• 제목/요약/키워드: ground water hydrographs

검색결과 3건 처리시간 0.019초

통계분석을 이용한 지하수위 변동 특성 분류

  • 문상기;우남칠
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2001년도 추계학술발표회
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    • pp.155-159
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    • 2001
  • A study on multivariate statistical classification of ground water hydrographs was conducted. The vast data of national ground water monitoring network (78 sites of alluvium) were used. 6 factors were selected to classify the ground water level change. Factor analysis was proved to be useful tool for classifying vast hydrogeological data.

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지하수위 유형과 유역별 지하수 함양률의 관련성 연구 : 국가 지하수 관측망 자료의 분석 (A Study on the Relation between Types and Recharges of Groundwater : Analysis on National Groundwater Monitoring Network Data)

  • 문상기;우남칠;이광식
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제7권3호
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    • pp.45-59
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    • 2002
  • 본 연구의 목적은 국가 지하수 관측망 자료를 활용하여 우리나라 지하수위 변동 곡선의 유형을 구분하고, 각 유형별 함양률을 평가하여 지하수 함양률의 공간적 변동성을 규명하는 데 있다. 전국 지하수의 수위 변동 곡선을 구분하기 위하여 요인 분석 방법을 사용했으며 그 결과 총 5 개의 유형으로 구분하였다. 유형별 함양률은 95.44%의 신뢰도 수준에서 6.2 %(유형 I), 4.1 %(유형 II), 9.2 %(유형 III), 5.8 %(유형 IV), 15.3 %(유형 V)로 추정되었으며 한 유형에서도 관측 지점별로 약 6 %의 변화폭을 보였다. 지하수위 변동 곡선법을 이용하여 유역별로 지하수 함양률을 평가한 결과 한강과 금강 유역에서는 각각 강수량 대비 10.0 %, 8.3 %의 함양률을 보였고, 낙동강 및 영산강·섬진강 유역에서는 각각 6.1 %, 6.6 %의 함양률을 보였으며 기저유출법에 의해서 유역별로 함양률을 추정한 연구의 결과와 유사하게 나타났다 따라서 본 연구를 통하여 지하수 함양률이 수위 변동 곡선의 유형별 혹은 유역별로 변동성을 가짐을 규명할 수 있었다.

산지유역에 대한 USDAHL-74 유역수문모형의 장기유출 해석적용 (Application of SDAHL-74 Watershed Model to a Long Term Runoff Analysis in the Mountainous Watershed)

  • 권순국;고덕구
    • 한국농공학회지
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    • 제29권2호
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    • pp.53-63
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    • 1987
  • Due to their wide range of application, deterministic comprehensive hydrologic models using digital computers have been developed in all countries of the world and researches are being undertaken for their appropriate applications. The aim of this study has been to demonstrate the practical implementation of a physically based distributed hydrologic model, the USDAHL-74 model and to investigate its ability to simulate the long term estimate of water balance quantities in a Korean mountainous watershed. Application of the model to Dochuk watershed indicates the following results. 1.Since the USDAHL-74 model includes all the major components of the hydrologic cycle in agricultural watersheds, thus is comprehnsive, the model seems to have a wide range of application from the fact that simulation results obtained are not only runoff volumes m various time units but their spatial variation as well as even soil moisture within the watershed. 2.An approximate calibration to determine the parameter values in the model using various data obtained from D0chuk shed shows that the simulation error of yearly runoff volume is only 0.6 % and a correlation coefficient between observed daily runoff volume and simulated one is 0.91 in all calibrated period.3.As a verification test of the model, runoff volumes are simulated using 1986 year data without changing the parameter values determined by 1985 year data. The tests show that the USDAHL-74 model is a flexible tool and that realistic production to simulate the long term estimate of runoff in Korean mountainous watershed could be obtained using only a short period of calibration.4. Despite of the encouraging results, there still remain minor problems concerning the practical application of the model to improve the result of simulations. Some of these are the small descrepancies between observed and simulated daily runoff volume appeared in the vicinity of peaks and the recession of1 the daily hydrographs and the model performance for the frozen ground and melting process in the model. 5. Alough the use of parameter with physical significance and the ability to improve calibrations on the basis of physical reasoning represents advantages in the simulation for ungaged watersheds, further researches are needed to use the USDAHL-74 mode to simulate runoff in ungaged watersheds.

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