• Title/Summary/Keyword: 둑높임 저수지

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Analysis of suppling instream flow in Imgo reservior under RCP 8.5 (RCP 8.5 시나리오에 의한 임고 저수지의 하천유지유량 공급량 분석)

  • Lee, Jae Nam;Noh, Jae Kyoung
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.632-632
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    • 2015
  • 기후변화로 정상적인 물 순환 체계가 변화되면서, 건천화로 하천의 정상정인 기능이 어렵게 될 것이다. 농업용 저수지의 둑 높이기 사업으로 수자원의 저류공간이 증가되었고, 확보된 수자원을 기후변화에 대응해 하천유지유량으로 활용 할 수 있게 되었다. 본 연구에서는 기후변화 시나리오 RCP 8.5를 기반으로 임고 저수지의 둑 높이기 사업 전과 후의 공급 가능한 하천유지유량을 평가하였다. 하천유지유량의 공급은 일별 일정량을 공급하도록 하여 이수안전도 90%를 만족하도록 설정하였고, 상시공급과 갈수시 공급으로 구분하여 분석한 결과는 다음과 같다. 첫째, 둑 높이기 사업 전에 하천유지유량의 공급 없이 용수공급 능력을 분석한 결과, 2025s기간, 2055s기간, 2085s기간의 이수안전도는 각각 100%, 93.3%, 96.7%로 분석되어 농업용수의 공급 능력은 충분한 것으로 분석되었다. 둘째, 미래 2025s기간, 2055s기간, 2085s기간에 대하여 둑 높이기 사업 전, 농업용수 공급과 함께 하천유지유량을 상시 공급하였을 경우에는 각각 일별로 3.7천$m^3$, 1천$m^3$, 1.2천$m^3$ 공급 가능하였고, 갈수시만 공급 하였을 경우에는 각각 일별로 7천$m^3$, 2.2천$m^3$, 3.5천$m^3$ 공급 가능한 것으로 분석되었다. 셋째, 미래 2025s기간, 2055s기간, 2085s기간에 대하여 둑 높이기 사업 후, 농업용수 공급과 함께 하천유지유량을 상시 공급하였을 경우에는 각각 일별로 10.5천$m^3$, 4.5천$m^3$, 7천$m^3$ 공급 가능하였고, 갈수시만 공급 하였을 경우에는 각각 일별로 16.6천$m^3$, 7천$m^3$, 12.2천$m^3$ 공급 가능한 것으로 분석되었다. 결론하여 농업용수 공급능력이 충분한 임고 저수지는 둑높이기 사업 후 확보된 수자원을 하천 유지유량으로 공급하면, 증고사업 전보다 상시공급일 경우에 2.8-5.8배, 갈수시 공급일 경우에 2.4-3.4배 많은 양을 공급 할 수 있는 것으로 나타났다.

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Evaluating Water Supply Capacity of Embankment Raised Reservoir on Climate Change (기후변화에 따른 둑높임 저수지의 용수공급능력 평가)

  • Lee, Jaenam;Noh, Jaekyoung
    • Journal of The Korean Society of Agricultural Engineers
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    • v.57 no.4
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    • pp.73-84
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    • 2015
  • An embankment raising project on 113 agricultural reservoirs in Korea was implemented in 2009 to increase water supply capacity for agricultural water and instream uses. This study evaluated the future water supply capacity of the Imgo reservoir at which the agricultural reservoir embankment raising project was completed, considering climate change scenarios. The height of the embankment of the reservoir was increased by 4.5 m, thereby increasing its total storage from 1,657.0 thousand to 3,179.5 thousand cubic meters. To simulate the reservoir water storage with respect to climate changes, two climate change scenarios, namely, RCP 4.5 and RCP 8.5 (in which greenhouse gas reduction policy was executed and not executed, respectively) were applied with bias correction for reflecting the climate characteristics of the target basin. The analysis result of the agricultural water supply capacity in the future, after the agricultural reservoir embankment raising project is implemented, revealed that the water supply reliability and the agricultural water supply increased, regardless of the climate change scenarios. By simulating the reservoir water storage considering the instream flow post completion of the embankment raising project, it was found that water shortage in the reservoir in the future is not likely to occur when it is supplied with an appropriate instream flow. The range of instream flow tends to decrease over time under RCP 8.5, in which the greenhouse gas reduction policy was not executed, and the restoration of reservoir storage was lower in this scenario than in RCP 4.5, in which greenhouse gas reduction policy was executed.

Application of DIROM Model for Water Balance Analysis of Consecutively Linked Reservoir System (이설쌓기 둑높임 저수지의 연계 물수지 분석을 위한 DIROM 모형의 적용성 평가)

  • Lee, Jeongeun;Choi, Jieun;Hwang, Syewoon
    • Journal of The Korean Society of Agricultural Engineers
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    • v.66 no.5
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    • pp.67-79
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    • 2024
  • Water balance analysis in heightened reservoirs, which have been raised to ensure a stable supply of irrigation water and secure water against floods and heavy rainfall, is essential for evaluating water supply capacity and reservoir maintenance. The consecutively linked reservoir system, which involves preserving the existing embankment while constructing a new one, affects the water balance between the existing and new reservoirs. This study aims to analyze the linked water balance between reservoirs in a consecutively linked reservoir system using the DIROM (Daily Irrigation Reservoir Operation Model) model. Surveys were conducted to investigate actual water use, and multiple water supply quantities were estimated based on these findings. Methods to supplement missing data and improve the limitations of simulated inflow were proposed and applied, and the performance of the daily storage simulation was evaluated. By supplementing the missing water use data, the NSE (Nash-Sutcliffe Efficiency) of the Sonhang reservoir storage rate simulation improved by approximately 30%. Additionally, result of using inflow coefficients significantly enhanced the simulation performance for the Sonhang2 and Sonhang reservoirs. This study confirms the necessity of incorporating appropriate inflow coefficients in reservoir design to overcome the model's tendency to overestimate inflow, highlighting the critical importance of quality control in observational data. The findings are expected to be useful for the design and analysis of future reservoir systems through embankment heightening.