• Title/Summary/Keyword: 공간홍수예보

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Long-term Streamflow Simulations Using a Land Surface Model (지표수문모형을 이용한 장기하천유출 모의)

  • Lee, Jong Seok;Park, Geun A;Kim, Jae Deok;Choi, Hyun Il
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.359-359
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    • 2021
  • 기후변화로 인한 강수량의 지역별, 계절별 불균형은 홍수로 인한 하천 범람피해뿐만 아니라 하천의 건천화로 인한 수생태, 수질, 경관 저해 등의 피해를 야기하고 있다. 이와 같은 기후변화로 인한 수자원의 영향을 평가하기 위해 기상 현상을 재현하고 예측하기 위한 기후모형과 이와 연계하여 지표의 수문 순환과 에너지 순환과정을 모의할 수 있는 지표수문모형의 필요성이 대두되고 있다. 그러나, 하천유출에 대한 모니터링시스템 체계를 구축하기 위해 지표수문모형을 사용하여 하천의 장기유출을 모의하는 시도는 국내에서는 아직 일반화되지 않고 있다. 따라서, 본 연구에서는 횡방향 유출흐름 모의가 가능하도록 개선된 격자형 지표수문모형인 Common Land Model(CoLM)의 우리나라 하천유역에 대한 장기하천유출 모의 적용성을 확인하고자 한다. 이를 위하여 4대강(한강, 낙동강, 금강, 섬진강)의 자연유역을 대상으로 주요 댐 상류유역에 대하여 CoLM이 필요로 하는 지표경계조건자료와 기상입력자료를 구축하고 모형의 주요 매개변수에 대한 검보정을 수행하여 각 지점별 최적의 장기하천유출 모의결과를 도출하고자 한다. CoLM의 지표경계조건자료 구축을 위해서는 고해상도의 인공위성자료 및 지점측정자료를 수집하고, 기상입력자료 구축을 위해서는 기상청에서 제공하는 기상자료를 수집하여, 모형의 계산시간 및 지역예보모델에 많이 사용되고 있는 공간해상도를 고려한 모형의 입력자료는 30km 계산 격자망 자료로 구축될 예정이다. CoLM의 모의성능 평가 및 결과분석을 위해 총 30년(1990-2019) 기간에 대한 모의결과 중, 초기 10년은 초기조건 수립을 위한 안정화 기간으로 제외하고, 다음 10년(2000~2009)은 보정기간으로 설정하고 마지막 10년(2010~2019)은 검정기간으로 설정하여 지표수문모형의 장기하천유출모의 적용성이 평가될 예정이다. 본 논문의 결과는 향후 우리나라 주요 유역에 대해 이상기후로 인한 하천 수자원 및 수생태의 영향을 분석하고, 하천의 건천화 대책 수립 등에 대한 기초정보를 제공할 수 있을 것이라 기대한다.

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High-resolution medium-range streamflow prediction using distributed hydrological model WRF-Hydro and numerical weather forecast GDAPS (분포형 수문모형 WRF-Hydro와 기상수치예보모형 GDAPS를 활용한 고해상도 중기 유량 예측)

  • Kim, Sohyun;Kim, Bomi;Lee, Garim;Lee, Yaewon;Noh, Seong Jin
    • Journal of Korea Water Resources Association
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    • v.57 no.5
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    • pp.333-346
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    • 2024
  • High-resolution medium-range streamflow prediction is crucial for sustainable water quality and aquatic ecosystem management. For reliable medium-range streamflow predictions, it is necessary to understand the characteristics of forcings and to effectively utilize weather forecast data with low spatio-temporal resolutions. In this study, we presented a comparative analysis of medium-range streamflow predictions using the distributed hydrological model, WRF-Hydro, and the numerical weather forecast Global Data Assimilation and Prediction System (GDAPS) in the Geumho River basin, Korea. Multiple forcings, ground observations (AWS&ASOS), numerical weather forecast (GDAPS), and Global Land Data Assimilation System (GLDAS), were ingested to investigate the performance of streamflow predictions with highresolution WRF-Hydro configuration. In terms of the mean areal accumulated rainfall, GDAPS was overestimated by 36% to 234%, and GLDAS reanalysis data were overestimated by 80% to 153% compared to AWS&ASOS. The performance of streamflow predictions using AWS&ASOS resulted in KGE and NSE values of 0.6 or higher at the Kangchang station. Meanwhile, GDAPS-based streamflow predictions showed high variability, with KGE values ranging from 0.871 to -0.131 depending on the rainfall events. Although the peak flow error of GDAPS was larger or similar to that of GLDAS, the peak flow timing error of GDAPS was smaller than that of GLDAS. The average timing errors of AWS&ASOS, GDAPS, and GLDAS were 3.7 hours, 8.4 hours, and 70.1 hours, respectively. Medium-range streamflow predictions using GDAPS and high-resolution WRF-Hydro may provide useful information for water resources management especially in terms of occurrence and timing of peak flow albeit high uncertainty in flood magnitude.

A Study on the Seasonal Water Quality Characteristics and Suitability of Waterfront Activitiesin Waterfront Areas (친수지구의 계절별 수질특성과 친수활동의 적합성에 관한 연구)

  • Taek-Ho Kim;Yoon-Young Chang
    • Journal of Environmental Impact Assessment
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    • v.32 no.2
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    • pp.134-145
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    • 2023
  • Currently, the floodplains of major rivers are transforming into various types of waterfront spaces according to the increase in leisure activities and improved accessibility. In general, waterfront activities in river channels tend to be concentrated in summer, and the waterfront activities during this period directly affect water quality. Accordingly, it is necessary to accurately compare and evaluate the characteristics and water quality of waterfront activities during the period when waterfront activities are concentrated. In this study, the following research was conducted to compare and analyze the current status of waterfront activities of users of waterfront areas and the water quality of waterfront areas. First, three waterfront areas were selected for investigation using the information from the Ministry of Environment's water quality measurement network. Second, a survey was conducted on the satisfaction and types of waterfront activities targeting users of waterfront areas. Third, water quality grades were calculated based on monthly water quality measurement factors and compared. Fourth, statistical analysis (one-way analysis of variance) was conducted to see if there was a significant difference in water quality characteristics between periods of high waterfront activity and periods of low waterfront activity using water quality measurement data for the last 5 years. As a result of this analysis, the following conclusions were drawn in this study. First, the use of waterfront activities was investigated in the order of camping, water skiing, fishing, swimming, and rafting. Second, satisfaction factors for waterfront activities were investigated in the order of activity convenience, water quality, waterlandscape, transportation access convenience, and temperature. Third, it was found that satisfaction with water quality in waterfront areas was generally unsatisfactory regardless of the water quality grade presented by the competent authority. Fourth, as a result of comparing the water quality measurement network data of the Ministry of Environment by water quality grade, generally good grades were found, and in particular, there was a difference in grade frequency by season in the BOD category. Fifth, as a result of statistical analysis (one-way ANOVA) of water quality monitoring network data by season, there were statistically significant differences in COD, BOD, TP, and TOC except for DO. Considering the results of these studies, it is judged that it is necessary to prepare a comprehensive management system for water quality improvement in the waterfront zone and to improve water quality during periods of high waterfront activity, and to prepare a water quality forecasting system for waterfront areas in the future.