• Title/Summary/Keyword: 농경지 유역

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Analysis of flow rate-SS discharges characteristics and causes during rainfall season in Daegi-cheon Watershed (대기천 유역에서의 강우기 유량-SS배출 특성 및 원인분석 연구)

  • Kim, Jonggun;Lee, Suin;Park, Byeongki;Won, Chulhee;Kum, Donghyuk;Choi, Joongdae
    • Journal of Wetlands Research
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    • v.21 no.1
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    • pp.9-15
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    • 2019
  • The Daegi-cheon watershed is located in the upper part of the Han River, which has the representative highland vegetable growing complexes. This watershed has a large impact on the water quality and aquatic ecosystem in the upstream of the Han River by discharging a large amount of turbid water during rainfall season. For proposing an efficient turbid water management and policy, the analysis of the characteristics of flow rate and SS and its causes needs to be carried out preferentially. In this study, the relationship between flow rate and SS concentration was analyzed in the Daegi-cheon watershed, and in turn the turbidity characteristics were analyzed. As a result of the study, in the normal flood flow condition, it was shown that SS concentration changed arbitrarily due to various environmental factors. On the other hand, the SS concentration was considerably high in the very high flow condition. Based on the field survey, this could be the reason why the effects of the steep valley and slope collapse according to the very high flow rate as well as the source in the agricultural fields were greatly contributed. Therefore, it is necessary to develop a structural best management practice that can stabilize the steep slope and reduce river bed loss along with the typical source managements plans.

Soil Erosion Risk Assessment in the Upper Han River Basis Using Spatial Soil Erosion Map (분포형 토양침식지도를 이용한 한강상류지역 토양유실 위험성 평가)

  • Park, Chan-Won;Sonn, Yeon-Kyu;Zhang, Yong-Seon;Hong, S.-Young;Hyun, Byung-Keun;Song, Kwan-Cheol;Ha, Sang-Keun;Moon, Young-Hee
    • Korean Journal of Soil Science and Fertilizer
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    • v.43 no.6
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    • pp.828-836
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    • 2010
  • This study was conducted to evaluate soil erosion risk with a standard unit watershed in the upper Han river basin using the spatial soil erosion map according to the change of landuse. The study area is 14,577 $km^2$, which consists of 10 subbasins, 107 standard unit watersheds. Total annual soil loss and soil loss per area estimated were $895{\times}10^4\;Mg\;yr^{-1}$ and 6.1 Mg $ha^{-1}\;yr^{-1}$, respectively. A result of analysis with a subbasin as a unit showed that annual soil losses and soil loss per area in Namhan river basins was more than in Bukhan river ones. Predicted annual soil loss according to the landuse ranked as Forest & Grassland > Upland ${\gg}$ Urban & Fallow area > Paddy field > Orchard. Upland area covered 6.2% of the study area, but the contribution of total annul soil loss was 40.6% and that of Forest & Grassland was 44.2%. As a evaluation of soil erosion risk using the spatial soil erosion map, we could precisely conformed the potential hazardous region of soil erosion in each unit watersheds. The ratio of regions, graded as higher "Moderate" for annual soil loss, were respectively 8.7%, 7.9% and 7.8% in 1001, 1002 and 1003 subbasins in Namhan river basin. Most landuse of these area was upland, and these area is necessary to establish soil conservation practices to reduce soil erosion based on the field observation.

저수지 유입부에 조성한 저류지의 수질개선효과 및 미생물학적 특성

  • 남귀숙;김형중;이광식;손형식;손홍주;이상준
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2003.05a
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    • pp.414-417
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    • 2003
  • 유역의 경사가 비교적 급하고, 소규모 축산농가의 미처리된 축산폐수 및 농경지 배수, 산재된 마을하수 등 비점오염원의 유출이 강우시 집중적으로 이루어지는 중산간 농업용 저수지의 수질개선을 위한 공법으로 부영양화된 충남 아산 마산저수지의 유입부에 조성한 저류지를 이용한 수질개선효과 및 물질분해자로서 미생물학적 특성을 2000년부터 2002년까지 3년간 연구함으로서 향후 유사한 농업용저수지의 수질개선 방안으로 실용화 가능성을 모색하고자 하였다. 그 결과 수질정화효과는 총질소와 총인 등 영양염류의 정화효과가 비교적 우수하게 나타났으며, 유기오염물질로서 BOD, COD, SS 등은 평균 수질정화효과는 (-)의 값을 보여주었으나, 강우기에는 정화효율이 높게 나타났다 또한, 저류지의 물질 침전기능 외 오염물질의 활발한 분해작용을 살펴보고자 세균 분포 특성을 조사한 결과 유입수와 저류지, 저수지 각각의 수체에서 조사된 총세균수 및 총세균수에 대한 진정세균수의 비율이 유입수<저류지<유출수의 순으로 나타나 저류지의 유기물질 분해 활성이 높음을 보여주고 있다. 따라서 저수지 유입부에 조성한 저류지의 수질개선효과는 강우시 입자성 유기물질의 효과적 제거 뿐만아니라 영양염류의 제거효과, 특히 질소의 제거효과가 높은 정화기구로서 설치비용이 적고, 유지관리가 간단한 특성을 살려 유사한 중규모 농업용저수지의 수질개선 기법으로 널리 활용할 가치가 있음으로 사료된다.

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Analysis of surface-groundwater interaction according to land use change in riparian zone (수변 토지이용 변화에 따른 지표수-지하수 상호작용 분석)

  • Kim, Nam-Won;Chung, Il-Moon;Kim, Ji-Tae;Lee, Jeong-Woo;Yoo, Sang-Yeon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.1332-1336
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    • 2009
  • 본 연구에서는 지표수-지하수 상호작용을 모의할 수 있는 SWAT-MODFLOW 모형을 이용하여 수변지역의 토지이용 변화에 따른 혼합대의 수문학적 특성 변화를 분석하였다. 연구를 위해 선정된 시험유역의 불수투지역, 농경지 등 기존 수변 토지이용도가 초지, 갯버들 등의 식생이 식재된 지역으로 변경되는 상황을 가정하여 SWAT-MODFLOW 모형을 적용, 지표수-지하수 상호작용을 중심으로 하는 수문학적 특성 변화를 모의 분석하였다. 수변의 토지이용을 초지로 변경하였을 경우 혼합대의 지표수-지하수 교환량이 다소 증가하는 것으로 모의되었으며, 수변 지역 토양의 토양 수분량 또한 증가하는 것으로 나타났다. 한편, 수변 지역에 갯벌들을 식재하는 경우 초지에 비해 지표수-지하수 교환량 및 토양 수분량의 증가폭이 더욱 증가하는 것으로 나타났다. 이와 같은 분석 결과 SWAT-MODFLOW 모형은 수변 토지 이용의 변화에 따른 수문학적 특성 변화를 모의할 수 있는 것으로 판명되었으며, 향후 실측자료와의 비교 연구 등을 실시하여 정확도가 입증된다면, 각종 수생태 복원사업의 계획 수립 시 토지이용 변화에 따른 효과 분석 모의에 유용하게 활용될 수 있을 것으로 기대된다.

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The Analysis of Levee Break using FFC-9 (FFC-9 모형을 이용한 하천제방 붕괴해석)

  • Park, Jae-Hong;Chun, Myung-Ho;Han, Keun-Yeun
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.848-852
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    • 2009
  • 하천 제방붕괴 해석을 위한 FFC-9 모형을 개발하였다. 본 모형은 하천제방의 붕괴해석을 위해 하천의 흐름해석 및 제방붕괴 알고리듬이 결합된 물리적 이론에 기반한 프로그램이다. 개발된 프로그램을 이용하여 낙동강 실제제방의 붕괴해석에 적용하였다. 적용된 제방은 경북 고령의 낙동강 본류 우안에 위치하고 있는 실제제방이 2000년 9월 15일 07:40분경에 붕괴를 시작하였다. 붕괴폭은 110m로 최초에는 60m, 수위 강하시 50m로 붕괴는 지속되었다. 붕괴지점의 제방고는 22.80 m이며 계획 홍수위는 20.26m, 사고당시 하천의 수위는 17.10m, 제내지 수위는 9.80m로서 제내지와 제외지의 수위차는 7.3m였다. 제방 붕괴로 인한 여러 피해중 농경지 침수는 150 ha에 이르렀다.. 연구모형을 2000년 9월 12일 00시${\sim}$18일 23시 기간동안 낙동강 유역의 홍수로 인한 제방 붕괴상황에 대해 적용하였다. 계산구간은 현풍${\sim}$적포교의 33.55 km구간으로서 전체 단면의 개수는 67개이며 평균적인 계산거리간격은 ${\Delta}x$ = 0.5 km 이고 계산시간간격은 0.5 hr이며 제방붕괴시의 계산시간간격은 0.25 hr으로 설정하였다. 이 구간에서의 주요 지류로서는 회천과 황강이 고려되었다. 상류단 경계조건으로서는 현풍 수위표지점의 유량 수문곡선을 사용하였고, 하류단 경계조건으로서는 적포교 수위표지점의 수위 수문곡선을 사용하였다. 본 모형에 적용된 조도계수는 이전의 홍수조건으로부터 검증된 $0.020{\sim}0.033$의 범위를 이용하였다.

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A study on the change of sediment yields and erosion spatial distribution by rainfall variation (강우집중에 따른 토양침식의 공간분포 및 침식량 변화에 관한 연구)

  • Kim, Seong Won;Lee, Dae Eop;Jeong, Anchul;Lee, Gi ha
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.121-121
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    • 2021
  • 기후변화의 영향으로 국내의 강우량과 강우패턴의 변화가 나타나고 있다. 최근 30년 여름철 집중호우의 평균강수량은 1980년 694.5 mm에서 2000년대 768.7 mm로 평균강수량이 74.2 mm 증가하였다. 평균강수일수는 36일에서 40일로 약 4일 증가하였다. 집중호우의 증가로 국소적 홍수에 의한 재해규모가 증가하고 있는 실정이다. 토양침식은 물의 순환과정에서 있어 나타나는 하나의 현상으로 토양손실을 의미한다. 강우량과 지형 및 토양특성이 토양침식량을 결정하는 주요한 요인이다. 토양침식은 농경지 감소, 고탁수 하천유입, 하천 및 호소내 퇴적으로 인한 수생태환경 변화 등의 다양한 문제를 발생시키고 있다. 그동안 우리나라는 토양침식량을 예측하기 위해 연평균 토양침식예측모형을 적용하고 있으며, 최근에 강우강도를 고려한 토양침식모형에 관한 연구가 진행되고 있다. 본 연구는 동일한 강우량을 Huff 방법을 이용하여 24시간 강수량 자료를 만들고 물리적기반 토양침식모형에 적용하여 나타나는 토양침식과 퇴적 공간분포에 대하여 분석하고자 한다.

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Investigation on the water quality challenges and benefits of buffer zone application to Yongdam reservoir, Republic of Korea (용담호의 홍수터 적용을 위한 문제점 및 이점 조사 연구)

  • Franz Kevin Geronimo;Hyeseon Choi;Minsu Jeon;Lee-Hyung Kim
    • Journal of Wetlands Research
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    • v.25 no.4
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    • pp.274-283
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    • 2023
  • Buffer zones, an example of nature-based solutions, offer wide range of environmental, social and economic benefits due to their multifunctionality when applied to watershed areas promoting blue-green connectivity. This study evaluated the effects of buffer zone application to the water quality of Yongdam reservoir tributaries. Particularly, the challenges and improvement of the buffer zone design were identified and suggested, respectively. Water and soil samples were collected from a total of six sites in Yongdam reservoir from September 2021 to April 2022. Water quality analyses revealed that among the sites monitored, downstream of Sangjeonmyeon Galhyeonri (SG_W_D2) was found to have the highest concentration for water quality parameters turbidity, total suspended solids (TSS), chemical oxygen demand (COD), total phosphorus (TP) and total nitrogen (TN). This finding was attributed to the algal bloom observed during the sampling conducted in September and October 2021. It was found through the soil analyses that high TN and TP concentrations were also observed in all the agricultural land uses implying that nutrient accumulation in agricultural areas are high. Highest TN concentration was found in the agricultural area of Jeongcheonmyeon Wolpyeongri (JW_S_A) followed by Jucheonmyeon Sinyangri (JS_S_A) while the lowest TN concentration was found in the original soil of Sangjeonmyeon Galhyeonri (SG_S_O). Among the types of buffer zones identified in this study, Type II-A, Type II-B and Type III were found to have blue-green connectivity. However, initially, blue-green connectivity in these buffer zone types were not considered leading to poor design and poor performance. As such, improvement in the design considering blue-green network and renovation must be considered to optimize the performance of these buffer zones. The findings in this study is useful for designing buffer zones in the future.

Estimation of irrigation return flow from paddy fields on agricultural watersheds (농업유역의 논 관개 회귀수량 추정)

  • Kim, Ha-Young;Nam, Won-Ho;Mun, Young-Sik;An, Hyun-Uk;Kim, Jonggun;Shin, Yongchul;Do, Jong-Won;Lee, Kwang-Ya
    • Journal of Korea Water Resources Association
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    • v.55 no.1
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    • pp.1-10
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    • 2022
  • Irrigation water supplied to the paddy field is consumed in the amount of evapotranspiration, underground infiltration, and natural and artificial drainage from the paddy field. Irrigation return flow is defined as the excess of irrigation water that is not consumed by evapotranspiration and crop, and which returns to an aquifer by infiltration or drainage. The research on estimating the return flow play an important part in water circulation management of agricultural watershed. However, the return flow rate calculations are needs because the result of calculating return flow is different depending on irrigation channel water loss, analysis methods, and local characteristics. In this study, the irrigation return flow rate of agricultural watershed was estimated using the monitoring and SWMM (Storm Water Management Model) modeling from 2017 to 2020 for the Heungeop reservoir located in Wonju, Gangwon-do. SWMM modeling was performed by weather data and observation data, water of supply and drainage were estimated as the result of SWMM model analysis. The applicability of the SWMM model was verified using RMSE and R-square values. The result of analysis from 2017 to 2020, the average annual quick return flow rate was 53.1%. Based on these results, the analysis of water circulation characteristics can perform, it can be provided as basic data for integrated water management.

Assessment of stream water quality and pollutant discharge loads affected by recycled irrigation in an agricultural watershed using HSPF and a multi-reservoir model (HSPF와 다중 저류지 모형을 이용한 농업지역 순환관개에 의한 하천 수질 및 배출부하 영향 분석)

  • Kyoung-Seok Lee;Dong Hoon Lee;Youngmi Ahn;Joo-Hyon Kang
    • Journal of Wetlands Research
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    • v.25 no.4
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    • pp.297-305
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    • 2023
  • The recycled irrigation is a type of irrigation that uses downstream water to fulfill irrigation demand in the upstream agricultural areas; the used irrigation water returns back to the downstream. The recycled irrigation is advantageous for securing irrigation water for plant growth, but the returned water typically contains high levels of nutrients due to excess nutrients inputs during the agricultural activities, potentially deteriorating stream water quality. Therefore, quantitative assessment on the effect of the recycled irrigation on the stream water quality is required to establish strategies for effective irrigation water supply and water quality management. For this purpose, a watershed model is generally used; however no functions to simulate the effects of the recycled irrigation are provided in the existing watershed models. In this study, we used multi-reservoir model coupled with the Hydrological Simulation Program-Fortran (HSPF) to estimate the effect of the recycled irrigation on the stream water quality. The study area was the Gwangok stream watershed, a subwatershed of Gyeseong stream watershed in Changnyeong county, Gyeongsangnam-do. The HSPF model was built, calibrated, and used to produce time series data of flow and water quality, which were used as hypothetical observation data to calibrate the multi-reservoir model. The calibrated multi-reservoir model was used for simulating the recycled irrigation. In the multi-reservoir model, the Gwangok watershed consisted of two subsystems, irrigation and the Gwangok stream, and the reactions (plant uptake, adsorption, desorption, and decay) within each subsystem, and fluxes of water and materials between the subsystems, were modeled. Using the developed model, three scenarios with different combinations of the operating conditions of the recycled irrigation were evaluated for their effects on the stream water quality.

Prediction of Continuous Discharge and Water Quality Change for Gate Operation in Seonakdong River Experimental Catchment Using SWAT (서낙동강 시험유역에서의 SWAT 모형을 이용한 수문 운영에 따른 연속유출 및 수질변화 예측)

  • Kang, Deok-Ho;Kim, Jung-Min;Kim, Tae-Won;Kim, Young-Do
    • Journal of Wetlands Research
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    • v.14 no.1
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    • pp.21-33
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    • 2012
  • The dominant land use at the Seonakdong river watershed is paddy and forest areas and the Seonakdong river stands still. Thus, the water pollution in the Seonakdong river is becoming more serious for the non-point source. In this study, SWAT(Soil and Water Assessment Tool) model was evaluated for simulation of flow and water quality behaviors in Seonakdong river. To perform the calibration and verification of the SWAT model, the measurements of discharge and water quality were performed for the period from 2006 to 2007 at 5 gauging stations in Seonakdong river. The $R^2$ value for discharge and water quality were 0.86 and 0.70 respectively for calibration after the sensitive analysis. The $R^2$ value for discharge and water quality were 0.81 and 0.51 respectively for verification. The simulation results show that BOD value in the river tends to decrease after the opening of gates and the patterns of TN and TP concentrations are similar as that of BOD. The gate operators need to determine how to supply water in drought season for effective water quality improvement. This study shows that the SWAT model, which is capable of simulating hydrologic and water quality behaviors temporarily and spatially at watershed scale, could be used to get the gate operation rule for the water quality management in Seonakdong river.