• 제목/요약/키워드: Water storage capacity

검색결과 625건 처리시간 0.029초

농업용 저수지에서의 농업용수 잠재능 평가 (Evaluation of Agricultural Water Supply Potential in Agricultural Reservoirs)

  • 김진수;이재용;이정범;송철민;박지성
    • 한국농공학회논문집
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    • 제58권2호
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    • pp.65-71
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    • 2016
  • The new concept of agricultural water supply potential, which is mean annual turnover rate times unit storage capacity, was introduced for agricultural reservoirs. We investigated characteristics of mean annual turnover rate and unit storage capacity for agricultural reservoirs with storage capacity of over $1million\;m^3$. The curve of agricultural water supply potential represents change in mean annul turnover rate according to change in unit storage capacity. The mean annual turnover rate and unit storage capacity in the reservoirs with high minimum storage ratio are significantly higher than those in the reservoirs with low minimum storage ratio. Most of unstable water supply reservoirs showed low mean annual turnover rate or low unit storage capacity, indicating that mean annual turnover rate may be an index of stability degree for agricultural water use. The reservoirs with mean annual turnover rate of over 2 and unit storage capacity of over 0.8 m may be estimated as the stable water supply zone for 10 frequency dry year. The reservoirs with high agricultural water supply potential can belong to the wide range of stable water supply zone. The results suggest that relation between mean annual turnover rate and unit storage capacity may be used in evaluating stability degree for agricultural water supply in the reservoirs.

도시지역 CSOs 저감을 위한 저류조 및 이송관로의 최적 용량결정에 관한 연구 (Study on the determination of optimum size of storage tank and intercepting capacity for CSOs reduction in urban area)

  • 이관용;최원석;이용재;구원석;송창수
    • 상하수도학회지
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    • 제26권6호
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    • pp.735-745
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    • 2012
  • Storage method is one of major measures for reduction of CSOs pollutant loads and several projects have been done nationwide. But systematic analysis of intercepting capacity has not been studied to determine optimum size of storage facility. In this research, not only storage volume but also intercepting capacity which means flow capacity from intercepting facility to CSOs storage facility was studied and optimum sizing method for storage facility was proposed. The result shows that pollutants reduction efficiency can be increased significantly by increasing intercepting capacity and it might reduce storage volume and total construction costs. Intercepting capacity for the study area was evaluated and it was shown as equivalent to 83 % probability rainfall intensity.

제주도에 계획된 침투저류지의 수문학적 분석 사례 (A Hydrologic Analysis for the Infiltration Storages Planned on Jeju-do)

  • 이상호;이정민;강태욱;강신욱
    • 한국물환경학회지
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    • 제26권6호
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    • pp.1040-1048
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    • 2010
  • An infiltration storage can be installed as a method of reducing runoff from catchment and increasing stream flow during the dry period by recharging groundwater. However, there is no proper model and method that can be used to design storage capacity of an infiltration storage in Korea. The purpose of the study is to evaluate capacities of infiltration storages planned on Jeju-do in Korea by modifying Storm Water Management Model (SWMM). The basic equations for the infiltration storage are same as those of the infiltration trench used in MIDUSS. Infiltration rates of the infiltration storages were first measured by double ring infiltrometers, and then the modified model was applied to evaluate adequacy for the capacities of three infiltration storages planned on Jeju-do in Korea. The application results show that the two infiltration storages with higher infiltration rates have adequate capacities to infiltrate the total water inflow to the storages. However, the other infiltration storage with lower infiltration rates has not sufficient capacity to infiltrate the total water inflow to the storage and release occurs to the downstream region. The simulation model and method applied can be used for capacity evaluation of future infiltration storages on highly pervious areas in Jeju-do.

Analysis and Estimation of Reservoir Sedimentation Using Remote Sensing and GIS

  • Sungmin Cho
    • International Journal of Internet, Broadcasting and Communication
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    • 제15권4호
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    • pp.199-204
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    • 2023
  • Periodic assessment of reservoir capacity is essential for better water resources management and planning for the future water use. Reservoirs and water storage structures raised on the rivers are subjected to sedimentation and he sedimentation is caused by deposition of eroded sediment particles carried by the streams. Knowledge of reservoir sedimentation is important to estimate avaliable storage capacity for optimum reservoir operation and scheduling water release. In recent years, remote sensing and GIS techniques have emerged as an important tool in carrying out reservoir capacity analysis and water management. The reduction in storage capacity as compared to the original capacity at the time of reservoir impounding is indicative of sediment deposition. In this study, the application of GIS and remote sensing techniques were applied to assess the sediment deposition, losses in the reservoir storage and the revised cumulative capacity. Satellite images covering Pyodongdong reservoir were analyzed using Erdas Imagine and ArcGIS softwares.Cumulative capacities at different levels were also calculated and we estimated that the revised live storage was 84.2Mft3 in 2021 and 64.3Mft3 in 2022 while the original capacity was 22.8 and 53.6Mft3 in 2021 and 2022.

활엽수 낙엽의 수분저류 특성에 대한 실험적 분석 (Experimental Analysis of Water Retention Characteristics in the Litter of Different Deciduous Trees)

  • ;최형태;이은재;임상준
    • 한국환경복원기술학회지
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    • 제19권2호
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    • pp.83-93
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    • 2016
  • This study purposed to examine the water retention capacity of floor litter in deciduous forests. Water holding capacity(WHC) and interception storage capacity of Alnus hirsuta Turcz. ex Rupr., Quercus acutissima, Quercus mongolica litters were experimentally estimated. Physical characteristics of litters were also obtained to understand the relationships between water-retention capacity and litter characteristics. Experiments showed that WHC increases with specific volume of litter, varying 244.4% to 416.8% of its dry mass. Interception storage have estimated with rainfall simulation experiments. Maximum interception storage ($C_{max}$) and minimum interception storage ($C_{min}$) of litters were 220% and 138% of dry mass in Alnus hirsuta Turcz. ex Rupr., 218% and 137% in Quercus acutissima, and 240% and 156% in Quercus mongolica. Both $C_{max}$ and $C_{min}$ increased linearly with litter mass, and the values of $C_{min}$ in broadleaf litters have also linear relation to leaf area.

지피상태(地被狀態)에 따른 임지(林地)의 수저유(水貯留) 특성(特性)(I) (Water Storage Characteristics of Surface Soil by the Different Forest Floor Conditions (I))

  • 이헌호;이창우
    • 한국산림과학회지
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    • 제83권3호
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    • pp.391-399
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    • 1994
  • 임지(林地)의 지피상태별(地被狀態別) 침투능(侵透能)을 조사, 분석하여 임지의 수저유(水貯留) 특성(特性)을 밝히고, 임지의 수보전기능(水保全機能)을 계량화(計量化)하기 위해 경북(慶北) 경주군(慶州郡) 내남면(內南面) 용장리(茸長里) 소재(所在) 영남대학교(嶺南大學校) 농축산대학(農畜産大學) 부속(附屬) 연습림(演習林)에서 1993년(年) 6월(月)부터 9월(月)에 걸쳐 수행한 연구결과는 다음과 같다. 1. 지피상태에 따른 임지 표층 (0~20cm)의 침투능은 참나무림지 > $A_o$층을 제거 한 참나무림지 > $A_o$층을 제거한 소나무림지>소나무림지>임간라지(林間裸地)>초지(草地)의 크기 순위였다. 2. 강우강도(降雨强度)의 증대에 따른 지피상대별 침투능의 순향(順向)은 큰 변화가 없었고, 침투능의 절대량(絶對量)은 증가하였다. 3. 침투능과 그 영향인자들과의 상관관계(相關關係)에 있어 서 침투능은 토양경도(土壤硬度) 및 전공극량(全孔隙量)과 고도(高度)의 상관이 있었다. 4. Horton의 침투식(侵透式) 모형(模型)에 근거한 침투방정식(侵透方程式)을 지피상태별로 각각 추정(推定)할 수 있었다. 5. 전공극과 토양경도를 이용하여 나타낸 침투능으로 임지의 수저류량 추정모델을 산출(算出)할 수 있었다. 본 연구에서는 침투능이 산지지피상태에 따라 차이를 보이고 있음을 밝혔고, 침투능에 영향을 미치는 주요인자를 구명함과 동시에 추정식을 산출하였다. 이 결과로 산지의 수원함양기능의 계량화에 접근할 수 있었으며 또한 산지의 효율적인 수자원 관리를 위한 대책수립에 도움을 줄 것으로 기대된다.

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농업용 저수지 설계를 위한 저수량 최적화 모형의 개발 (Development of the Optimal Reservoir Storage Determination Model for Supplying Rural Water)

  • 정하우;박태선;최진용
    • 한국농공학회지
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    • 제40권2호
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    • pp.69-80
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    • 1998
  • The optimal reservoir storage capacity is needed to be determined at the stage of reservoir planning. The reservoir storage capacity should be based on water balance between demand and supply, and meet the water deficity during the growing season. However, the optimal reservoir storage capacity should be determined considering benefit-cost analysis for the project. In this study, Two models are developed. The one is the RSOM(Reservoir Storage Optimization Model), that is consisted by three submodels, MROPER (Modified Reservoir OPERation model), RESICO(REservoir SIze and the construction COst computation) model. And the other is the BECA(BEnefit-Cost Anaysis) model. For model application, three districts, Chungha, Ipsil and Edong were selected. The relative difference of B/C ratio between project planning data and estimation by RSOM is 17.9, 15.0 and 7.3% respectively, which may be applicable for water resources development feasibility planning.

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농업용 저수지 관개 취약성 특성 곡선 산정 (Evaluation of Irrigation Vulnerability Characteristic Curves in Agricultural Reservoir)

  • 남원호;김태곤;최진용;김한중
    • 한국농공학회논문집
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    • 제54권6호
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    • pp.39-44
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    • 2012
  • Water supply capacity and operational capability in agricultural reservoirs are expressed differently in the limited storage due to seasonal and local variation of precipitation. Since agricultural water supply and demand basically assumes the uncertainty of hydrological phenomena, it is necessary to improve probabilistic approach for potential risk assessment of water supply capacity in reservoir for enhanced operational storage management. Here, it was introduced the irrigation vulnerability characteristic curves to represent the water supply capacity corresponding to probability distribution of the water demand from the paddy field and water supply in agricultural reservoir. Irrigation vulnerability probability was formulated using reliability analysis method based on water supply and demand probability distribution. The lower duration of irrigation vulnerability probability defined as the time period requiring intensive water management, and it will be considered to assessment tools as a risk mitigated water supply planning in decision making with a limited reservoir storage.

소규모 댐의 효과적 운영을 위한 저수관리 기법 개발 (Development of Storage Management Method for Effective Operation of Small Dams)

  • 김필식;김선주
    • 한국농공학회논문집
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    • 제48권2호
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    • pp.27-35
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    • 2006
  • Large dams are managed with operation standard and flood forecasting systems, while small dams do not have management method generally. Shortage of water resources and natural disasters due to drought and flood raised public concerns for management of small dams. Most of small dams are irrigation dams, which need diversified water uses. However, the lack of systematic management of small dams have caused serious water wastage and increased natural disasters. Storage management method and system were developed to solve these problems in small dams. The system was applied to Seongju dam for effective management. The storage management method was established considering hydrology simulation and statistical analysis using the system. This method can bring additional available water, even in the same conditions of the water demand and the supply conditions of watershed. It can improve the flood control capacity and water utilization efficiency by' the flexible operation of storage space.

심야전력을 이용한 Cascade Heat Pump Cycle의 운전결과 분석 (Analysis on Cascade Cycle Heat Pump Application as Night Storage Heater)

  • 정훈;황성욱;이철희
    • 한국기계기술학회지
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    • 제13권1호
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    • pp.113-118
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    • 2011
  • To analyze and verify the effect of replacing thermal storage heater by a cascade cycle heat pump using midnight electricity was installed and tested at a customer's house in Wonju, Korea. The electric night storage heater is consist of 30kW electric heater and 2,700 liters of thermal storage water tank to supply hot water for warming house floor. The power for electric heater was cut off and hot water was only generated by cascade cycle heat pump. Current thermal storage water tank was not eliminated and electric heater wiring was modified. Some operation logic of the heat pump was also modified for proper operation. The required capacity of the heat pump and hot water temperature for given warming condition were estimated. The estimated capacity of heat pump was about 19kW and estimated hot water temperature for proper heating was at least $75^{\circ}C$.