• 제목/요약/키워드: changes in urban water cycle

검색결과 29건 처리시간 0.021초

SWAT모델과 물수지분석을 이용한 물재이용에 의한 도시물순환 변화 분석 (Analysis for water cycle change using SWAT model and water balance analysis depending on water reuse in urban area)

  • 김영란;황성환;이성옥
    • 상하수도학회지
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    • 제29권4호
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    • pp.447-457
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    • 2015
  • Water cycle within the human civilization has become important with urbanization. To date, water cycle in the eco-system has been the focus in identifying the degree of water cycle in cities, but in practicality, water cycle within the human civilization system is taking on an increasing importance. While in recent years plans to reuse water have been implemented to restore water cycle in cities, the effect that such reuse has on the entire water cycle system has not been analyzed. The analysis on the effect that water reuse has on urban areas needs to be go beyond measuring the cost-savings and look at the changes brought about in the entire city's water cycle system. This study uses a SWAT model and water balance analysis to review the effects that water reuse has on changes occurring in the urban water cycle system by linking the water cycle within the eco-system with that within the human civilization system. The SWAT model to calculate the components of water cycle in the human civilization system showed that similar to measured data, the daily changes and accumulative data can be simulated. When the amount of water reuse increases in urban areas, the surface outflow, amount of sewer discharge and the discharged amount from sewage treatment plants decrease, leading to a change in water cycle within our human civilization system. The determinant coefficients for reduced surface outflow amount and reduced sewer discharge were 0.9164 and 0.9892, respectively, while the determinant coefficient for reduced discharge of sewage treatment plants was 0.9988. This indicates that with an increase in water reuse, surface flow, sewage and discharge from sewage treatment plants all saw a linear reduction.

도시화에 따른 물순환 영향 평가 모형의 개발 및 적용(I) - 모형 개발 - (Development and Application of the Catchment Hydrologic Cycle Assessment Tool Considering Urbanization (I) - Model Development -)

  • 김현준;장철희;노성진
    • 한국수자원학회논문집
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    • 제45권2호
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    • pp.203-215
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    • 2012
  • 본 연구의 목적은 도시개발의 영향을 평가하고 물순환 개선시설의 적절한 배치를 설계하기 위한 물순환 해석 모형을 개발하는 것이다. 개념적 매개변수를 사용하는 기존의 집중형 수문모형으로는 도시개발로 인한 토지이용 변화 등의 유역 특성 변화를 적절히 모의하는데 한계가 있으며, 최근 활발히 연구되고 있는 분포형 수문모형은 입력자료 구축 및 모형 구동에 많은 시간과 노력이 필요하여 다양한 도시설계 대안을 평가하기에는 적절하지 못하다. 유역 물순환 해석 모형(Catchment hydrologic cycle Analysis Tool, 이하 CAT)은 이러한 배경을 토대로 개발된 물리적 매개변수 기반의 링크-노드 방식의 물순환 정량화 모형이다. CAT은 기존 개념적 매개변수 기반의 집중형 수문모형과 물리적 매개변수 기반의 분포형 수문모형의 장단점을 최대한 보완하여, 도시유역 개발 전 후의 장 단기적인 물순환 변화 특성을 정량적으로 평가하고 물순환 개선시설의 효과적인 설계를 지원하기 위한 물순환 해석 모형이다. 개발된 모형의 평가를 위하여 설마천 유역을 대상으로 모의를 수행하였으며 출구점인 전적비교의 6개년(2002~2007) 동안의 시간별 하천 유출량 자료를 이용하여 모형의 보정(2002~2004)과 검정(2005~2007)을 실시한 결과, 보정과 검정기간의 Nash-Sutcliffe 모형효율계수는 각각 0.75와 0.89로 나타났다.

제주 곶자왈 산림의 물순환 특성에 따른 수원함양률 분석 (Analysis on Water Retention Rate according to Water Cycle Characteristics in Jeju Gotjawal Forest )

  • 김재훈;임홍근;최형태;이기문;문혜원;최형순
    • 한국환경과학회지
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    • 제31권12호
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    • pp.1013-1025
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    • 2022
  • This study was carried out to analyze water cycle characteristics and evaluate water retention function in Jeju Gotjawal forest from 2013 to 2017. The average ratio of throughfall, stemflow, interception loss in Seonhul Gotjawal (SH) and Cheongsu Gotjawal (CS) was 43.1%, 15.8%, and 41.1%, respectively. Rainfall-throughfall, rainfall-stemflow, and rainfall-interception loss were expressed as linear regression equation (p<0.001). The comparison results showed that SH was higher than CS (p<0.05), indicating that the canopy area had an important effect on the difference in stand structure. The average water resources retention rate of the Gotjawal region was 41.9%, which is similar to the total water resources retention rate (40.6%) of Jeju Special Self-Governing Province (JSSGP). Currently, the development of Gotjawal is in progress in JSSGP. The development of Gotjawal will lead to a decrease in the water resources retention rate due to changes in the surface environment such as an increase in impervious areas, which will affect the total groundwater content of JSSGP. Therefore, the conservation of the Gotjawal area is judged to be very important from the point of view of water conservation.

토지이용 변화가 물순환에 미치는 영향과 침투트렌치 설치 효과 분석 - A 신도시 지구를 중심으로 - (Impacts on water-cycle by land use change and effects of infiltration trenches in Asan New town)

  • 현경학;이정민
    • 상하수도학회지
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    • 제24권6호
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    • pp.691-701
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    • 2010
  • As the water-cycle is transformed by increasing of the impermeable area in process of urbanization, decentralized rainwater management facilities(infiltration, harvesting and retention facilities) as source control are considered to be a method of restoring water-cycle of urban and reducing runoff. SWMM model was used to analyse the change of water-cycle structure before and after development in A new town watershed. Modified SWMM code was developed to apply infiltration facilities. The modified SWMM was used to analyse the change of water-cycle before and after infiltration trench setup in AJ subcatchment. Changes of the impervious area by development and consequent increase in runoff were analyzed. These analyses were performed by a day rainfall during ten years from 1998 to 2007. According to the results, surface runoff increased from 51.85% to 65.25 %, and total infiltration volume decreased from 34.15 % to 21.08 % in A newtown watershed. If more than 80 infiltration trenches are constructed in AJ subcatchment, the low flow and the drought flow increases by around 47%, 44%, separately. The results of this study, infiltration trench is interpreted to be an effective infiltration facility to restore water-cycle in new town.

투수성 포장에 의한 비점오염원 저감 효과 분석 (Analysis of Non-point Pollution Source Reduction by Permeable Pavement)

  • 구영민;김영도;박재현
    • 한국수자원학회논문집
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    • 제47권1호
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    • pp.49-62
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    • 2014
  • 최근에 불투수층의 증가로 인하여 표면의 저류량이 감소하고 첨두유출과 전체 유출량은 증가한다. 첨두유출과 첨두유출 도달시간이 빨라지게 되면 홍수 발생률이 증가하여 도시유역의 피해를 증가시키며, 토양으로 침투되는 우수량이 감소하여 지하수위가 하강하게 되고 도시하천이 마르는 건천화가 진행되어 유역의 물 순환이 악화된다. 또한 하천 수질 오염의 원인은 점오염원과 비점오염원 등이 있는데, 비점오염원에 의한 오염이 점점 커져가는 양상이다. 이러한 이유는 도시유역이 지속적인 개발로 인해 불투수율이 증가하게 되어 초기강우에 오염물질이 하천으로 유입되고 있기 때문이다. 따라서 본 연구에서는 도시유역의 물순환 회복을 위한 투수성 포장 효과를 분석하며, 투수성 포장의 비점저감 효과 및 첨두유량 감소 효과를 분석하고자 한다. 도시유역 유출 모델인 SWMM을 이용하여 단기 유출 모의를 통하여 투수성 포장의 효과 분석하였다.

CN의 변화에 따른 안동시 물순환 선도도시 조성계획의 비점오염부하 저감효과 분석 (Analysis of Nonpoint source Reduction at Andong Area Considering Changes in CN)

  • 권헌각;정강영;김신;신석호;안정민;김경훈
    • 한국습지학회지
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    • 제18권4호
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    • pp.342-349
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    • 2016
  • 낙동강수계에 속하는 안동시는 안동댐, 임하댐을 포함하여 낙동강이 흐르는 도시로 경상북도 신 도청 이전과, 지속적 도시화로 인해 불투수 면적이 증가하고 있어 강우 시 유출량 증가 및 비점오염원 부하가 증가되고 있는 지역이다. 본 연구에서는 물순환 선도도시에 선정된 도시 중 안동시를 대상으로 개발에 따른 유출량과 비점오염부하량을 비교 평가하였다. 안동시 물순환 선도도시 계획(안)에 대해 시 공간적 변화를 고려한 CN값을 이용한 직접 유출량과 BOD, T-N 및 T-P 비점오염부하량을 평가한 결과, 옥상녹화 및 투수포장 교체, 물순환 공원 및 거리 조성, 도심지 불투수층 개선 사업 등 4가지 scenario 모두 적용되어 개발될 경우 연간 직접유출이 10.41%, BOD 비점오염부하량이 20.56%, T-N 9.55% 및 T-P 비점오염부하량이 14.29% 저감되는 것으로 조사되었다. 4가지의 개발 scenario 중 저감률이 가장 높은 것은 도시지역 불투수면 개선 사업으로 조사되었으며 개발 이전 대비 연간 직접유출이 6.25%, BOD 비점오염부하량이 11.84%, T-N 비점오염부하량이 4.46% 및 T-P 비점오염부하량이 10.20% 저감되는 것으로 조사되었다.

THE CHEONGGYE-CHEON ESTORATION PROJECT AND HYDROLOGICAL CYCLE ANALYSIS

  • Kim, Hyeon-Jun;Yoon, Soo-Kil;Noh, Seong-Jin;Jang, Cheol-Hee
    • Water Engineering Research
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    • 제6권4호
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    • pp.179-187
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    • 2005
  • This paper introduces the Cheonggye-cheon restoration project. The restoration project aims to revive the 600-year-old city of Seoul by recovering the historical heritage, guaranteeing safety from the deteriorated covering structures, creating the environment-friendly space, and revitalizing the neglected city centers. In order to understand the current hydrological cycle of the Chenggye-cheon watershed, the annual water balance of the region was calculated using the observed data including precipitation, runoff, water supply and sewage, and the changes in the groundwater level. The $2001{\sim}2002$ data were used to calibrate the WEP, and the $2003{\sim}2004$ data were used to verify the WEP. The calibration and validation results for the flood hydrograph how a reasonable value (at Majanggyo station, the R2 for the calibration period was 0.9, and that for the validation period was 0.7). According to the annual water balance of the Cheonggye-cheon watershed for 2004, the amount of surface runoff, infiltration, and evapotranspiration was 1,097mm, 216mm and 382mm, respectively, for an annual precipitation of 1,499mm. The application results from WEP, a distributed hydrological model, provide more detailed information of the watershed, and the model will be useful for improving the hydrological cycle in urban watershed.

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도시 토지피복별 불투수면적률과 녹지면적률에 따른 지표면 일최고온도 변화량 산정방법 (Development of calculating daily maximum ground surface temperature depending on fluctuations of impermeable and green area ratio by urban land cover types)

  • 김영란;황성환
    • 상하수도학회지
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    • 제35권2호
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    • pp.163-174
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    • 2021
  • Heatwaves are one of the most common phenomena originating from changes in the urban thermal environment. They are caused mainly by the evapotranspiration decrease of surface impermeable areas from increases in temperature and reflected heat, leading to a dry urban environment that can deteriorate aspects of everyday life. This study aimed to calculate daily maximum ground surface temperature affecting heatwaves, to quantify the effects of urban thermal environment control through water cycle restoration while validating its feasibility. The maximum surface temperature regression equation according to the impermeable area ratios of urban land cover types was derived. The estimated values from daily maximum ground surface temperature regression equation were compared with actual measured values to validate the calculation method's feasibility. The land cover classification and derivation of specific parameters were conducted by classifying land cover into buildings, roads, rivers, and lands. Detailed parameters were classified by the river area ratio, land impermeable area ratio, and green area ratio of each land-cover type, with the exception of the rivers, to derive the maximum surface temperature regression equation of each land cover type. The regression equation feasibility assessment showed that the estimated maximum surface temperature values were within the level of significance. The maximum surface temperature decreased by 0.0450℃ when the green area ratio increased by 1% and increased by 0.0321℃ when the impermeable area ratio increased by 1%. It was determined that the surface reduction effect through increases in the green area ratio was 29% higher than the increasing effect of surface temperature due to the impermeable land ratio.

유역의 도시화에 따른 유출변화특성 (Characteristics of Runoff Variation due to Watershed Urbanization)

  • 허창환
    • 한국수자원학회논문집
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    • 제36권5호
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    • pp.725-740
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    • 2003
  • 도시화에 따라 인구집중과 광역화로 인하여 자연환경이 크게 변화하였으며, 특히 인간의 활동은 새로운 유출양상을 가져오는 원인이 되었다. 본 연구에서는 도시의 개발에 따른 도시화 전$\cdot$후의 지형인자가 변화함으로써 야기되는 유출변화 특성을 해석하였다. 도시화유역에서의 유출에 ILLUDAS 모형을 이용하였으며, 다음과 같은 결론을 얻었다. 도시화 전$\cdot$후의 첨두발생시간을 살펴보면, 약 15∼35 분 정도 단축되었으며, 도시화 후의 첨두홍수량은 최대 60 % 정도 증가함을 알 수 있었다.

단지내 차도용 투수성 포장의 물순환 효과분석 (An Analysis on the Hydrologic Cycle Effect of Rodway Permeable Pavement in Rasidential Site)

  • 이정민;현경학;여옥경
    • 한국물환경학회지
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    • 제26권4호
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    • pp.691-699
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    • 2010
  • In recent years, increases in impervious areas with rapid urbanization and land use changes are causing numerous hydrologic cycle and environmental problems. Impermeable pavement have a various defect such as collection rainwater, decreasing of sliding resistance, and etc. In this study, the hydrologic cycle effect of permeable pavement were analyzed by the experiment and the numerical simulation. The numerical model used was a modified SWMM especially for considering the hydrologic cycle effect of permeable pavement. The parameters of modified SWMM were revised by the experimental results. Also, the effects of runoff quantity reduction are reviewed when permeable pavement is applied to Incheon Cheongna watershed. The hydrologic cycle analysis of Incheon Cheongna watershed, continuous simulations of urban runoff were performed. The analysis results of permeable pavement setup effect on runoff are follows: the surface runoff after permeable pavement setup decreases to 74.35% of the precipitation whereas the surface runoff before permeable pavement setup amounts to 81.38% of the precipitation; the infiltration after permeable pavement setup increases to 15.13% of the precipitation whereas the infiltration before permeable pavement setup amounts to 8.32% of the precipitation.