• Title/Summary/Keyword: LID

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Analysis of Effect on Runoff and Water Quality of LID using Infiltration Facilities (우수 침투 시설을 활용한 친환경 도시 개발지구에서의 유출량 및 비점오염 저감 효과 분석)

  • Hwang, Jin-Yong;Yeon, Kyu-Seok;Kim, Ik-Jae;Kim, Ki-Sung;Choi, Joong-Dae;Jeon, Ji-Hong;Lim, Kyoung-Jae
    • Journal of The Korean Society of Agricultural Engineers
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    • v.51 no.6
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    • pp.105-114
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    • 2009
  • With urbanization in many countries, many pervious areas are being converted into impervious areas. These land use changes cause many negative impacts on runoff and water quality in the areas. Especially runoff volume and peak runoff are increasing with urbanization. In addition to the increased runoff, more pollutant transports to the downstream areas. For these reasons, Low Impact Development (LID) are nowadays being introduced in urban planning. For environment-friendly and economical urban development, the LID Integrated Management Practices (IMPs) are applied in various urban development. However, exact effects on runoff and water quality of various LID IMPs are not assessed with proper LID evaluation technique. Thus, the SWMM (Storm Water Management Model) 5.0 model was slightly modified to simulate the effect of infiltration manhole on runoff and water quality. For comparison of runoff and TSS (Total Suspended Solids) from the study area (26.5 ha), three scenarios were made in this study. It was found that runoff volume, peak runoff, and TSS could be reduced with infiltration manholes and pervious pavements to some degree. Although, there are many limitations in the analysis of LID effects on runoff and TSS, similar trends shown in this study would be expected with site-specific LID IMPs. Thus, it is strongly recommended that various site-specific LID IMPs, such as infiltration facilities, should be applied as much as possible for environment-friendly urban planning.

The Study on Development and Verification of Rainfall-Runoff Simulator for LID Technology Verification (LID 기술의 효율성 검증을 위한 강우-유출 모의장치 개발 및 검증실험에 관한 연구)

  • Jang, Young Su;Kim, Mi Eun;Baek, Jong Seok;Shin, Hyun Suk
    • Journal of Korea Water Resources Association
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    • v.47 no.6
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    • pp.513-522
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    • 2014
  • Climate change and urbanization have affected a increase of peak discharge and water pollution etc. In a view of these aspects, the LID(Low Impact Development) technology has been highlighted as one of adjustable control measures to mimic predevelopment hydrologic condition. Many LID technologies have developed, but there is a lack of studies with verification of LID technology efficiency. Therefore this study developed a rainfall-runoff simulator could be possible to verify LID technology efficiency. Using this simulator, this study has experimented the rainfall verification through the rainfall distribution experiment and the experiment to show the relation between inflow and effective rainfall in order to sprinkle the equal rainfall in each unit bed. As a result, the study defined the relation between allowable discharge range and RPM by nozzle types and verified the hydrologic cycle such as the relation between infiltration rate, surface runoff and subsurface runoff at pervious area and impervious area through the rainfall-runoff experiment.

An Analysis on Application Effect of LID Techniques based on SWMM Model for Oncheon Basin by Dong (SWMM 모형을 이용한 온천천 유역 동별 LID 기법 적용 효과 분석)

  • Baek, Jong seok;Kim, Mi eun;Kim, Jae moon;Lee, Sang jin;Shin, Hyun suk
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.456-456
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    • 2015
  • 최근 집중호우 및 돌발홍수로 인한 물관련 피해가 늘어감에 따라 도시화된 유역의 물관리 연구에 많은 초점이 모아지고 있다. 도시 유역의 물순환에 대한 하나의 해결방법으로 각광받고 있는 LID(Low Impact Development)에 관한 많은 연구가 이루어지고 있다. 본 연구에서는 법정행정구역도를 따라 온천천 유역을 각 동별로 나누어 LID를 설치하였을 때 적용 효과가 가시적으로 나타나는 소유역을 확인하기 위하여 SWMM 모형을 통해 시뮬레이션을 실시하였다. LID 요소기술로는 토지피복에 따라 주택지에는 옥상녹화, 도로에는 투수성포장을 설치하여 각 동별로 LID 적용 전 후에 대한 유출량, 침투량, 첨두유량, 유출계수 등을 비교 및 분석하는 연구를 수행하였다. 온천천 유역 14개 동에 대한 분석을 실시한 결과, 유출량 감소율의 경우 수민동(85.24%), 거제동(83.23%), 명장동(82.81%), 침투량 증가율은 수민동(162.8%), 안락동(105.1%), 복산동(71.03%) 순으로 하천 주변의 거주지가 밀집된 지역에 가시적인 효과가 나타났으며, 첨두유량 감소율은 청룡동(81.82%), 장전동(80.37%) 부곡동(79.39%) 순으로 소유역의 경사가 급한 지형에 효과가 좋은 것으로 나타났다. 유출계수 감소율은 유출량 감소율의 경우와 마찬가지로 나타났다. 도시 유역에 보다 나은 물순환을 위하여 LID 요소기술을 설치할 때 저감시키거나 증가시키려는 매개변수를 확실히 선정하는 것이 LID 효과를 극대화 할 수 있다는 점을 확인하였다.

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Analysis of Rainfall Runoff Reduction Effects Based on Low Impact DevelopmentFacility Monitoring Data (저영향시설(LID) 모니터링 자료 보정을 통한 유출저감 효과 분석)

  • Lee, Inhwa;Ahn, Jeahwang;Yi, Jaeeung
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.157-157
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    • 2017
  • 우리나라에서는 급속도로 진행되고 있는 도시화의 영향으로 토지사용 방법이 변화함에 따라 도심지 내 불투수율이 증가하고 있으며, 불투수면적과 강우유출량 또한 증가하였다. 이러한 변화는 도심홍수, 수질오염 등의 피해를 더욱 심화시킬 뿐 아니라, 도시유역 물순환 체계 및 자연생태계 균형 파괴 등의 심각한 환경문제를 발생시키고 있다. 이에 국내 외에서 도시유역 물순환 체계 관련 다양한 대안이 검토되고 있으며 외국에서는 약 20년 전부터 저영향개발 (Low Impact Development; LID)을 통한 수자원의 활용과 환경 친화적인 개발에 관심을 기울이고 있다. 국내에서 주로 사용되는 LID 기법은 소규모 유출저감 시설과 녹지면을 이용하여 빗물을 분산시키는 분산형 유출저감 시설물이 있다. 분산형 유출저감 시설물은 빗물의 발생원에서 빗물을 침투 저류시켜 저류된 빗물은 조경용수, 청소용수, 하천 유지용수 등으로 이용하는 친환경 빗물관리 방식으로 침투도랑, 측구형 침투시설, 식생수로, 빗물 저류조, 투수성 블록 등의 다양한 시설물이 이에 포함된다. 현재 이와 같이 LID 시설물이 급속도로 증가하고 있으나 시설물의 저감효과 분석을 위한 모니터링관련 연구가 많지 않은 실정이다. 이에 본 연구에서는 LID 시설물의 유출 저감효과를 분석하기 위해 부산대학교 양산캠퍼스 실증실험단지에 설치되어 있는 LID 시설물의 모니터링 계측결과를 바탕으로 다양한 강우사상에 따른 LID 시설물의 유출저감 효과를 분석하였다. 대상지역의 정확한 유출저감 효과를 분석하기 위한 방안으로 자료의 이상치, 결측치 등을 보정하는 방안을 고려하였으며 실험실증단지에 내리는 강우의 지속시간, 총강우량, 선행강우에 따라 강우사상을 분류하여 이를 토대로 강우사상 별 LID 시설물의 유출 저감효과와 유출 지속시간에 미치는 영향을 분석하였다.

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Comparative analysis of vegetation type LID's pollutant load reduction (식생형 LID 시설별 오염물질 유출저감효율 비교분석)

  • Gil, Kyungik;Kim, Sungryul
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.209-209
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    • 2020
  • 환경부 자료에 따르면 1990년대부터 2000년대 후반까지 국내의 도시면적은 696,239㎢ 증가했다. 도시지역에서의 불투수면적이 차지하는 비율은 25% ~ 80%로 적지 않은 비율을 차지한다. 따라서 도시면적이 증가하면 이는 불투수면적의 증가로 이어지며 이로인한 지표유출로 오염물질의 유입이 늘어나게 되면, 수질오염중 비점오염원이 차지하는 비중의 증가한다. 비점오염원으로 인해 발생하는 환경문제를 해결하기 위해 LID(Low Impact Develpment)시설에 대한 연구가 많이 진행되었다. 본 연구에서는 7년간의 선행 연구결과를 바탕으로 LID 시설별 오염물질 저감효율을 비교분석하였다. 용인 삼계리에 위치한 식생수로 오염지표들의 유입, 유출EMC를 토대로 제거 효율에 대한 평가를 해보면 TSS는 46%, BOD는 48%, COD는 56%. TN은 42% 그리고 TP는 58%가 나왔다. 용인 해곡동에 위치한 식생여과대의 경우 TSS는 83%, BOD는 45%, COD는 43%, TN은 39%, 그리고 TP는 62%가 나왔다. 마지막으로 전주에 위치한 식생체류지의 경우 TSS는 100%, BOD는 75%, TOC는 62%, TN은 67% 그리고 TP는 83%가 나왔다. 이들 자료를 바탕으로 효율성 평가를 해보면 먼저 식생수로의 경우 TP 저감 효율이 58%로 가장 높았으며 TN 저감 효율이 42%로 가장 낮았다. 식생여과대의 경우 TSS 저감 효율이 83%로 가장 높았으며 TN 저감 효율이 39%로 가장 낮았다. 마지막으로 식생체류지의 경우 TSS 저감 효율이 100%에 가까운 양질의 제거효율을 보여주었으며, TOC의 경우 67%로 제일 낮은 제거효율을 보였다. 위 결과를 토대로 판단을 해보면 식생체류지가 전반적으로 좋은 지표를 보였으며 대부분의 상황에 양호한 제거효율을 기대할 수 있다고 생각된다. 식생 LID시설은 자연친화적이며 강우유출과 오염물질을 제거할 수 있다는 장점이 있는 반면, 장치형 LID시설에 비해 넓은 부지면적을 필요로 하므로 설치 지역의 특성에 맞게 LID 시설을 시공하는것이 적절하다고 판단된다. 해당 연구결과는 향후 식생형 LID시설을 설계하는데 있어서 기초자료로 반영될 것으로 기대된다.

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Low Impact Urban Development For Climate Change and Natural Disaster Prevention

  • Lee, Jung-Min;Jin, Kyu-Nam;Sim, Young-Jong;Kim, Hyo-Jin
    • International conference on construction engineering and project management
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    • 2015.10a
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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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The Management of Nonpoint Source and Storm Water Reduction with LID Techniques in Inchon City, South Korea

  • Lim, Dohun;Lee, Yoonjin
    • Journal of Environmental Science International
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    • v.24 no.10
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    • pp.1239-1251
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    • 2015
  • Impervious areas have been expanded by urbanization and the natural structure of water circulation has been destroyed. The limits of centralized management for controlling storm water runoff in urban areas have been suggested. Low impact development (LID) technologies have been promoted as a crucial alternative, establishing a connection with city development plans to build green infrastructures in environmentally friendly cities. Thus, the improvement of water circulation and the control of nonpoint source were simulated through XP-SWMM (storm water and wastewater management model for experts) in this study. The application of multiple LID combination practices with permeable pavements, bioretention cells, and gutter filters were observed as reducing the highest runoff volume by up to 70%. The results from four different LID installation scenarios indicated that permeable paving is the most effective method for reducing storm water runoff. The rate of storm water runoff volume reduced as the rainfall duration extended. Based on the simulation results, each LID facility was designed and constructed in the target area. The LID practices in an urban area enable future studies of the analysis of the criteria, suitable capacity, and cost-efficiency, and proper management methods of various LID techniques.

Containment Evaluation of the KN-12 Transport Cask

  • Chung, Sung-Hwan;Choi, Byung-Il;Lee, Heung-Young;Song, Myung-Jae
    • Journal of Radiation Protection and Research
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    • v.28 no.4
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    • pp.291-298
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    • 2003
  • The KN-12 transport cask has been designed to transport 12 PWR spent nuclear fuel assemblies and to comply with the regulatory requirements for a Type B(U) package. The containment boundary of the cask is defined by a cask body, a cask lid, lid bolts with nuts, O-ring seals and a bolted closure lid. The containment vessel for the cask consists of a forged thick-walled carbon steel cylindrical body with an integrally-welded carbon steel bottom and is closed by a lid made of stainless steel, which is fastened to the cask body by lid bolts with nuts and sealed by double elastomer O-rings. In the cask lid an opening is closed by a plug with an O-ring seal and covered by the bolted closure lid sealed with an O-ring. The cask must maintain a radioactivity release rate of not more than the regulatory limit for normal transport conditions and for hypothetical accident conditions, as required by the related regulations. The containment requirements of the cask are satisfied by maintaining a maximum air reference leak rate of $2.7{\times}10^{-4}ref.cm^3s^{-1}$ or a helium leak rate of $3.3{\times}10^{-4}cm^3s^{-1}$ for normal transport conditions and for hypothetical accident conditions.

Decision Support System for Determination of Types and Locations of Low Impact Development Practices

  • Abdulai, Patricia Jitta;Song, Jae Yeol;Chung, Eun-Sung
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.181-181
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    • 2017
  • Low impact development (LID) practices has become important to mitigate the damage from natural disasters in urban areas. Thereby many hydrological simulation models can simulate the hydrological impact of LID practices. However, commonly used models are not able to provide specific information to most users such as where LIDs should be placed and what kind of LID should be designed. In this study, a decision support system which can be used with the EPA's SWMM was developed for the determination of LID types and locations of LID practices, named Water Management Prioritization Module (WMPM), was applied to a urbanized university campus. Eight sub-catchments were selected as feasible candidate areas for the planning of LID practices. Pre-designated infiltration trenches and permeable pavements were applied to each selected sub-catchments, followed by peak and total runoffs comparison between before/after planning of LIDs. Moreover, TOPSIS, one of a multi-criteria decision analysis method was used in the procedure of selecting target sub-catchment areas and final prioritization of LID types and locations. As a result, sub-catchments S4 with permeable pavements and S16 with infiltration trenches has shown the most decrease in total and peak runoffs, respectively. Therefore, WMPM was found to be effective in determining the best alternative among various scenarios generated and simulated.

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Study of Benefit Characteristics for Low Impact Development (LID) Facilities demonstrated in Seoul Metropolitan (서울시 저영향개발(LID) 시범 시설에 대한 편익 특성 연구)

  • Lee, Seung Won;Kim, Reeho
    • Journal of Korean Society of Environmental Engineers
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    • v.38 no.6
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    • pp.299-308
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    • 2016
  • Seoul metropolitan has established a vision as 'Healthy water-cycle city' to resolve urban water-environmental deterioration. And it established administrative structure to expand Low Impact Development (LID) facilities to recover aggravated water-cycle and water-environment. Therefore, various LID facilities are constructed and operated, however, benefit analytic plans for systematic valuation are insufficient. In this study, to analyze economic, environmental and social benefits of LID facilities, contents for benefit analysis were selected and categorized as water, energy, air quality and climate changes. As a result of quantification and valuation to the beneficial effects, LID facilities showed the total benefit as 1,191~3,292 won/yr. Characteristics of benefit distribution by analysis contents were various reflecting functional characteristics of each LID facility (Water: 30~90%, Energy: 4~44%, Air quality: <1~2%, Climate change: 5~22%). As a result of Triple Bottom Line analysis, economic benefit showed the greatest portion as 75~90%. As further studies, suggested benefit assessment plans for each LID facility should be applied to inter-connected LID systems on complex-scaled area, and synergy effects by various LID systems would be evaluated such as prevention of heat island and flood disasters.