• 제목/요약/키워드: Irrigation requirement

검색결과 108건 처리시간 0.019초

기상예보를 고려한 관개용 저수지의 최적 조작 모형(III) -모형의 적용- (Optimal Reservoir Operation Models for Paddy Rice Irrigation with Weather Forecasts(Ill) -Model Application-)

  • 김병진;박승우;정하우
    • 한국농공학회지
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    • 제36권3호
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    • pp.47-59
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    • 1994
  • The irrigation reservoir operation models developed were tested with weather and field data, and the sensitivity of the water requirement deficiency indices(WRDI) were checked with different initial reservoir storages, irrigated areas, and other water uses from the reservoir storage. Seven reservoir release rules were applied to Yongseol Reservoir. Twenty year WRDIs were computed to check performances of those reservoir release rules. Mean WRDIs were 138, 198, 198, 200, 240, 344, and 1033mm for ROM, TOS, COS, CRR, MSC, FAS, and SRC, respectively. The results indicated that ROM contributes consistently to higher operation efficiencies of an irrigation reservoir. The test results of LFROM and SFROM showed that reservoir operation with the proposed optimization technique ROM would be better suited for an irrigation district than those with the other rules. And the proposed model could be used as a tool to improve reservoir operations.

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RCP 시나리오 기반 비관개기 강수량을 고려한 농업용 저수지의 용수공급 확률 분석 (Analysis of Water Supply Probability for Agricultural Reservoirs Considering Non-irrigation Period Precipitation using RCP Scenarios)

  • 방재홍;최진용;이상현
    • 한국농공학회논문집
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    • 제60권4호
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    • pp.63-72
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    • 2018
  • The main function of an agricultural reservoir is to supply irrigation water to paddy rice fields in South Korea. Therefore, the operation of a reservoir is significantly affected by the phenology of paddy rice. For example, the early stage of irrigation season, a lot of irrigation water is required for transplanting rice. Therefore, water storage in the reservoir before irrigation season can be a key factor for sustainable irrigation, and it becomes more important under climate change situation. In this study, we analyzed the climate change impacts on reservoir storage rate at the beginning of irrigation period and simulated the reservoir storage, runoff, and irrigation water requirement under RCP scenarios. Frequency analysis was conducted with simulation results to analyze water supply probabilities of reservoirs. Water supply probability was lower in RCP 8.5 scenario than in RCP 4.5 scenario because of low precipitation in the non-irrigation period. Study reservoirs are classified into 5 groups by water supply probability. Reservoirs in group 5 showed more than 85 percentage probabilities to be filled up from half-filled condition during the non-irrigation period, whereas group 1 showed less than 5 percentages. In conclusion, reservoir capacity to catchment area ratio mainly affected water supply probability. If the ratio was high, reservoirs tended to have a low possibility to supply enough irrigation water amount.

논의 영양물질 배출부하 특성과 수질정화 기능 분석 (Analysis of the Characteristics of Nutrients Loading and the Water Purification Function in the Paddy-fields)

  • 김현수;김진수;김영일;정병호
    • 한국관개배수논문집
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    • 제11권1호
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    • pp.36-44
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    • 2004
  • The objective of this study is to analyze the characteristics of the nutrients loading and the water purification function in the paddy-fields. This study was carried out based on the research data in the three case studies. 1. Irrigation requirement is m

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증발산량 산정기법에 따른 밭작물의 적정 관개량 모의 (Simulation of Optimum Irrigation Water of Upland Crops by Evapotranspiration Calculation Methods)

  • 김선주;이주용;김필식
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2003년도 학술발표논문집
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    • pp.271-274
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    • 2003
  • The objectives of this study are for finding an optimal calculation method comparing observed evapotranspiration with calculated evapotranspiration by Blaney-Criddle, Penman and Penman-Monteith method which are used in many place of Korea. And after appling optimal calculation method, optimal irrigation is presented through calculation of effective rainfall and requirement water considering characteristics of region, crop and soil.

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복합영농 관개지구의 배수량 모의 모형의 개발 (Surface Drainage Simulation Model for Irrigation Districts Composed of Paddy and Protected Cultivation)

  • 송정헌;강문성;송인홍;황순호;박지훈;안지현
    • 한국농공학회논문집
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    • 제55권3호
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    • pp.63-73
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    • 2013
  • The objectives of this study were to develop a hydrologic simulation model to estimate surface drainage for irrigation districts consisting of paddy and protected cultivation, and to evaluate the applicability of the developed model. The model consists of three sub-models; agricultural supply, paddy block drainage, and protected cultivation runoff. The model simulates daily total drainage as the sum of paddy field drainage, irrigation canal drainage, and protected cultivation runoff at the outlets of the irrigation districts. The agricultural supply sub-model was formulated considering crop water requirement for growing seasons and agricultural water management loss. Agricultural supply was calculated for use as input data for the paddy block sub-model. The paddy block drainage sub-model simulates paddy field drainage based on water balance, and irrigation canal drainage as a fraction of agricultural supply. Protected cultivation runoff is calculated based on NRCS (Natural Resources Conservation Service) curve number method. The Idong reservoir irrigation district was selected for surface drainage monitoring and model verification. The parameters of model were calibrated using a trial and error technique, and validated with the measured data from the study site. The model can be a useful tool to estimate surface drainage for irrigated districts consisting of paddy and protected cultivation.

관개기 대구획 광역논에서의 오염부하 원단위 (Unit Loads of Pollutants in a Paddy Fields Area with Large-Scaled Plots during Irrigation Seasons)

  • 오승영;김진수;김규성;김선종;윤춘경
    • 한국농공학회지
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    • 제44권2호
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    • pp.136-147
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    • 2002
  • Characteristics of unit loads of pollutants were investigated at a paddy fields area(Soro-ri) with large-scaled plots on loam soil during irrigation seasons of 1999 ∼2000. The average irrigation requirement of experimental paddy area are estimated at over 3,000 mm. The unit loads of pollutants in paddy fields area are determined by subtracting irrigation water load from outflow load (percolated and surface outflow loads). Surface outflow load in rainy days was calculated using the relationships of discharge and load, which are grouped into fertilizing and non-fertilizing periods. The ratios of the surface outflow load in rainy days to the total surface outflow load are 16.4% for T-N, 26.8% for T-P, and 23.3% far CODc,. The unit loads of pollutants show month-to-month and year-to-year variations, and monthly unit load of pollutants can show negative values, indicating that the paddy area acts as the pollutants sink. The average unit loads of the pollutants during irrigation seasons were estimated at 18.2 kg/ha fur T-N, 0.31 kg/ha for T-P, and 43.3 kg/ha for CODc,, which are smaller than the reported values for Kosei area in Japan.

레질리언스 지표를 이용한 저수지 수혜구역의 전작농지 용수공급 안정성 평가 (Evaluation of Water Supply Stability for Upland Crop in Reservoir Irrigation Districts Using Resilience Indexes)

  • 박진석;장성주;이혁진;신형진;정수;송인홍
    • 한국농공학회논문집
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    • 제66권1호
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    • pp.25-37
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    • 2024
  • As the agricultural land use shifts from paddy to upland, ensuring reservoir water supply stability for upland crop irrigation becomes essential. The objectives of this study were to estimate the irrigation water requirements considering the upland irrigation scenario and to evaluate the reliability of the water supply from the agricultural reservoir using resilience indexes. Two study sites, Sinheung and Hwajeong, were selected, and soybean and red peppers, the most water-intensive crops, were selected as study crops, respectively. For the irrigation scenario, two irrigation methods of traditional scheduling (which irrigates all sites at once) and rotational scheduling (which distributes irrigation by districts), along with the upland conversion rate, were considered. The net irrigation requirement was estimated through a water balance analysis. The stability of the reservoir was evaluated using resilience indexes based on the simulated 10-years reservoir water levels and drought criterion. Overall, the water supply of the reservoir was evaluated as stable during the simulated 10 years, except for the one year. Compared to the two irrigation methods, rotational scheduling resulted in lower irrigation water usage in both sites, with reductions of 1.6%, and 0.3%, respectively. As the upland conversion rate increases, the water deficit could be intensified in Hwajeong with a conversion rate exceeding 50%, showing the number of deficit(ND) over the one and a rapid increase in the deficit ratio(DR). It was confirmed that the reservoir operation criteria can be enhanced by incorporating resilience indicators along with crop growth information, thus, this will be a further study.

라이시미터 조건에서 토성이 벼의 생육 및 논토양의 지하삼투수량에 미치는 영향 (Effect of Soil Texture on Rice Growth and Paddy Soil Percolation under Lysimeter Condition)

  • 채제천;김성원
    • 한국작물학회지
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    • 제46권3호
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    • pp.236-240
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    • 2001
  • 논토양의 토성에 따른 벼의 수량, 관개용수량 및 지하삼투수량의 차이를 구명코자 사양토, 식양토, 식토 등 3종류의 토성에서 1999년과 2000년 라이시미터(lysimeter) 조건에서 실험한 결과는 다음과 같다. 1. 벼의 초장과 분얼 및 쌀 수량은 토성 처리간 유의한 차이가 없었다. 2. 벼 생육기간 중 총관개용수량은 1년차에는 식양토, 사양토, 식토 순으로 각각 3,306, 2,650, 2,002 l/$m^2$ 이었고 2년차에는 사양토, 식양토, 식토 순으로 각각 5,281, 4,984, 3,968 l/$m^2$이었다. 3.벼 재배기간 중 총지하삼투수량은 1년차에는 식양토, 사양토, 식토가 각각 2,141, 1,228, 862 l/$m^2$ 이었고, 2년차에는 사양토, 식양토, 식토에서 각각 4,448, 3,833, 2,925 l/$m^2$이었다. 4. 지표면하 10cm까지의 깊이에 분포하는 벼 뿌리의 비율은 사양토 56.0%, 식양토 61.4%, 식토 72.0%로 식토일수록 표층부 분포 비율이 높았다. 5. 논토양에서 지하삼투수량은 토성의 영향도 있으나 토양 중 벼 뿌리 생장량의 영향도 있어서, 뿌리 생장량이 많았던 처리구의 지하삼투수량이 증가하는 것으로 나타났다.

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WRF 기상자료의 토양수분 모형 적용을 통한 밭 토양수분 및 필요수량 산정 (Estimation of Soil Moisture and Irrigation Requirement of Upland using Soil Moisture Model applied WRF Meteorological Data)

  • 홍민기;이상현;최진용;이성학;이승재
    • 한국농공학회논문집
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    • 제57권6호
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    • pp.173-183
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    • 2015
  • The aim of this study was to develop a soil moisture simulation model equipped with meteorological data enhanced by WRF (Weather Research and Forecast) model, and this soil moisture model was applied for quantifying soil moisture content and irrigation requirement. The WRF model can provide grid based meteorological data at various resolutions. For applicability assessment, comparative analyses were conducted using WRF data and weather data obtained from weather station located close to test bed. Water balance of each upland grid was assessed for soils represented with four layers. The soil moisture contents simulated using the soil moisture model were compared with observed data to evaluate the capacity of the model qualitatively and quantitatively with performance statistics such as correlation coefficient (R), coefficient of determination (R2) and root mean squared error (RMSE). As a result, R is 0.76, $R^2$ is 0.58 and RMSE 5.45 mm in soil layer 1 and R 0.61, $R^2$ 0.37 and RMSE 6.73 mm in soil layer 2 and R 0.52, $R^2$ 0.27 and RMSE 8.64 mm in soil layer 3 and R 0.68, $R^2$ 0.45 and RMSE 5.29 mm in soil layer 4. The estimated soil moisture contents and irrigation requirements of each soil layer showed spatiotemporally varied distributions depending on weather and soil texture data incorporated. The estimated soil moisture contents using weather station data showed uniform distribution about all grids. However the estimated soil moisture contents from WRF data showed spatially varied distribution. Also, the estimated irrigation requirements applied WRF data showed spatial variabilities reflecting regional differences of weather conditions.