• Title/Summary/Keyword: 하천건천화

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Watershed water circulation assessment using PSR framework (PSR framework를 이용한 유역 물순환 평가)

  • Kim, Seokhyeon;Kim, Sinae;Kim, Kyeung;Hwang, Soonho;Kim, Hakkwan;Kang, Moon-Seong
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.462-462
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    • 2021
  • 최근 도시화 및 불투수면의 증가와 지하수의 과다한 사용으로 직접유출이 증가하고, 침투량이 감소하며, 하천의 건천화가 발생하고 있다. 이에 환경부에서는 이러한 물순환의 왜곡을 막기위해 물환경보전법상의 물순환율을 정의하고 물순환 관리목표를 설정하였다. 하지만 지역 별 물순환 특성을 반영한 관리계획이 부족하고, 현재 제한된 재원의 효율적 활용을 위해서는 물순환 관리지역에 대한 우선순위 결정도 필요하다. 본 연구에서는 PSR framework를 통해 유역 물순환 평가방법론을 만들고 이를 활용한 지역별 관리계획 및 우선순위를 결정하고자하였다. PSR framework는 지속가능성을 위해 OECD가 개발한 개념 모형이며, Pressure, State, Response 세 가지 요소로 구분해 평가하게된다. PSR framework의 기본 개념은 인간의 활동들이 환경에 압력 (P)를 주고, 이로 인해 자연의 질과 영향 (S)을 미치며, 이에대한 회복을 위해 인식과 행동을 통해 정책과 제도 등을 통해 반응 (R)한다는 것이다. 유역 물순환을 4가지 그룹 (기후, 수문학적, 사회경제학적, 환경적)으로 구분하고 각 그룹 별 평가요소에 대하여 도출하였다. 기후그룹은 강우, 수문학적 그룹은 증발산, 토지이용, 유출특성을, 사회경제학적 그룹은 재정, 사회구조, 기반시설, 정책을, 환경적 그룹은 수질, 수생태계를 선정하였다. 이후 각 요소 별 평가를 위해 다양한 지표를 고려하여 선정하였으며, 각 지표를 PSR framework에 맞춰 재분류하였다. 각 지표를 하나의 점수로 통합하기 위해 지표 별 가중치를 산정하였으며, 이때 연구자의 주관이 반영되지않는 엔트로피 기법을 이용하여 산정하였다. 구한 식을 통해 우리나라 소유역구분을 기준으로 모든 지표를 계산하였으며, 각 지표에 가중치를 적용해 유역 종합점수를 산정하고 유역 별 취약지역 및 취약요소를 평가하였다.

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A study on the storage performance of gabion weir for the supply of raw water for artificial recharge (대수층함양 원수공급을 위한 돌망태 취수보의 저류성능)

  • Han, Il yeong;Lee, Jae joung;Kim, Gyoo bum
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.26-26
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    • 2020
  • 하천수의 수심을 유지하기 위하여 설치된 콘크리트 취수보 대신 강자갈이나 쇄석을 채움재로 하는 돌망태를 사용하게 되면 토사퇴적으로 인한 건천화나 상, 하류 수생태계 단절과 같은 문제를 어느 정도 감소시킬 수 있을 뿐만 아니라, 자갈접촉산화작용에 의한 수질개선과 공사비 절감 효과 등의 장점이 있다. 그러나 돌망태는 투수성이므로 불투수성인 콘크리트 보다 저류측면에서 불리하다. 콘크리트 취수보에서의 흐름은 보 정점의 형상, 보의 폭, 높이, 그리고 월류수심에 좌우되며, 베르누이 방정식과 연속방정식에 의해 방류량 산정식을 유도하고, 유량계수와 같은 실험상수를 결정하여 방류량을 계산한다. 돌망태 취수보의 흐름은 보의 높이, 보의 길이, 보의 상류수심 외에 채움재의 형상, 입경, 배치상태가 흐름에 영향을 미친다. 따라서 콘크리트 취수보에 적용되었던 기존의 방류량 산정식을 그대로 적용할 수 없다. 돌망태 보의 통과류는 실험상수가 포함된 비선형 수두손실방정식으로 표현할 수 있다. 실험상수는 비표면적의 크기를 의미하는 채움재의 평균동수반경와 관계되며, 평균동수반경은 채움재 입자의 형상으로 부터 구할 수 있다. 따라서 실험을 통하여 채움재 입자의 형상과 크기에 따른 실험상수와 평균동수반경의 관계를 구하면 비선형 수두손실방정식으로부터 통과류의 방류량을 계산할 수 있게 된다. 본 연구는 돌망태 취수보가 대수층함양 원수 공급시설물로서 타당한가를 평가하기 위하여 수행되었다. 콘크리트 취수보의 월류량 계산은 기존의 방류량 산정식을 이용하였으며, 돌망태 취수보는 실험상수와 평균동수반경의 기존관계식을 이용하여 통과류의 방류량을 계산하였다. 이와 같이 계산된 각각의 수심-방류량 관계로 부터 수심을 비교하였다. 동일한 유량조건에서 돌망태 취수보의 상류수심은 콘크리트 취수보보다 작게 계산되었다. 상류수심은 돌망태 채움재 입자의 크기가 작을수록 증가하여, 돌망태 취수보는 채움재의 입자크기가 작을수록 저류성능이 개선됨을 알 수 있었다. 따라서 돌망태 취수보는 채움재의 입경이 작을수록 콘크리트 취수보의 저류수준에 접근할 수 있을 것으로 판단되었다.

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The Change of Water Balance due to Urbanization in Gwangju River Basin (도시화에 수반되는 광주천 유역의 물수지 변화)

  • Yang, Hea-Kun;Kim, Jong-Il
    • Journal of the Korean association of regional geographers
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    • v.10 no.1
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    • pp.192-205
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    • 2004
  • The purpose of this paper is to analyze the factors, which have influence upon changes of hydrological environment in time series, and evaluate water balance changes caused by urbanization. The results of the analysis and evaluation are as follow: At first, the river runoff at Gwangju River Basin keep base flow of river by storage capacity recharged in June to September and show peak in August and minimum flow in May. The groundwater recharge by urbanization accounted for 46.1% of rainfall at early-urban stage, and decreased to 36.5% and 29.9% in the 1960's and the 1990's respectively, and is likely to decrease to 27.8% in the 2010's. On the other hand, the overland flow was 9.6% of rainfall in the 1960's and 16.2% in the 1990's, and is likely to increase to 18.3% in the 2010's. When such a phenomenon is kept continuously, distorted water balance shall be worsened to create not only frequent occurrence of urban flood but also decreased base flow of Gwangju River to accelerate dry stream phenomenon. The time series study on urban redevelopment and environment maintenance describes distorted phenomenon to supply the information for nature-friendly land use, and examines relations between human activities and natural environment.

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An Analysis of the down stream impact of dam Characteristics of Dam Using Indicators of Hydrologic Alterations (수문변화지표법을 이용한 댐 특성요소별 하류하천에 미치는 영향분석)

  • Kang, Ki-Ho;Park, Bong-Jin;Jung, Kwan-Sue
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.1948-1952
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    • 2008
  • 본 연구에서는 수문변화 지표법을 적용하여 광동댐 등 12개 용수 전용댐의 연 최소 최대유량 크기와 지속기간, 고 저맥파 빈도와 주기, 수문곡선 변화 비율과 빈도, 유량변화정도 등을 분석하여 댐이 하류하천에 미치는 영향을 수치로 제시 하였다. 광동댐 등 12개 댐의 월 유량변화를 산정한 결과, 갈수기에 해당하는 10월부터 다음해 6월까지 8개월간의 댐건설전 월평균 방류량은 $0.64\;m^3/sec{\sim}3.05\;m^3/sec$이었으나, 댐건설후 월평균 방류량은 $0.33\;m^3/sec{\sim}2.99\;m^3/sec$$-69.7%{\sim}167.8%$의 분포를 나타내고 있으며, 12월과 1월을 제외하면 댐건설 이후 오히려 $6.8%{\sim}69.7%$가 감소하였다. 우기철인 7월부터 9월까지 3개월간은 댐건설전 월평균 방류량이 $6.82\;m^3/sec{\sim}7.67\;m^3/sec$이었으나, 댐건설후 월평균 방류량은 $4.12\;m^3/sec{\sim}4.35\;m^3/sec$$51.0%{\sim}55.1%$가 감소하여 저수지 공용량을 이용한 저류효과가 다소 있었던 것으로 분석되었다. 연 최소 최대유량 크기와 지속기간 분석결과 1일, 3일, 7일, 30일, 90일 최소유량은 광동댐 등 10개 댐이 댐건설 전후 모두 $0.0\;m^3/sec$로 증감이 없었으며, 달방댐의 경우 30일 최소유량이 $0.026\;m^3/sec$에서 $0.000\;m^3/sec$로 99.11%가 감소하였다. 영천댐의 경우도 30일 최소유량이 $0.101\;m^3/sec$에서 $0.067\;m^3/sec$로 33.73%가 감소 하였으며, 90일 최소유량의 경우 달방댐은 $0.067\;m^3/sec$에서 $0.031\;m^3/sec$로 53.48%가 영천댐은 $0.219\;m^3/sec$에서 $0.150\;m^3/sec$로 31.29%가 감소하였다. 12개 용수 전용댐중 유지용수공급이 계획되어 있는 영천댐과 달방댐을 제외하고는 댐하류 방류량이 없이 건천화 되었다는 사실을 알 수 있다. 고 저맥파의 빈도와 주기 분석결과 댐건설 이후 수문곡선이 25% 이하로 떨어지는 저맥파는 $72.99%{\sim}98.52%$가 감소하였으며, 저맥파의 기간은 $-80.0%{\sim}4,423.3%$까지 분포하여 상당히 증가하였다. 수문곡선이 75%를 초과하는 고맥파의 발생 횟수는 댐건설 이후 $34.28%{\sim}91.67%$가 감소하였으며, 고맥파의 기간은 $-64.31%{\sim}135.62%$로 증가 또는 감소하였다.

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Present Status and Future Prospect of Satellite Image Uses in Water Resources Area (수자원분야의 위성영상 활용 현황과 전망)

  • Kim, Seongjoon;Lee, Yonggwan
    • Korean Journal of Ecology and Environment
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    • v.51 no.1
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    • pp.105-123
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    • 2018
  • Currently, satellite images act as essential and important data in water resources, environment, and ecology as well as information of geographic information system. In this paper, we will investigate basic characteristics of satellite images, especially application examples in water resources. In recent years, researches on spatial and temporal characteristics of large-scale regions utilizing the advantages of satellite imagery have been actively conducted for fundamental hydrological components such as evapotranspiration, soil moisture and natural disasters such as drought, flood, and heavy snow. Furthermore, it is possible to analyze temporal and spatial characteristics such as vegetation characteristics, plant production, net primary production, turbidity of water bodies, chlorophyll concentration, and water quality by using various image information utilizing various sensor information of satellites. Korea is planning to launch a satellite for water resources and environment in the near future, so various researches are expected to be activated on this field.

The development of land use planning technique applying low impact development and verifying the effects of non-point pollution reduction : a case study of Sejong city 6 district (저영향개발(LID)을 적용한 토지이용계획 기법 개발 및 적용효과 분석 : 세종시 6생활권을 대상으로)

  • Kang, Ki-Hoon;Lee, Kyung-Hwan
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.7
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    • pp.548-553
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    • 2017
  • The aim of this study was to develop a low impact development design technique that can be applied in the land use planning stage and verify quantitatively the effects of non-point pollution reduction. For this purpose, the low impact development design elements that can be applied in the land use planning stage were derived and applied to an actual site, and the non-point pollution reduction effect was analyzed using the LIDMOD2 program. The analysis showed that the permeability rate of the land use plan using low impact development decreased by 19.8% compared to the existing land use plan. In addition, annual surface runoff decreased by 19.0% and annual infiltration increased by 164.1%. In the case of non-point pollution, the annual loading, T-N, T-P, and BOD decreased by 18.7 ~ 22.8%. Therefore, compared to the existing land use plan, the land use plan using low impact development has a considerably large effect of reducing the non-point pollution without changing the floor area according to each application. Therefore, to maximize the reduction effect of non-point pollution, it will be necessary to establish a related plan by applying the low impact development technique from the land use planning stage to the existing LID facility-oriented plan.

A by-pass rainwater penetration sewer system for urban flooding mitigation (도시침수 저감을 위한 by-pass 빗물침투성 우수관거)

  • Lee, Bum-Sub;Ko, Keon-Ho;Kang, Ho-Yeong;Moon, Young-Il
    • Journal of Korea Water Resources Association
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    • v.49 no.9
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    • pp.799-807
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    • 2016
  • The aim of this study is to determine and propose the by-pass rainwater sewer system in order to reduce the urban floodplain from the locality heavy rain every year during the dry season and the sinkholes in the city as well as the shortage of groundwaters due to extreme hot weather condition and urban heat island phenomenon. Heavy rain occurs more than the years of heavy rainfall probability, comparison between the place where uses the existing pipes and connect the sewer system with by-pass rain permeability and without expanding sewer pipe replacement at intersection of Gangnam station 3.07 ha at Gangnam-gu, Seoul Metropolitan area, it indicates that average of 27 million KRW (44%) maintenance cost savings and maintain existing sewer system without any other countermeasures. For the city flooded reduction, by-pass rainwater permeable rainwater pipe multiplying the probability the number of years during summer season and increase the water flow capacity during spring and fall when a small amount of rain that, it also contribute to the total amount of underground water secured through the by-pass penetration.

A Study on Cost Division Scheme Using Shapley Value for Integrated Watershed Management Planning for Anyang-cheon, Korea (Shapley Value를 이용한 안양천 유역 통합관리 계획에 따른 비용분담방안의 연구)

  • Song, Yang-Hoon;Yoo, Jin-Chae;Kong, Ki-Seo;Kim, Mi-Ok;An, So-Eun
    • Journal of Environmental Policy
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    • v.9 no.2
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    • pp.3-19
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    • 2010
  • Anyang-cheon(stream) runs through southern metropolitan area of Seoul to Han-river in Korea. Due to fast growth of Seoul, the water quality and quantity problems in Anyang-cheon have occurred. To cope with the problems, the Integrated Watershed Management program for Anyang-cheon was adopted and a KRW 26.1 billion (USD 21.8 million) pilot project (construction of 4 facilities such as reservoir) is suggested for 4 sub-watersheds of Anyang-cheon, which cost will be shared by the 12 local governments (LG). Three cost division schemes are compared. By Scheme 1, if the cost is borne by the LG in a watershed where the facilities are constructed (no cost division scheme), the LG in I is to bear 0.58% of the total construction cost, LG in watershed II 29.54%, LG in IV 0%, LG in V 69.88%. In particular, LG in IV in this scheme bears no cost because no facility is constructed, even though watershed IV is the major beneficiary of the facility construction. Scheme 2 is to share the cost by length of streams in each sub-watershed and the suggested cost share for each sub-watershed is 13.76% by I, 7.34% by II, 45.87% by IV, and 33.03% by V. However, this cost division scheme is fair only under the false assumption that the bargaining powers of group of LGs are identical. To suggest a better and fair division rule, Shapley Value, a cooperative game solution, is used to suggest Scheme 3. In Scheme 3, Shapley Value measures the summation of average marginal contribution of each player in all possible coalitions as cost division scheme and is known to provide a fair division considering bargaining power. In the context of Anyang-cheon, LGs in upper stream have superior bargaining position. The result suggests the cost division is fair under Scheme 3, when the cost shares are 0.29% by I, 14.77% by II, 50% by IV, and 34.94% by V, respectively.

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Analysing the effect of impervious cover management techniques on the reduction of runoff and pollutant loads (불투수면 저감기법의 유출량 및 오염부하량 저감 효과 분석)

  • Park, Hyung Seok;Choi, Hwan Gyu;Chung, Se Woong
    • Journal of Environmental Impact Assessment
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    • v.24 no.1
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    • pp.16-34
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    • 2015
  • Impervious covers(IC) are artificial structures, such as driveways, sidewalks, building's roofs, and parking lots, through which water cannot infiltrate into the soil. IC is an environmental concern because the pavement materials seal the soil surface, decreasing rainwater infiltration and natural groundwater recharge, and consequently disturb the hydrological cycle in a watershed. Increase of IC in a watershed can cause more frequent flooding, higher flood peaks, groundwater drawdown, dry river, and decline of water quality and ecosystem health. There has been an increased public interest in the institutional adoption of LID(Low Impact Development) and GI(Green Infrastructure) techniques to address the adverse impact of IC. The objectives of this study were to construct the modeling site for a samll urban watershed with the Storm Water Management Model(SWMM), and to evaluate the effect of various LID techniques on the control of rainfall runoff processes and non-point pollutant load. The model was calibrated and validated using the field data collected during two flood events on July 17 and August 11, 2009, respectively, and applied to a complex area, where is consist of apartments, school, roads, park, etc. The LID techniques applied to the impervious area were decentralized rainwater management measures such as pervious cover and green roof. The results showed that the increase of perviousness land cover through LID applications decreases the runoff volume and pollutants loading during flood events. In particular, applications of pervious pavement for parking lots and sidewalk, green roof, and their combinations reduced the total volume of runoff by 15~61 % and non-point pollutant loads by TSS 22~72 %, BOD 23~71 %, COD 22~71 %, TN 15~79 %, TP 9~64 % in the study site.

Study on Analysis of the Proper Ratio and the Effects of Low Impact Development Application to Sewage Treatment District (하수처리구역 내 LID 적용에 대한 적정비율 및 효과분석 연구)

  • Shin, Hyun Suk;Kim, Mi Eun;Kim, Jae Moon;Jang, Jong Kyung
    • Journal of Korea Water Resources Association
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    • v.46 no.12
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    • pp.1193-1207
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    • 2013
  • Increase of impervious area caused by overdevelopment has led to increase of runoff and then the problem of flooding and NPS were brought up. In addition, as decrease of base flow made groundwater level to decline, a stream that dries up is issued. low impact development (LID) method which is possible to mimic hydrological water cycle, minimize the effect of development, and improve water cycle structure is proposed as an alternative. As introduction of LID in domestic increases, the study on small watershed is in process mainly. Also, analysis of property of hydrological runoff and load on midsize watershed, like sewage treatment district, is required, the study on it is still insufficient. So, area applying LID practices from watershed of Dongrae stream is pinpointed and made the ratio and then expand it to watershed of Oncheon stream. Among low impact development practices, Green Roof, Porous Pavement, and Bio- retention are selected for the application considering domestic situations and simulated with SWMM-LID model of each watershed and improvement of water cycle and reduction of non-point pollution loads was analysed. Improvement of water cycle and reduction of non-point pollution loads were analyzed including the property of rainfall and soil over long term simulation. The model was executed according to scenario based on combination of LID as changing conductivity in accordance with soil type of the watershed. Also, this study evaluated area of LID application that meets the efficiency of conventional management as a criteria for area of LID practices applying to sewer treatment district by comparing the efficiency of LID application with that of conventional method.