 제목/요약/키워드: Hancheon

검색결과 24건 처리시간 0.029초

제주도의 강우특성을 고려한 한천유역의 면적감소계수 산정연구 (Calculation of the Areal Reduction Factor of Hancheon River Basin based on Considering the Rainfall Characteristics in Jeju Island)

  • 강명수;양성기;김용석;강보성;양세창
    • 한국환경과학회지
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    • 제26권12호
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    • pp.1389-1397
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    • 2017
  • In this study, we calculated the fixed-type Areal Reduction Factor (ARF) of the Hancheon River basin in Jeju Island, and compared the calculated ARF and the ARF of the four major river basins suggested by the Ministry of Land, Infrastructure and Transport. As a result, the maximum fluctuation ratios of ARF for the four major river basins calculated using area, frequency, and initial duration time were significant: 7.61% for the Hangang River basin; 12.69% for the Nakdonggang River basin; 8.09% for the Kumgang River basin; and 17.98% for the Yeongsangang River basin. In addition, the differences between the maximum and minimum value of ARF for the Hancheon River basin based on 48 hours was 2.13%, and it was smaller than the one for the four major river basins: 8.92% for the Hangang River basin; 11.41% for the Nakdonggang River basin; 8.87% for the Kumgang River basin; and 17.17% for the Yeongsangang River basin. The Yeongsangang River basin had the highest difference.

제주도 한천유역 지하수 모델개발을 통한 인공함양 평가 (Modeling Artificial Groundwater Recharge in the Hancheon Drainage Area, Jeju island, Korea)

  • 오세형;김용철;구민호
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제16권6호
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    • pp.34-45
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    • 2011
  • For the Hancheon drainage area in Jeju island, a groundwater flow model using Visual MODFLOW was developed to simulate artificial recharge through injection wells installed in the Hancheon reservoir. The model was used to analyze changes of the groundwater level and the water budget due to the artificial recharge. The model assumed that $2{\times}10^6m^3$ of storm water would recharge annually through the injection wells during the rainy season. The transient simulation results showed that the water level rose by 39.6 m at the nearest monitoring well and by 0.26 m at the well located 7 km downstream from the injection wells demonstrating a large extent of the affected area by the artificial recharge. It also shown that, at the time when the recharge ended in the 5th year, the water level increased by 81 m at the artificial reservoir and the radius of influence was about 2.1 km downstream toward the coast. The residence time of recharged groundwater was estimated to be no less than 5 years. The model also illustrated that 15 years of artificial recharge could increase the average linear velocity of groundwater up to 1540 m/yr, which showed 100 m/yr higher than before. Increase of groundwater storage due to artificial recharge was calculated to be $2.4{\times}10^6$ and $4.3{\times}10^6m^3$ at the end of the 5th and 10th years of artificial recharge, respectively. The rate of storage increase was gradually diminished afterwards, and storage increase of $5.0{\times}10^6m^3$ was retained after 15 years of artificial recharge. Conclusively, the artificial recharge system could augment $5.0{\times}10^6m^3$ of additional groundwater resources in the Hancheon area.

통합수문모형을 이용한 제주 한천유역의 지하수 변동 특성 모의 (Simulation of Groundwater Variation Characteristics of Hancheon Watershed in Jeju Island using Integrated Hydrologic Modeling)

  • 김남원;나한나;정일문
    • 한국환경과학회지
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    • 제22권5호
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    • pp.515-522
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    • 2013
  • To investigate groundwater variation characteristics in the Hancheon watershed, Jeju Island, an integrated hydrologic component analysis was carried out. For this purpose, SWAT-MODFLOW which is an integrated surface-groundwater model was applied to the watershed for continuous watershed hydrologic analysis as well as groundwater modeling. First, ephemeral stream characteristics of Hancheon watershed can be clearly simulated which is unlikely to be shown by a general watershed hydrologic model. Second, the temporally varied groundwater recharge can be properly obtained from SWAT and then spatially distributed groundwater recharge can be made by MODFLOW. Finally, the groundwater level variation was simulated with distributed groundwater pumping data. Since accurate recharge as well as abstraction can be reflected into the groundwater modeling, more realistic hydrologic component analysis and groundwater modeling could be possible.

한천저류지 운영에 따른 홍수조절효과 평가 (An Evaluation of the Flood Control Effect according to the Hancheon Reservoir Operation)

  • 문덕철;정관수;박원배;김용철
    • 한국수자원학회논문집
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    • 제47권2호
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    • pp.107-117
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    • 2014
  • 본 연구에서는2007년 제주지역을 강타한 태풍 '나리' 이후 홍수조절을 위해 한천유역에 설치된 저류지의 효과를 정량적으로 평가하였다. 이를 위해 2010년 태풍 '뎬무'의 내습 시, 한천 상 하류에 위치한 하천유량관측소의 자료와 저류지 유입량 자료를 이용하여 한천저류지 운영이 하류지역에 미치는 홍수저감 효과를 검토하였다. 분석결과, 하류지역에서의 실제 하천수위는 3.44m를 기록하였으나, 수위-유량 관계식, 유출전파속도, 저류지 유입량 등을 활용하여 저류지가 운영되지 않았을 경우의 하류지역 하천수위를 분석한 결과 4.16m로 예측되었다. 이와 같은 결과는 한천유역에 설치된 저류지의 홍수저감 효과를 분명하게 보여주는 것으로 향후 유사한 사상에 대해서도 적절한 기여를 할 수 있을 것으로 판단되었다.

제주도 유출분석을 위한 한계유출 모의기법 개발 (Development of Threshold Runoff Simulation Method for Runoff Analysis of Jeju Island)

  • 정일문;이정우;김지태;나한나;김남원
    • 한국환경과학회지
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    • 제20권10호
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    • pp.1347-1355
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    • 2011
  • In Jeju island, runoff has frequently happened when the rainfall depth is over a threshold value. To simulated this characteristic rainfall-runoff model structure has to be modified. In this study, the TRSM (Threshold Runoff Simulation Method) was developed to overcome the limitations of SWAT in applying to the hydrologic characteristics of Jeju island. When the precipitation and soil water are less than threshold value, we revised the SWAT routine not to make surface/lateral or groundwater discharge. For Hancheon watershed, the threshold value was set as 80% of soil water through the analysis of rainfall-runoff relationship. Through the simulation of test watershed, it was proven that TRSM performed much better in simulating pulse type stream flow for the Hancheon watershed.

Spatial Interpolation of Rainfall by Areal Reduction Factor (ARF) Analysis for Hancheon Watershed

  • Kar, Kanak Kanti;Yang, Sung Kee;Lee, Junho
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2015년도 학술발표회
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    • pp.427-427
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    • 2015
  • The storm water management and drainage relation are the key variable that plays a vital role on hydrological design and risk analysis. These require knowledge about spatial variability over a specified area. Generally, design rainfall values are expressed from the fixed point rainfall, which is depth at a specific location. Concurrently, determine the areal rainfall amount is also very important. Therefore, a spatial rainfall interpolation (point rainfall converting to areal rainfall) can be solved by areal reduction factor (ARF) estimation. In mainland of South Korea, for dam design and its operation, public safety, other surface water projects concerned about ARF for extreme hydrological events. In spite of the long term average rainfall (2,061 mm) and increasing extreme rainfall events, ARF estimation is also essential for Jeju Island's water control structures. To meet up this purpose, five fixed rainfall stations of automatic weather stations (AWS) near the "Hancheon Stream Watershed" area has been considered and more than 50 years of high quality rainfall data have been analyzed for estimating design rainfall. The relationship approach for the 24 hour design storm is assessed based on ARF. Furthermore, this presentation will provide an outline of ARF standards that can be used to assist the decision makers and water resources engineers for other streams of Jeju Island.

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제주도 한천유역의 함양 지체시간 산정 (Delay Time Estimation of Recharge in the Hancheon Watershed, Jeju Island)

  • 김남원;나한나;정일문
    • 한국환경과학회지
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    • 제23권4호
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    • pp.605-613
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    • 2014
  • In this work, the delay time for groundwater recharge was estimated by comparing simulated recharges by means of SWAT(Soil and Water Assessment Tool) model and WTF(Water Table Fluctuation) method. The delay time for groundwater recharge means that the time when the water from rainfall travelled through vadose zone just after getting out of soil zone bottom. As measuring this delay time is almost impossible, we used to compare the estimated values from modeling(SWAT) and analytic method(WTF). The test site is Hancheon watershed which has 8 groundwater measurement stations. The results show that the altitude has a linear relationship with the estimated delay time values. To validate these results, we conducted corelation analysis between transformed groundwater levels and observed ones. The results showed that computed groundwater levels have good corelation($R^2$=0.97, 0.87, respectively). The estimated delay time would be used for the groundwater behaviour characteristics in vadose zone. As recharge rates vary according to the height, the delay time is thought to be an import variable for the proper groundwater recharge estimation.

OpenGIS 기반 홍수범람지도 작성 자동화 툴 개발 및 제주 한천 적용 연구 (An Automated OpenGIS-based Tool Development for Flood Inundation Mapping and its Applications in Jeju Hancheon)

  • 김경동;김태은;김동수;양성기
    • 대한토목학회논문집
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    • 제39권6호
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    • pp.691-702
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    • 2019
  • 홍수범람지도는 홍수에 대비하여 도시계획이나 댐 수위 조절 운영, 제방 등의 설계에 주요 지표로 사용되며 거주지역에 대한 홍수 발생 여부를 예보하거나 홍수 발생 시 신속하고 안전하게 대피하도록 하는 홍수 예·경보시스템 구축 등에도 중요한 역할을 한다. 국가하천과 같이 중요도 혹은 홍수 취약성이 높은 하천주변 지역의 경우, 고정밀도 LiDAR 기반 DEM 기반 정확도가 높은 홍수지도 작성에 2차원 혹은 3차원의 전문화된 범람지도 가시화 수치모형이 비용과 상관없이 활용될 수 있으나 지방하천 및 소하천은 예산상 한계 및 적합한 기술부족으로 여전히 시간소모적인 수작업이나 부정확하거나 비효율적인 기존 홍수지도작성 기법을 감수해왔다. 본 연구에서는, 실무에서 하천기본계획 수립 시 활용되는 HEC-RAS 기반 1차원 홍수위 모형 결과와 DEM을 기반으로 홍수지도작성의 복잡한 단계를 자동화시키고, 오픈소스인 QGIS와 연계할 수 있어 고비용의 ArcGIS에 기반하지 않는 OpenGIS 기반 홍수범람지도 생성 자동화 소프트웨어(Open Flood Mapper, OFM)를 개발하였다. OFM은 지난 2007년도 태풍 나리 내습 시 범람피해를 입은 제주도 한천 하류 침수흔적도, 첨두홍수위에 기반한 HEC-GeoRAS 및 수작업을 통해 제작한 홍수 범람지도와 비교하여 검증하였고, 빈도별 홍수범람지도를 추적하여 극한 홍수사상에서 범람의 특성을 시범적으로 구현하고 분석하였다.

제주 한천 및 강정천 유역에 적합한 보완관계법 기반 증발산량 산정 모형 (Complementary Relationship Based Evaportranspiration Estimation Model Suitable for the Hancheon and Kangjeongcheon Watersheds in Jeju Island)

  • 김남원;나한나;이정우;이정은
    • 한국수자원학회논문집
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    • 제47권12호
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    • pp.1155-1163
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    • 2014
  • 본 연구에서는 잠재증발산량과 실제증발산량간의 보완관계 기반의 증발산량 산정 모형인 Brutsaert and Stricker (1979)의 AA 모형과 Morton (1983)의 CRAE 모형을 제주도내 두 개의 상시하천 유역에 처음으로 적용하고 이 지역에 적합한 모형의 매개변수를 제안하였다. AA 모형과 CRAE 모형의 매개변수 검정과 모형의 검증을 위한 대표유역으로 각각 북제주에 위치한 한천 유역과 남제주에 위치한 강정천 유역을 선정하였다. 한천 유역에 대해 AA 모형의 경험상수 ${\alpha}$와 이류에너지항 M, CRAE 모형의 경험상수 $b_1$$b_2$를 바꾸어가면서 실제증발 산량을 산정하고 이를 유역수문모델링 결과와의 비교를 통해 매개변수 검정을 수행하였다. 그 결과 AA 모형은 ${\alpha}=1.00$, $M=30.0Wm^{-2}$, CRAE 모형은 $b_1=33.0Wm^{-2}$, $b_2=1.02$이 최적의 값으로 산정되었다. 동일한 매개변수를 사용하여 AA 모형과 CRAE 모형의 검증 대상유역인 강정천 유역에 적용한 결과, 두 모형 모두 식생의 성장기 및 비성장기에 유역수문모델링 결과와 유사한 것으로 분석되었다.

Assessing Unit Hydrograph Parameters and Peak Runoff Responses from Storm Rainfall Events: A Case Study in Hancheon Basin of Jeju Island

  • Kar, Kanak Kanti;Yang, Sung-Kee;Lee, Jun-Ho
    • 한국환경과학회지
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    • 제24권4호
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    • pp.437-447
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    • 2015
  • Estimation of runoff peak is needed to assess water availability, in order to support the multifaceted water uses and functions, hence to underscore the modalities for efficient water utilization. The magnitude of storm rainfall acts as a primary input for basin level runoff computation. The rainfall-runoff linkage plays a pivotal role in water resource system management and feasibility level planning for resource distribution. Considering this importance, a case study has been carried out in the Hancheon basin of Jeju Island where distinctive hydrological characteristics are investigated for continuous storm rainfall and high permeable geological features. The study aims to estimate unit hydrograph parameters, peak runoff and peak time of storm rainfalls based on Clark unit hydrograph method. For analyzing observed runoff, five storm rainfall events were selected randomly from recent years' rainfall and HEC-hydrologic modeling system (HMS) model was used for rainfall-runoff data processing. The simulation results showed that the peak runoff varies from 164 to 548 m3/sec and peak time (onset) varies from 8 to 27 hours. A comprehensive relationship between Clark unit hydrograph parameters (time of concentration and storage coefficient) has also been derived in this study. The optimized values of the two parameters were verified by the analysis of variance (ANOVA) and runoff comparison performance were analyzed by root mean square error (RMSE) and Nash-Sutcliffe efficiency (NSE) estimation. After statistical analysis of the Clark parameters significance level was found in 5% and runoff performances were found as 3.97 RMSE and 0.99 NSE, respectively. The calibration and validation results indicated strong coherence of unit hydrograph model responses to the actual situation of historical storm runoff events.