• 제목/요약/키워드: Drought storage

검색결과 159건 처리시간 0.026초

저수관리 시스템 개발 (Development of Re8ervoirs Storage Management System(RESTOMS))

  • 김현영;황철상;정건배;정종호유
    • 한국농공학회지
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    • 제35권2호
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    • pp.65-72
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    • 1993
  • When a drought occurs in an area irrigated by multi-reservoirs, onerating a single reservoir separately to control the reservoir' storage is not a desirable solution. In order to reduce damages effectively for the areal drought, the storage of the reservoirs within the areal boundary should be managed as a group. Storage management procedures are as follows : 1. Collecting and checking the present storages of all reservoirs 2. Computing the drought frequency and depth; and finally, establishing a suitable storage saving strategy based on the estimated drought depth. For the purpose of this storage management, the RESTOMS(Reservoirs Storage Management System) was developed and the system was composed of the PRIME computer and the ORACLE as a distributed database management system, which was the host computer of Rural Development Corporation and would be on-lined with the regional offices throughout the country. Reservoirs operated by Farm Land Improvment Association were comprised in the DB system. Using the RESTOMS, the drought frequencies and drought depths were calculated with respect to the reservoir storage records(1967 to 1992). It was obvious that the results were closely corresponding to the real drought records.

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저수용량을 고려한 가뭄지수 산정과 가뭄관리에 관한 연구 (A Study on the Index of Drought and Drought Management Considering Reservoir Storage)

  • 조홍제;박한기;김수현
    • 상하수도학회지
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    • 제12권4호
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    • pp.97-105
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    • 1998
  • The goal of the present research was to develop a mean to determine indices of drought warning and emergency necessary to manage drought and establish water supply contingency plan for the municipal and industrial water supply system in urban areas. To do this, we worked on the Sayun catchment which is the main water source of Ulsan and used measured hydrologic data (storage, inflow, supply, outflow) from 1980 to 1996. The indices of drought calculated by the method of Phillips drought index based only on monthly precipitation do not pertinently represent drought phenomena in case water supply is from dam or reservoir in an urban area. Therefor, we developed the drought index technique including inflow, storage, outflow and supply which are the chief factors of drought management. The result showed that the method of Phillips drought index considering the capacity of water supply was excellent when applied to practical drought phenomena.

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농업가뭄의 평가를 위한 가뭄지수의 적용성 분석

  • 박기욱;김진택;주욱종;이용직
    • 한국관개배수논문집
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    • 제13권1호
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    • pp.72-81
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    • 2006
  • The objictive of this study is to analyze regional drought using agricultural drought indicator. Toforecast and evaluate the drought, the drought indices for agriculture were applied. In the present drought preparedness plans of Ministry of Agriculture and Forestry (MAF), it is prescribed that the preparedness levels should be classified by considering the precipitation, reservoir storage, soil moisture in paddy and upland, and the growing status of crops. There are many drought index to analyze and evaluate the drought. However, these indices do not exactly explain all drought events. Thus, we select 4 drought indices to evaluate agricultural drought:reservoir storage index, 3-month delayed SPI, mean rainfall index, and dry day index. Using these ineices, six drought stages are classified. The results show that agricultural drought could be apprppriately analyzed and evaluated by agricultural drought stage and four drought indices.

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농업용 저수지 저수율을 이용한 충남지역 2015년 가뭄 분석 (Spatial and Temporal Analysis of Drought Using the Storage Data of Agricultural Reservoirs in Chungnam Province in 2015)

  • 김소래;장민원;김수진;배승종
    • 한국농공학회논문집
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    • 제59권2호
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    • pp.29-36
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    • 2017
  • The objective of this study was to analyze the temporal and spatial characteristics of agricultural drought by tracking the daily reservoir storage in Chungnam province. All daily records of the percent of reservoir storage from 2000 to 2015 were collected for 130 irrigation reservoirs from the RIMS (Rural Infrastructure Management System). The temporal change of province-wide average reservoir storage and the statistics showed that the annual average and minimum percent of reservoir storage in 2015 were extremely low like as those in the historical drought years of 2001 and 2012. The minimum reservoir storage on record was a 41 % at the end of September and remained far less than its historical average even until the end of the year. Furthermore, the annual average reservoir storage (68.3 %) recorded the lowest on record since 2000. In addition, about half of 130 major irrigation reservoirs in Chungnam fell into the risk of water shortage below 30 % full, and, in terms of annual minimum reservoir storage, the 79 reservoirs yielded lower storage in 2015 comparing with the measured in another drought year, 2001. On the other hand, irrigation reservoirs of comparatively worse storage condition revealed to be mostly located on the inside, such as Cheongyang-gun and Hongsung-gun. Conclusively, the low reservoir storage, still far below average even on December 2015, induced a serious concern about that more extreme drought would happen in the next spring.

가뭄 극복을 위한 댐의 비활용용량 활용 방안 연구 (On Utilization of Inactive Storage in Dam during Drought Period)

  • 주홍준;김덕환;김정욱;배영혜;김형수
    • 한국습지학회지
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    • 제20권4호
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    • pp.353-362
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    • 2018
  • 본 연구에서는 가뭄 극복을 위하여 댐의 비활용용량 구간에 있는 저수량의 활용을 제고할 수 있는 구조적인 방안을 마련하고자 한다. 댐에서의 비활용용량(inactive storage)은 비상용량(emergency storage)과 사수용량(dead storage)으로 구성되어 있으며, 비상용량은 가뭄과 같은 비상시에 활용가능 하도록 하고 있지만 사수용량은 퇴사가 진행되는 구간으로 가정하여 일반적으로 정상적인 이용이 불가능한 용량으로 정해져 있다. 그러나 본 연구에서는 극심한 가뭄시에 비상용량과 더불어 사수용량 일부를 활용할 수 있는 방안을 모색하였으며, 비상용량과 퇴사위(Sediment Level, SL) 위의 사수용량을 추가적으로 활용할 수 있다고 가정하였고, 이 구간을 '댐의 갈수용량'이라고 새롭게 명명하였다. 갈수용량의 산정을 위해서는 정확한 퇴사위 분석이 선행되어야하므로, 본 연구에서는 SMS의 RMA-2 및 SED-2D 모형을 이용하여 현재와 미래의 댐 저수지의 퇴사위를 산정하였으며, 추가 이용 가능한 용량을 고려한 뒤 최종적으로 갈수용량을 산정하였다. RMA-2 및 SED-2D 모형 구축을 위해 현재는 과거 관측 자료를 이용하였으며, 미래는 대표농도경로(Representative Concentration Pathways, RCP) 8.5 시나리오에 의해 미래 기후 인자를 예측하고 TANK 모형을 이용하여 댐 유입량을 결정한 뒤 미래 기간별 퇴사위를 예측하였다. 현재와 미래의 퇴사위를 바탕으로 갈수용량을 제시한 결과, 활용할 수 있는 갈수용량은 현재에 비해 감소되었으며 특히, 미래 기간이 진행될수록 활용할 수 있는 양이 점진적으로 감소하는 결과를 보였다. 이는, 기후 변화의 변동성이 증가하는 것에 기인하며, 미래에 활용할 수 있는 갈수용량의 증대를 위해 기후 적응 대책 및 퇴사량을 효율적으로 저감할 수 있는 연구가 추가로 필요할 것으로 판단된다.

Estimation of irrigation supply from agricultural reservoirs based on reservoir storage data

  • Kang, Hansol;An, Hyunuk;Lee, Kwangya
    • 농업과학연구
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    • 제46권4호
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    • pp.999-1006
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    • 2019
  • Recently, the quantitative management of agricultural water supply, which is the main source for water consumption in Korea, has become more important due to the effective water management organization of the Korean government. In this study, the estimation method for irrigation supply based on agricultural reservoir storage data was improved compared to previous research, in which drought year selection was unclear, and the outlier data for the rainfall-irrigation supply were not eliminated in the regression analysis. In this study, the drought year was selected by the ratio of annual precipitation to mean annual precipitation and the storage rate observed before the start of irrigation. The outlier data for the rainfall-irrigation supply were eliminated by the Grubbs & Beck test. The proposed method was applied to nine agricultural reservoirs for validation. As a result, the ratio of annual precipitation to mean annual precipitation is less than 53% and the storage rate observed before the start of irrigation is less than 55% it was judged to be the drought year. In addition, the drought supply factor, K, was found to be 0.70 on average, showing closer results to the observed reservoir rates. This shows that water management at the real is appling drought year practice. It was shown that the performance of the proposed method was satisfactory with NSE (Nash-Sutcliffe model efficiency coefficient) and R2 (coefficient of determiniation) except for a few cases.

농업가뭄 분석을 위한 농업가뭄평가.정보제공시스템 개발 (Development of Evaluation System for Agricultural Drought Management)

  • 박기욱;김진택;정병호
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2005년도 학술발표논문집
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    • pp.7-13
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    • 2005
  • There are two ways to mitigate the drought. One is the structural measures such as storage of irrigation water, development of emergency wells, etc. The other one is the nonstructural measures such as water saving management by the early warning system. To precast and evaluate the drought, we need to develop the drought indices for agriculture. In the present drought preparedness plans of Ministry of Agriculture and Forestry (MAF), it is prescribed that the preparedness levels should be classified by considering the precipitation, reservoir storage, soil moisture in paddy and upland, and the growing status of crops. However there are not clear quantitative criteria for consistent judgment. This shows that we have not selected and utilized the proper drought index for agriculture and we did not have the information system to calculate the drought indices periodically and warn the outbreak of the drought. The objectives of the study are to develope of Agricultural Drought Evaluation System and to evaluate this indices for current agricultural status using the system.

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SWSI에 기반한 금강권역 농업용 저수지의 수문학적 가뭄평가 (Hydrological Drought Assessment of Agricultural Reservoirs based on SWSI in Geum River Basin)

  • 안소라;박종윤;정인균;나상진;김성준
    • 한국농공학회논문집
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    • 제51권5호
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    • pp.35-49
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    • 2009
  • This study proposes a method to evaluate agricultural reservoirs drought by modifying SWSI (Surface Water Supply Index). The method was applied to Geum river basin and the results were represented as spatially distributed information. The SWSI evaluates hydrological drought of watershed unit by selectively applying one or all of the components of snowpack, precipitation, streamflow and reservoir storage. South Korea has 22 % of agricultural area, and rice paddy covers 64 % among them. Usually paddy fields scattered along stream are irrigated by so many small agricultural reservoirs. It is difficult to evaluate agriculture drought by the little information and large number of agricultural reservoirs. In this study, seven agricultural reservoirs over 10 million ton storage capacity were selected in Geum river basin, and the SWSI was evaluated for both upstream and downstream of the reservoirs using 16 years data (1991-2006). Using the results, multiple regression analyses with precipitation and reservoir storage as variables were conducted and the equations were applied to other watersheds. The spatial results by applying regression equations showed that the severe and moderate drought conditions of July and September in 1994, June in 1995, and May in 2001 were well expressed by the watershed unit.

관개저수지의 한발평가 및 예측모형(관개배수 \circled2) (Evaluation and Forecasting Model for State of Drought in the Irrigation Reservoir)

  • 이성희;이재면;김태철
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2000년도 학술발표회 발표논문집
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    • pp.187-192
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    • 2000
  • The severity of drought could be evaluated by the accumulative rainfall method, soil moisture condition method, storage ratio method, and water supply restriction intensity method, etc. The pattern of drought could be forecast with the most similar pattern of accumulative rainfall out of the file of past rainfall history. The information that how much rainfall should be expected to overcome the present drought could be obtained from the reservoir storage ratio and soil moisture condition.

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가뭄기간의 저수지 운영방안에 관한 연구 (The Study of Reservoir Operation for Drought Period)

  • 박기범;이순탁
    • 한국환경과학회지
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    • 제13권12호
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    • pp.1041-1048
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    • 2004
  • In this study the results of optimal water supply analysis by operating constraints of reservoirs during drought period are as follows. During drought period, water supply reliability is possible about $97\~61{\%}$ by CASE 1-CASE 5. Water supply reliability is possible about $97.3{\%}$ in case of the Andong dam and $87.7{\%}$ in case of the Imha dam by CASE 3. Also, under the constraints of CASE 4, water supply reliability is possible about $87.5{\%}$ in case of the Andong dam and $73.3{\%}$ in case of the Imha dam. The reason what low of available water supply ratio is decreased inflow of Imha dam. When compare standard deviation of average storage with standard deviation of storage, stable storage can be secured during successive drought period. And it also can minimize shortage of water during drought. therefore, it is impossible that reservoir supply sufficient water but change of operating condition is better than pervious on that followed by full reservoir level. It is need that the study for optimal water supply during drought period has to be continued.