• 제목/요약/키워드: Decentralized rainwater management

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분산식 우수관리를 위한 침투통 개발 및 적용효과 분석 (Development and Application of the Rainwater Infiltrating Equipment for the Decentralized Stormwater Managements)

  • 성종상;이태구;한영해;김연금;김남희
    • 한국조경학회지
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    • 제32권2호
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    • pp.78-85
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    • 2004
  • To manage rainwater environmentally friendly, it is necessary to let the rainwater be infiltrated naturally and make reservoirs to detain it in the chosen spot. Not only should it be prepared to handle the city flood, but also it be a necessary alternative for establishing the ecological water circular system in cities. Therefore, considering the present rainwater. management system, this study analysed the status of products which can be interchanged from existent systems to rainwater infiltrating systems. In this study, the infiltrating equipment that is applicable to the Korean drainage system was developed. The case was studied out to investigate the effects of infiltrating and the detaining ability of the developed product. The case site, block 6 of Sang-am residence, was selected and analyzed. The amount of infiltration and detention per unit of the introduced facilities, i.e., infiltrating pipes and tanks were calculated. In this research, the amount of each infiltrating tank was revealed to be 1.353 m/hr and the amount of detention as 0.299 m/hr. And the amount of each infiltrating pipe was found to be 0.541 m/hr and the amount of detention was 0.118 m/hr. To examine the effects of the system, the total amount of the outlet before and after installing was compared and calculated. In doing this, a basis for deciding the arrangement and number of tanks and pipes of the infiltrating system was made.

한국과 독일의 분산식 빗물관리를 위한 제도 비교 연구 (Comparative Study of the System for Decentralized Rainwater Management in Korea and Germany)

  • 한영해;이태구
    • 한국조경학회지
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    • 제34권4호
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    • pp.84-95
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    • 2006
  • This study begins by examining the reason for the lack of urban planning that takes the water cycle into consideration. While there are institutions that support environmentally friendly development or smooth water circulation, these designs are not reflected in planning nor in the real world. After reviewing foreign case studies, policy suggestions and possible policy implications for Korea are derived. In Korea, there is not a sufficient level of relevant laws or institutions systematically established to make it possible to deal with rainwater in a decentralized way. Instead, facility standards or guidelines are considered separately for the control of water and for preventing natural disasters. And even though an environmentally friendly approach is stipulated in relevant laws in terms of spatial planning, there are no planning systems or implementation tools to actualize this kind of approach. The factors that make decentralized rainwater management possible in urban planning are analyzed based on the case study of Germany. Germany requires developers to plan in order to achieve ecological urban development. In addition, as a detailed implementation tool to promote conservation of the water cycle, the law provides for various kinds of measures such as restrictions on the proportion of impervious surface area according to the use of the land, required compensation measures for environmental degradation following development, introduction of a fee for rainwater runoff and the establishment of ecological landscape planning. The actual reason these measures can be implemented however is the provision of planning guidelines and design criteria for rainwater utilization, absorption and containment, and the construction of a database for various environmental information.

SWMM-LID를 이용한 저탄소 녹색마을의 LID-분산형 빗물관리 계획에 따른 물순환 효과 분석 (Analysis of Water Cycle Effect by Plan of LID-decentralized Rainwater Management Using SWMM-LID Model in a Low-carbon Green Village)

  • 이정민;현경학;이윤상;김정곤;박용부;최종수
    • 토지주택연구
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    • 제2권4호
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    • pp.503-507
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    • 2011
  • 신도시 A에 저탄소 녹색 마을(약 40만$m^2$)을 개발하고자 한다. 저탄소 녹색 마을의 조성을 위해서는 수문 순환의 복원 또는 물순환의 복원은 필수적이다. 저탄소 녹색 마을의 자연계 물순환 복원을 위해 LID-분산형 빗물 관리 시설의 설치를 계획하였다. 물순환에 미치는 영향 분석은 저탄소 녹색마을 개발 이전과 개발 후, 그리고 LID 시설(빗물정원, 인공습지, 빗물이용시설 등)을 설치한 후의 조건에서 EPA에서 개발된 SWMM-LID 모델을 이용하여 수행하였다. 개발 전의 침투 영역의 특성, 개발 후의 상당한 녹지 공간 탓으로, 수문 순환을 복원하기 위한 LID 설치 계획은 뚜렷한 효과를 보여주지 않고 있다. 그러나 LID 시설 설치에 의한 물순환의 가능성을 볼 수는 있었다. 이는 본 연구에서 제시한 LID 시설의 설치 계획이 해당 개발 지역의 물순환을 위해서는 더 확대되어야 함을 의미한다.

빗물 유출면 및 빗물 침투시설이 주거단지 유출빗물의 pH에 미치는 영향 (The Effect of Impermeable Surface and Rainwater Infiltration Facilities on the Runoff pH of Housing Complexes)

  • 현경학;최정주;정연규
    • 환경영향평가
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    • 제19권1호
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    • pp.39-47
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    • 2010
  • In order to examine the effect of impermeable surface (rooftop, outdoor parking lot) and rainwater infiltration facilities on runoff pH, pH was measured. pH measurement spots were splash blocks accepted roof runoff of 3 sites, infiltration boxes and trenches accepted parking lot runoff and plastic rainwater harvesting facility accepted roof runoff. These measurements were operated at 3 housing complexes from 2006 to 2009. The rainwater runoff pH was influenced by the quality of the runoff surface material (concrete), the age of the building, waterproofing methods according to each housing site, antecedent rainfall conditions and others. Rain garden, infiltration boxes and trenches decreased the alkalinity of runoff by detention and infiltrating the roof and outdoor parking lot runoff. These results mean that decentralized rainwater management facilities of housing complexes can reduce effect on the outskirt aquatic ecosystem by the accumulation of substances causing pH rising in the infiltration facilities and rain garden.

물안보 및 지속가능성 제고를 위한 분산형 용수공급시스템의 도입 타당성에 관한 연구 (Feasibility Study on Introduction of Decentralized Water Supply System for Improving Water Security and Sustainability)

  • 김관엽;김성수;박노석
    • 상하수도학회지
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    • 제28권1호
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    • pp.111-124
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    • 2014
  • Decentralized water supply systems, treating the water in users'vicinity, cutting down the distribution system, utilizing the alternative water resources(rainwater harvesting, water reclamation and reuse and so on.) and saving energy and other resources, could be categorized into POU(Point-Of-Use), POE(Point-Of-Entry) and community small scale system. From the literature review, we could thought that decentralized water supply system and hybrid system(integrating centralized and decentralized water supply system within urban water management) might have strengthening comparative advantages to centralized system with respect to: (1) water security, (2) sustainability, (3) economical affordability. Even though it is difficult to derive and quantify direct benefit advantages from decentralized and hybrid system in comparison with centralized system, (1) operational cost reduction, (2) assurance for safe and stability water supply and (3) greenhouse gas reduction can be expected from successful establishment of the former.

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.

Low Impact Urban Development For Climate Change and Natural Disaster Prevention

  • Lee, Jung-Min;Jin, Kyu-Nam;Sim, Young-Jong;Kim, Hyo-Jin
    • 국제학술발표논문집
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    • The 6th International Conference on Construction Engineering and Project Management
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    • pp.54-55
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    • 2015
  • Increase of impervious areas due to expansion of housing area, commercial and business building of urban is resulting in property change of stormwater runoff. Also, rapid urbanization and heavy rain due to climate change lead to urban flood and debris flow damage. In 2010 and 2011, Seoul had experienced shocking flooding damages by heavy rain. All these have led to increased interest in applying LID and decentralized rainwater management as a means of urban hydrologic cycle restoration and Natural Disaster Prevention such as flooding and so on. Urban development is a cause of expansion of impervious area. It reduces infiltration of rain water and may increase runoff volume from storms. Low Impact Development (LID) methods is to mimic the predevelopment site hydrology by using site design techniques that store, infiltrate, evaporate, detain runoff, and reduction flooding. Use of these techniques helps to reduce off-site runoff and ensure adequate groundwater recharge. The contents of this paper include a hydrologic analysis on a site and an evaluation of flooding reduction effect of LID practice facilities planned on the site. The region of this Case study is LID Rainwater Management Demonstration District in A-new town and P-new town, Korea. LID Practice facilities were designed on the area of rainwater management demonstration district in new town. We performed analysis of reduction effect about flood discharge. SWMM5 has been developed as a model to analyze the hydrologic impacts of LID facilities. For this study, we used weather data for around 38 years from January 1973 to August 2014 collected from the new town City Observatory near the district. Using the weather data, we performed continuous simulation of urban runoff in order to analyze impacts on the Stream from the development of the district and the installation of LID facilities. This is a new approach to stormwater management system which is different from existing end-of-pipe type management system. We suggest that LID should be discussed as a efficient method of urban disasters and climate change control in future land use, sewer and stormwater management planning.

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침투도랑 시설의 유지관리 시점 산정방법에 관한 연구 (An estimation method for the maintenance timing of the infiltration trench)

  • 이승원;차성민
    • 한국물환경학회지
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    • 제36권1호
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    • pp.29-35
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    • 2020
  • To manage the non-point source pollution and restore the water circulation, many technologies including infiltration or reservoir systems were installed in the urban area. These facilities have many problems regarding maintenance as their operation period becomes lengthier. The purpose of this study was to estimate the optimal maintenance timing through a long-term load test on the infiltration trench as one of the low impact development techniques. An infiltration trench was installed in the demonstration test facility, and stormwater was manufactured by Manual on installation and operation of non-point pollution management facilities from the Ministry of Environment, Korea and entered into the infiltration trench. Particle size distribution (PSD), suspended solids (SS) removal efficiency, and infiltration rate change tests were performed on inflow and outflow water. In case of the PSD, the maximum particulate size in the outflow decreased from 64 ㎛ to 33 ㎛ as the operating duration elapsed. The SS removal efficiency improved from 97 % to 99 %. The infiltration rate changed from 0.113 L/sec to 0.015 L/sec during the operation duration. The maintenance timing was determined based on the stormwater runoff requirements with these changes in water quality and infiltration rate. The methodologies in this study could be used to estimate the timing of maintenance of other low impact development techniques.

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

  • 박형석;최환규;정세웅
    • 환경영향평가
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    • 제24권1호
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    • pp.16-34
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    • 2015
  • 불투수면(IC)이란 빗물 등의 강수가 토양 속으로 침투할 수 없는 포장 지역이라 정의할 수 있으며, 일반적으로 도시화 과정에서 형성되는 불투수면은 주로 도로(Drive way), 인도(Sidewalk), 주차장(Parking lot), 건물의 지붕(Roof) 등의 형태로 나타난다. 불투수면의 증가는 유출계수를 증가시켜 강수의 침투량 및 지하수 수위를 감소시킨다. 이로 인해 홍수기에 직접 유출량과 홍수피해를 증가시키고, 갈수기에는 하천의 건천화를 유발하여 수생태계를 악화시킨다. 미국 환경부에서는 불투수면을 저감하기 위한 주요정책으로 LID(Low Impact Development) 또는 GI(Green Infrastructure)의 도입을 제시하고 있다. 본 연구에서는 도시 유역의 강우-유출 및 수질 해석을 위해 SWMM모형을 구축하고, 도시 유역의 대표적인 토지이용 유형에서 불투수면 영향 저감을 위한 다양한 LID 기법을 적용하고 그 효과를 평가하였다. 모형의 보정기간은 2009년 7월 17일, 검정기간은 2009년 8월 11일이며, 강우유출발생시 측정한 실측 데이터를 사용하여 검 보정을 하였다. 아파트, 학교, 도로, 공원 등으로 구성된 복합용지에 투수성 포장(Pervious cover)과 옥상녹화(Green roof)기법을 단계별로 적용하고 유출량 및 오염부하 저감에 미치는 영향을 모의한 결과, 유역 내 불투수면이 투수면으로 전환되는 비율이 증가함에 따라 강우시 발생하는 유출량과 오염물질 부하량의 저감 효과가 큰 것으로 나타났다. 특히, 건물 옥상 녹화 및 주차장과 도로에 투수성 포장을 적용한 경우, 총 유출량은 15~61 %의 저감효과를 보였으며, 오염부하량에 대해서는 TSS 22~72 %, BOD 23~71 %, COD 22~71 %, TN 15~79 %, TP 9~64 %의 저감효율을 나타냈다.

분산형 저류시설-하수관망 네트워크 시스템의 입자군집최적화 기반 모델 예측 제어 (Model Predictive Control for Distributed Storage Facilities and Sewer Network Systems via PSO)

  • 백현욱;류재나;김태형;오재일
    • 한국지능시스템학회논문지
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    • 제22권6호
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    • pp.722-728
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    • 2012
  • 도심지역의 하수관거 시스템은 우수 수용능력 및 하수 월류 발생 등의 시스템의 한계점을 가지고 있어, 강우시 우수 유출수로 인한 침수저감과 더불어 도시비점오염원의 저감에 모두 대응할 수 있는 저류시설의 도입이 주목받고 시작하였다. 최근 환경부에서는 방재적 우수관리와 더불어 합류식 하수관거 월류수, 분류식 우수관거 유출수 처리를 포함하는 다기능 저류시설을 "하수저류시설"이라 통칭하고, 이의 도입을 적극 추진하고 있는 실정이다. 반면 대규모 단일 저류시설 설치의 경우에는 공간 확보의 문제가 발생할 수 있으며, 이에 대안으로는 중 소규모의 분산형 저류시설 설치 및 운영을 들 수 있다. 본 연구에서는 분산형 저류시설-하수관망 네트워크 시스템의 최적 운용을 위한 모델 예측 제어기법을 제안한다. 이를 위해 첫째로 네트워크 시스템의 각 구성 요소의 수리모델을 제시함으로써 보다 정밀한 하수관망 네트워크의 거동을 모사하고자 한다. 둘째로 제안된 모델을 기반으로 현재의 강우 유입량을 고려하여 각 저류조의 수위, 하수관로의 유입/유출량을 예측하여, 입자군집 최적화 알고리즘을 이용한 모델 예측 제어기법을 바탕으로 주어진 제약조건을 만족하며 상황을 바탕으로 제안된 제어기법의 사용여부에 따른 효과를 비교 분석하고, 이의 타당성을 검증하고자 한다.