• 제목/요약/키워드: Soil water balance model

검색결과 130건 처리시간 0.034초

토양-식생-대기 이송모형내의 육지수문모의 개선 (Improvements to the Terrestrial Hydrologic Scheme in a Soil-Vegetation-Atmosphere Transfer Model)

  • 최현일;지홍기;김응석
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2009년도 학술발표회 초록집
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    • pp.529-534
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    • 2009
  • Climate models, both global and regional, have increased in sophistication and are being run at increasingly higher resolutions. The Land Surface Models (LSMs) coupled to these climate models have evolved from simple bucket models to sophisticated Soil-Vegetation-Atmosphere Transfer (SVAT) schemes needed to support complex linkages and processes. However, some underpinnings of terrestrial hydrologic parameterizations so crucial in the predictions of surface water and energy fluxes cause model errors that often manifest as non-linear drifts in the dynamic response of land surface processes. This requires the improved parameterizations of key processes for the terrestrial hydrologic scheme to improve the model predictability in surface water and energy fluxes. The Common Land Model (CLM), one of state-of-the-art LSMs, is the land component of the Community Climate System Model (CCSM). However, CLM also has energy and water biases resulting from deficiencies in some parameterizations related to hydrological processes. This research presents the implementation of a selected set of parameterizations and their effects on the runoff prediction. The modifications consist of new parameterizations for soil hydraulic conductivity, water table depth, frozen soil, soil water availability, and topographically controlled baseflow. The results from a set of offline simulations are compared with observed data to assess the performance of the new model. It is expected that the advanced terrestrial hydrologic scheme coupled to the current CLM can improve model predictability for better prediction of runoff that has a large impact on the surface water and energy balance crucial to climate variability and change studies.

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격자기반의 토양수분추적표형 개발 : 보청천 유역 사례연구 (Development of GRld-eased Soil MOsture Routing Model (GRISMORM) Applied to Bocheongchun Watershed)

  • 김성준;채효석
    • Spatial Information Research
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    • 제7권1호
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    • pp.39-48
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    • 1999
  • 격자 물수지 기법을 이용하여 일단위 토양수분변화를 추적할 수 있는 분포형 토양수분추적모형을 개발하였다. 본 모형은 C-언어로 구성하여 다양한 GIS 소프트웨어들을 수용할 수 있도록 유연성을 확보하였다. 전처리 과정으로서 래스터 GIS 소프트웨어인 GRASS를 이용하여 모형에 필요한 자료를 준비하고 후처리과정으로서 모형의 결과를 GRASS상에서 도시할 수 있도록 구성하였다. 개발된 모형의 적용성을 검토하기 위하여 보청천 유역의 일부인 이평교 유역(75.6㎢)을 대상으로 이평교 지점에서의 실측 일유출량과 모형에 의한 모의발생치를 비교하였으며, 출력결과로서 월별로 정리된 토양수분 분포도를 GRASS상에 작성하여 예시하였다.

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간척지 밭작물의 관개용수량 추정을 위한 토양염분예측모형 개발 (Soil Salt Prediction Modeling for the Estimation of Irrigation Water Requirements for Dry Field Crops in Reclaimed Tidelands)

  • 손재권;구자웅;최진규
    • 한국농공학회지
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    • 제36권2호
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    • pp.96-110
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    • 1994
  • The purpose of this study is to develop soil salt prediction model for the estimation of irrigation water requirements for dry field crops in reclaimed tidelands. The simulation model based on water balance equation, salt balance equation, and salt storage equation was developed for daily prediction of sa]t concentration in root zone. The data obtained from field measurement during the growing period of tomato were used to evaluate the applicability of this model. The results of this study are summarized as follows: 1.The optimum irrigation point which maximizes the crop yield in reclaimed tidelands of silt loam soil while maintaining the salt concentration within the tolerance level, ws found to be pF 1.6, and total irrigation requirement after transplanting was 602mm(6.7 mm/day)for tomato. 2.When the irrigation point was pF 1.6, the deviation between predicted and measured salt concentration was less than 4 % at the significance level of 1 7% 3.Since the deviations between predicted and measured values data decrease as the amount of irrigation water increases, the proposed model appear to be more suitable for use in reclaimed tidelands. 4.The amount of irrigation water estimated by the simulation model was 7.2mm/day in the average for cultivating tomato at the optimum irrigation point of pF 1.6.The simulation model proposed in this study can be generalized by applying it to other crops. This, model, also, could be further improved and extended to estimate desalinization effects in reclaimed tidelands by including meteorological effect, capillary phenomenon, and infiltration.

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韓國河川의 月 流出量 推定을 위한 地域化 回歸模型 (Regionalized Regression Model for Monthly Streamflow in Korean Watersheds)

  • 김태철;박성우
    • 한국농공학회지
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    • 제26권2호
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    • pp.106-124
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    • 1984
  • Monthly streanflow of watersheds is one of the most important elements for the planning, design, and management of water resources development projects, e.g., determination of storage requirement of reservoirs and control of release-water in lowflow rivers. Modeling of longterm runoff is theoretically based on water-balance analysis for a certain time interval. The effect of the casual factors of rainfall, evaporation, and soil-moisture storage on streamflow might be explained by multiple regression analysis. Using the basic concepts of water-balance and regression analysis, it was possible to develop a generalized model called the Regionalized Regression Model for Monthly Streamflow in Korean Watersheds. Based on model verification, it is felt that the model can be reliably applied to any proposed station in Korean watersheds to estimate monthly streamflow for the planning, design, and management of water resources development projects, especially those involving irrigation. Modeling processes and properties are summarized as follows; 1. From a simplified equation of water-balance on a watershed a regression model for monthly streamflow using the variables of rainfall, pan evaporation, and previous-month streamflow was formulated. 2. The hydrologic response of a watershed was represented lumpedly, qualitatively, and deductively using the regression coefficients of the water-balance regression model. 3. Regionalization was carried out to classify 33 watersheds on the basis of similarity through cluster analysis and resulted in 4 regional groups. 4. Prediction equations for the regional coefficients were derived from the stepwise regression analysis of watershed characteristics. It was also possible to explain geographic influences on streamflow through those prediction equations. 5. A model requiring the simple input of the data for rainfall, pan evaporation, and geographic factors was developed to estimate monthly streamflow at ungaged stations. The results of evaluating the performance of the model generally satisfactory.

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Effect of the climate change on groundwater recharging in Bangga watershed, Central Sulawesi, Indonesia

  • Sutapa, I Wayan
    • Environmental Engineering Research
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    • 제22권1호
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    • pp.87-94
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    • 2017
  • This study was conducted to determine the effect of the climate change to the level of groundwater recharging. This research was conducted on the watershed of Bangga by using the Soil Water Balance of MockWyn-UB model. Input data compose of evapotranspiration, monthly rainfall, watershed area, canopy interception, heavy rain factor and the influence of climate change factors (rainfall and temperature). The conclusion of this study indicates that there is a decreasing trend in annual groundwater recharge observed from 1995 to 2011. The amount of groundwater recharge varied linearly with monthly rainfall and between 3% to 25% of the rainfall. This result implies that rain contributed more than groundwater recharge to runoff and evaporation and the groundwater recharge and Bangga River discharge depends largely on the rainfall. In order to increase the groundwater recharge in the study area, reforestation programmes should be intensified.

소유역 지표유출의 공간적 해석을 위한 지리정보시스템의 응용모형(I) -격자 물수지 모형의 개발 및 적용- (GIS Application Model for Spatial Simulation of Surface Runoff from a Small Watershed(I))

  • 김대식;정하우
    • 한국농공학회지
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    • 제37권3_4호
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    • pp.23-33
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    • 1995
  • Geographic data which are difficult to handle by the characteristics of spatial variation and variety turned into a possibility to analyze with tlie computer-aided digital map and the use of Geographic Information System(GIS). The purpose of this study is to develop and apply a GIS application model (GISCELWAB) for the spatial simulation of surface runoff from a small watershed. This paper discribes the modeling procedure and the applicability of the cell water balance model (CELWAB) which calculates the water balance of a cell and simulates surface runoff of watershed simultaneously by the interaction of cells. The cell water balance model was developed to simulate the temporal and spatial storage depth and surface runoff of a watershed. The CELWAB model was constituted by Inflow-Outflow Calculator (JOC) which was developed to connect cell-to-cell transport mechanism automatically in this study. The CELWAB model requests detail data for each component of a cell hydrologic process. In this study, therefore, BANWOL watershed which have available field data was selected, and sensitivity for several model parameters was analyzed. The simulated results of surface runoff agreed well with the observed data for the rising phase of hydrograph except the recession phase. Each mean of relative errors for peak discharge and peak time was 0.21% and2.1 1% respectively. In sensitivity analysis of CELWAB , antecedent soil moisture condition(AMC) affected most largely the model.

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다중 덮개시스템의 모세관 방벽 효과 평가 (Evaluation of Capillary Barrier Effect of Multi-layer Cover System)

  • 이정환;조현진;정재열;정해룡;윤정현
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제21권1호
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    • pp.1-5
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    • 2016
  • Capillary barriers, consisting of relatively fine-over-coarse materials, have been suggested as an alternative to traditional compacted soil covers. So, We were analysed to capillary barrier effect according to five cases of multi-layer cover systems. Water balance simulation was conducted with unsaturated flow model HELP to assess unsaturated hydraulic parameters such as hydraulic conductivity, climate affecting the performance of capillary barriers. Simulation were conducted for 5 Cases in the Ulsan area. Result of simulation indicated that three cases was formed unsaturated condition and capillary barrier effect.

위성기반 증발산량 및 토양수분량 산정 국내 연구동향 (Research Status of Satellite-based Evapotranspiration and Soil Moisture Estimations in South Korea)

  • 최가영;조영현
    • 대한원격탐사학회지
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    • 제38권6_1호
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    • pp.1141-1180
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    • 2022
  • 최근 수문 및 수자원 분야에서 위성영상의 활용성이 높아짐에 따라 관련 전용 위성 개발연구와 연계하여 위성을 활용한 증발산량과 토양수분량 산정 연구의 필요성이 강조되고 있다. 본 연구에서는 이러한 위성을 기반으로 증발산량 및 토양수분량의 국내 연구현황과 그 산정 방법론을 조사하여 현재까지의 연구동향을 파악하고자 하였다. 국내 연구현황을 세부 방법론 별로 살펴본 결과 일반적으로 증발산량의 경우는 Surface Energy Balance Algorithm for Land (SEBAL), Mapping Evapotranspiration with Internalized Calibration (METRIC)과 같은 에너지수지 기반 모형과 Penman-Monteith (PM) 및 Priestley-Taylor (PT) 산출식을 기반으로 산정되었으며, 토양수분량의 경우 능동형(AMSR-E, AMSR2, MIRAS, SMAP) 및 수동형(ASCAT, SAR)와 같은 마이크로파 센서를 통한 산정이 주를 이루었다. 통계적 측면에서는 증발산량 및 토양수분량 공통적으로 회귀식 및 인공지능을 이용한 산출사례를 찾을 수 있었다. 또한 위성기반 자료들을 이용한 Evaporative Stress Index (ESI), Temperature-Vegetation Dryness Index (TVDI), Soil Moisture Deficit Index (SMDI) 등의 다양한 지표를 산정하여 가뭄 특성파악에 적용한 연구 사례도 다수 있었으며, 지표모형(Land Surface Model, LSM)을 기반으로 하여 위성 다중센서에서 얻을 수 있는 주요 자료들을 활용해 증발산량과 토양수분량의 수문순환인자를 산출하기도 하였다. 본 논문에서는 이렇게 기존 연구사례 조사 및 내용파악 과정을 통해 위성을 활용한 주요 세부 방법론을 비교·검토 제시함으로써 관련 연구분야 기준 참고자료로의 활용 및 향후 위성기반 관련 수문순환 자료 산출 고도화 연구의 초석을 다지고자 한다.

개념적인 토양수분수지 모형을 이용한 Horton 지수의 재논의 (Revisiting Horton Index Using a Conceptual Soil Water Balance Model)

  • 최대규;김상단
    • 대한토목학회논문집
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    • 제30권5B호
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    • pp.471-477
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    • 2010
  • 본 연구에서는 개념적인 토양수분수지 모형을 구성하여 유역에서의 물의 기화량과 유역의 습윤량의 비인 Horton 지수의 변동성을 살펴보고 있다. 제안된 모형으로부터 다양한 수문기상학적 변수들 및 유역 특성변수를 반영한 토양수분 확률밀도함수가 유도되며, 강수현상을 구성하는 두 가지 주요 인자인 강수발생빈도와 우기일의 평균 강수량의 변화에 따른 Horton지수의 민감도가 탐색된다. 수치모의결과를 통하여 Horton 지수는 강수량의 연간변동성보다 약 절반가량 낮았으며 둘 사이에는 강한 역 상관관계가 있음을 살펴볼 수 있다. 또한 강수량이 일정하더라도 강수발생빈도와 우기일 강수량 평균에 따라 서로 다른 Horton 지수를 가질 수 있음이 보여진다. 마지막으로 Horton 지수와 강수 프로세스를 구성하는 두 가지 주요 성분과는 어떤 한계점을 기준으로 비례/반비례 관계가 전환되는 비선형적인 관계를 가지고 있음을 살펴볼 수 있다.

격자기반의 토양수분추적에 의한 지하수함양량 추정기법 개발 (Assessment of Groundwater Recharge via Grid-based Soil Mosture Routing)

  • 김성준;채효석
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 1998년도 학술발표회 발표논문집
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    • pp.22-27
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    • 1998
  • A grid-based soil moisture routing model(GRISMORM) was developed to assess the information of groundwater recharge using spatial data such as Landsat TM and digital elevation model etc.. The model predicts the hydrologic components, that is, surface runoff, subsurface runoff, baseflow and evapotranspiration at each grid elements by grid-based water balance computation.

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