• Title/Summary/Keyword: 수문량

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Effluent Characteristics of Nonpoint Source Pollutant Loads at Paddy Fields during Cropping Period (영농기 광역논으로부터 비점오염물질 유출 특성)

  • Han, Kuk-Heon;Kim, Jin-Ho;Yoon, Kwang-Sik;Cho, Jae-Young;Kim, Won-Il;Yun, Sun-Gang;Lee, Jeong-Taek
    • Korean Journal of Soil Science and Fertilizer
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    • v.40 no.1
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    • pp.18-24
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    • 2007
  • Paddy fields are apparently nonpoint source pollution and influence water environment. In order to improve water quality in rivers or lakes, to low nutrient load from paddy fields are required. To establish comprehensive plan to control agricultural non-point source pollution, it is imperative to get a quantitative evaluation on pollutants and pollution load from paddy fields. A field monitoring study was carried out to investigate the water balance and losses of nutrients from fields in Sumjin river basin. The size of paddy fields was 115 ha and the fields were irrigated from a pumping station. The observed total nitrogen loads from paddy fields were larger than those of the unit loads determined by Ministry of Environment data (MOE). It is because the nitrogen fertilization level at the studied field was higher than the recommended rate and the high irrigation and subsequent drainage amount. On the contrary, total phosphorus loads were less than those addressed by MOE since phosphorus fertilization level was lower than that of standard level. Therefore, it was found that fertilization, irrigation, and drainage management are key factors to determine nutrient losses from paddy fields. When the runoff losses of nutrients were compared to applied chemical fertilizer, it was found that 42 to 60% of nitrogen lost via runoff while runoff losses of phosphorus account for 1.3 to 7.6% of the total applied amount during the entire year.

Water shortage assessment by applying future climate change for boryeong dam using SWAT (SWAT을 이용한 기후변화에 따른 보령댐의 물부족 평가)

  • Kim, Won Jin;Jung, Chung Gil;Kim, Jin Uk;Kim, Seong Joon
    • Journal of Korea Water Resources Association
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    • v.51 no.12
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    • pp.1195-1205
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    • 2018
  • In the study, the water shortage of Boryeong Dam watershed ($163.6km^2$) was evaluated under future climate change scenario. The Soil and Water Assessment Tool (SWAT) was used considering future dam release derived from multiple linear regression (MLR) analysis. The SWAT was calibrated and verified by using daily observed dam inflow and storage for 12 years (2005 to 2016) with average Nash-Sutcliffe efficiency of 0.59 and 0.91 respectively. The monthly dam release by 12 years MLR showed coefficient of determination ($R^2$) of above 0.57. Among the 27 RCP 4.5 scenarios and 26 RCP 8.5 scenarios of GCM (General Circulation Model), the RCP 8.5 BCC-CSM1-1-M scenario was selected as future extreme drought scenario by analyzing SPI severity, duration, and the longest dry period. The scenario showed -23.6% change of yearly dam storage, and big changes of -34.0% and -24.1% for spring and winter dam storage during 2037~2047 period comparing with 2007~2016 period. Based on Runs theory of analyzing severity and magnitude, the future frequency of 5 to 10 years increased from 3 in 2007~2016 to 5 in 2037~2046 period. When considering the future shortened water shortage return period and the big decreases of winter and spring dam storage, a new dam operation rule from autumn is necessary for future possible water shortage condition.

Application of deep learning method for decision making support of dam release operation (댐 방류 의사결정지원을 위한 딥러닝 기법의 적용성 평가)

  • Jung, Sungho;Le, Xuan Hien;Kim, Yeonsu;Choi, Hyungu;Lee, Giha
    • Journal of Korea Water Resources Association
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    • v.54 no.spc1
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    • pp.1095-1105
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    • 2021
  • The advancement of dam operation is further required due to the upcoming rainy season, typhoons, or torrential rains. Besides, physical models based on specific rules may sometimes have limitations in controlling the release discharge of dam due to inherent uncertainty and complex factors. This study aims to forecast the water level of the nearest station to the dam multi-timestep-ahead and evaluate the availability when it makes a decision for a release discharge of dam based on LSTM (Long Short-Term Memory) of deep learning. The LSTM model was trained and tested on eight data sets with a 1-hour temporal resolution, including primary data used in the dam operation and downstream water level station data about 13 years (2009~2021). The trained model forecasted the water level time series divided by the six lead times: 1, 3, 6, 9, 12, 18-hours, and compared and analyzed with the observed data. As a result, the prediction results of the 1-hour ahead exhibited the best performance for all cases with an average accuracy of MAE of 0.01m, RMSE of 0.015 m, and NSE of 0.99, respectively. In addition, as the lead time increases, the predictive performance of the model tends to decrease slightly. The model may similarly estimate and reliably predicts the temporal pattern of the observed water level. Thus, it is judged that the LSTM model could produce predictive data by extracting the characteristics of complex hydrological non-linear data and can be used to determine the amount of release discharge from the dam when simulating the operation of the dam.

Development and assessment of pre-release discharge technology for response to flood on deteriorated reservoirs dealing with abnormal weather events (이상기후대비 노후저수지 홍수 대응을 위한 사전방류 기술개발 및 평가)

  • Moon, Soojin;Jeong, Changsam;Choi, Byounghan;Kim, Seungwook;Jang, Daewon
    • Journal of Korea Water Resources Association
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    • v.56 no.11
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    • pp.775-784
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    • 2023
  • With the increasing trend of extreme rainfall that exceeds the design frequency of man-made structures due to extreme weather, it is necessary to review the safety of agricultural reservoirs designed in the past. However, there are no local government-managed reservoirs (13,685) that can be discharged in an emergency, except for reservoirs over a certain size under the jurisdiction of the Korea Rural Affairs Corporation. In this case, it is important to quickly deploy a mobile siphon to the site for preliminary discharge, and this study evaluated the applicability of a mobile siphon with a diameter of 200 mm, a minimum water level difference of 6 m, 420 (m2/h), and 10,000 (m2/day), which can perform both preliminary and emergency discharge functions, to the Yugum Reservoir in Gyeongju City. The test bed, Yugum Reservoir, is a facility that was completed in 1945 and has been in use for about 78 years. According to the hydrological stability analysis, the lowest height of the current dam crest section is 27.15 (EL.m), which is 0.29m lower than the reviewed flood level of 27.44 (EL.m), indicating that there is a possibility of lunar flow through the embankment, and the headroom is insufficient by 1.72 m, so it was reviewed as not securing hydrological safety. The water level-volume curve was arbitrarily derived because it was difficult to clearly establish the water level-flow relationship curve of the reservoir since the water level-flow measurement was not carried out regularly, and based on the derived curve, the algorithm for operating small and medium-sized old reservoirs was developed to consider the pre-discharge time, the amount of spillway discharge, and to predict the reservoir lunar flow time according to the flood volume by frequency, thereby securing evacuation time in advance and reducing the risk of collapse. Based on one row of 200 mm diameter mobile siphons, the optimal pre-discharge time to secure evacuation time (about 1 hour) while maintaining 80% of the upper limit water level (about 30,000 m2) during a 30-year flood was analyzed to be 12 hours earlier. If the pre-discharge technology utilizing siphons for small and medium-sized old reservoirs and the algorithm for reservoir operation are implemented in advance in case of abnormal weather and the decision-making of managers is supported, it is possible to secure the safety of residents in the risk area of reservoir collapse, resolve the anxiety of residents through the establishment of a support system for evacuating residents, and reduce risk factors by providing risk avoidance measures in the event of a reservoir risk situation.

Estimation of Long-term Groundwater Recharge Considering Land-Cover Condition & Rainfall Condition (Focusing on Seogwipo) (토지피복 상태와 강수조건을 고려한 장기 지하수함양량 추정 (서귀포시 지역을 중심으로))

  • Ahn, Seungseop;Lee, Sangil;Oh, Younghun
    • Journal of the Korean GEO-environmental Society
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    • v.13 no.7
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    • pp.39-47
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    • 2012
  • Six land use data for a total of twenty five years were reviewed from 1975 to 2000 by dividing the period by 5-year unit; the land use variation was schematized; the watershed hydrological parameters were extracted by the representative rainfall years(maximum, average, driest year) by analyzing the recent thirty years'(from 1980 to 2010) climate data of the study region with SWAT model to investigate the effect of the precipitation change on the characteristics of groundwater recharge. In addition Markov Chain model was used to estimate the future land use; the predicted land use was applied to study the effect of the land use variation on the characteristics of groundwater recharge. For the research of this, long-term characteristics of groundwater recharge were estimated for the study region; the obtained results can be described as follows. The study region was divided into typical three area using SWAT model; yearly land use conditions were applied to the meteorological data of 1975 to 2010 and analyzed, producing the average rate of groundwater recharge of 30% for the applied period. This number is way lower than that of the earlier studies on the groundwater recharge for Jeju Island, which is 40-50%. Thirty percent (30%) is low considering the geological characteristics of Jeju, water-permeable vesicular strata, the reason of which must be the type of development is non-permeable paving.

Numerical Estimations of Nakdong River Flows Through Linking of Watershed and River Flow Models (유역 모형과 하천 모형의 연계를 통한 낙동강 본류 흐름 예측)

  • Kang, Hyeong-Sik;Jang, Jae-Ho;Ahn, Jong-Ho;Kim, Ik-Jae
    • Journal of Korea Water Resources Association
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    • v.44 no.7
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    • pp.577-590
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    • 2011
  • In this study, the watershed and water body models were linked for the simulation of the Nakding river flow. This is a pre-step study for the estimation of the effect of the flow and water quality on the climate change. For models of watershed and river flow, the SWAT and EFDC were used, respectively. The runoff discharge at each boundary points for the simulation of the river flow was provided from the drainage basin model. The calculated runoff discharge by the SWAT model was compared with the measured data of the Ministry of Environment at 13 locations along the Nakdong river and 30 locations along the tributary streams. The computed water discharge was shown to be similar with the measured data. For the model calibration and verification, % difference, NSE, and $R^2$ were computed. The computed % difference was within 15% except of a few points. The NSE and $R^2$ were also within a fair level. The Nakdong river flow of 2007 was simulated by using the EFDC model. The comparison with the measured data showed that the model reflected the actual values of low and high flow well. Also, it was confirmed that the acceleration and deceleration in the curved areas were appropriately simulated. The movement of dye injected at the upstream boundary was simulated. The result showed that the arrival time up to the estuary dam was computed to be about 65 days.

Development and Verifying of Calculation Method of Standard Rainfall on Warning and Evacuation for Forest Soil Sediment Disaster in Mountainous Area by Using Tank Model (Tank Model을 이용한 산지토사재해 경계피난 기준우량 산정법 개발 및 검토)

  • Lee, Chang-Woo;Youn, Ho Joong;Woo, Choong Shik
    • Journal of Korean Society of Forest Science
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    • v.98 no.3
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    • pp.272-278
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    • 2009
  • This study was conducted to develope calculation method of standard rainfall, which was used for predicting the outbreaking time of disaster by using Tank model, on warning and evacuation for soil sediment disaster. We investigate adeption possibility of developed method through comparing storage function method with Tank model. We calculated storage amount rainfall by storage function method and Tank model with 36 hillslope failures which have record on outbreaking time of disaster. The result in case of Sedimentary (quarternary period) showed that the difference of outbreaking time was 1.6 hour in case of tank model, but 3.2 hour in case of storage function method. In addition, the deviation of the peak storage were 7% in case of tank model, but 63% in case of storage function method. Total evacuation period was analyzed by using observed 5 years (1993-1997) rainfall data as well as each standard rainfalls which were determinated by two methods. The result showed that evacuation time by storage function method was about twice as many as that by tank model. Therefore, we concluded that calculation by tank model for predicting the outbreaking time of disaster was more useful and accurate than storage function method.

Analysis of Runoff Impact by Land Use Change - Using Grid Based Kinematic Wave Storm Runoff Model (KIMSTORM) - (토지이용의 변화가 홍수유출에 미치는 영향분석)

  • Kim, Seong-Joon;Park, Geun-Ae;Chun, Moo-Kab
    • Journal of Korea Water Resources Association
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    • v.38 no.4 s.153
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    • pp.301-311
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    • 2005
  • The purpose of this study is to assess the quantitative effect of stream discharge due to land use changes. The upstream watershed of Pyeongtaek gauging station of Anseong-cheon ($592.6\;km^2$) was adopted. To accomplish the purpose, firstly, trace land use changes for the selected watershed which have some changes of land use by using Landsat images of 1986 and 1999 of the watershed and secondly, analyse the quantitative effect of stream discharge due to land use changes by applying GIS- based distributed hydrologic model KIMSTORM. The model was calibrated and verified at 2 locations (Pyeongtaek and Gongdo) by comparing observed with simulated discharge results for 7 storm events from 1998 to 2003. Model output was designed to provide information of land use impact on runoff components in the watershed and the sensitivity of impact level of each land use category on storm runoff. Land use impact was evaluated with the land use data sets for 1986 and 1999 for the same rainfall condition (160.5 mm). Area decrease of 4.8 percent of forest and 4.0 percent of paddy field during 13 years (1986 - 1999) within the watershed caused a 30.3 percent increase of peak runoff and a 9.3 percent increase of runoff volume.

Estimation of Small Hydropower Resources by Hydrologic Analysis of Han-River Standard Basin (한강수계 표준유역의 수문특성분석을 통한 소수력 자원량 산정)

  • Seo, Sung Ho;Oh, Kuk Ryul;Park, Wan Soon;Jeong, Sang Man
    • 한국방재학회:학술대회논문집
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    • 2011.02a
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    • pp.47-47
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    • 2011
  • 에너지자원이 부족하여 에너지 해외의존도가 약 80% 이상인 우리나라의 특성상 에너지 해외의존도를 경감시키고 에너지부족 상황을 안정시키기 위하여 국내의 부존에너지를 최대한 활용하는 것이 필요하다. 또한 지구온난화에 대처하는 범세계적인 규제에 대비하기 위하여, 청정에너지를 적극 개발하여 에너지자립도를 향상시켜야 한다. 신재생에너지 중 하나인 소수력은 친환경적인 청정에너지 중 하나로 다른 대체 에너지원에 비해 높은 에너지 밀도를 가지고 있어 개발 가치가 큰 부존자원으로 평가되고 있다. 그리고 소수력은 여러측면의 사회적 환경적 이점으로 최근에는 선진국에서도 매우 큰 관심을 끌고 있으며, 에너지 자원이 빈약하여 대부분 석유수입에 의존하는 우리나라는 지역에너지로 소수력을 적극 개발하여야 한다. 소수력 부존량이 풍부한 우리나라는 1982년에 소수력 개발 활성화 방안이 공표되면서부터 정부주도 하에 소수력 발전소 건설에 관한 연구를 적극적으로 지원하게 되었다. 대수력과 비교하여 소수력의 장점으로는 비교적 짧은 계획 및 시공기간, 낮은 투자비용, 개인이나 기업을 통한 투자참여, 주위 인력이나 자재를 이용한 쉬운 설치, 적은 환경적인 피해 등이 있다. 이와 같이 청정에너지 중 하나인 소수력의 개발과 활용을 위하여 IT 기술을 접목한 다양한 응용시스템 구축이 진행되고 있다. 특히, 한국에너지기술연구원에서는 신재생에너지 개발 및 보급 확대를 목표로 2006년에 신재생에너지 자원지도시스템을 구축하였으며, 이를 웹상에서 제공하고 있다. 소수력 발전시설의 적극적인 활용을 위해서는 초기설계시 장기유출 특성분석을 통해 해당유역의 수자원을 최대로 활용하고, 지형적인 요소를 이용하여 전기의 생산이 최대가 되도록 하는 최적설계가 이루어 져야 한다. 따라서 본 연구에서는 소수력 발전시설의 최적설계를 위해 한강수계 258개 표준유역 중 섬강합류점에 대하여 자원지도를 활용하여 연평균유량을 추정한 후 소수력 자원량을 산정하였고, 그 결과로 시설용량과 연간전기생산량은 각각 1,633kW, 6,224MWh로 산정되었다. 또한 유출량의 미계측 유역에서의 소수력 발전성능을 예측하기 위한 방법으로 Weibull 분포의 특성화 방법을 선택하여 그 적용성을 검토하였다. 섬강합류점 표준유역 내에 위치하고 있는 목계관측소, 앙성관측소에서의 10개년(1999~2008) 강우자료를 바탕으로 유황곡선을 작성하여 상관관계분석을 실시한 결과 목계관측소에서 0.994701, 앙성관측소에서 0.992616으로 관측치와 계산값이 상당히 유사한 것으로 나타났다.

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Runoff Characteristics of N and P by Rainfall in Paddy Field (논에서 강우에 의한 질소와 인산의 유출특성)

  • Cho, Jae-Young;Choi, Jin-Kyu;Son, Jae-Kwon;Han, Kang-Wan
    • Applied Biological Chemistry
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    • v.43 no.4
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    • pp.285-290
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    • 2000
  • This research was carried out to investigate the runoff pattern of nutrients by rainfall from the paddy field located at the southwest of Korea. Effective rainfalls were 17.0 and 21.2 mm for irrigation and non-irrigation period, respectively. The first runoff in paddy field was 6.3-33.7 mm (average=12.9 mm) and 5.9-12.5 mm (9.2 mm) for irrigation and non-irrigation period, respectively. And runoff ratio was 0.59-1.36 and 0.57-0.86 for irrigation and non-irrigation period, respectively. During irrigation and non-irrigation period, the outflow increased significantly with the precipitation. Pattern of precipitation-runoff differed between irrigation and non-irrigation period, as affected by precipitation intensity, hydrological condition, and cropping. There existed a linear relationship between the runoff loading of N and P and precipitation. During the irrigation and non-irrigation period, runoff loadings of N and P were not significantly different. However, there was significant difference in case of total suspended solids.

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