• Title/Summary/Keyword: LID(Low impact development)

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Predicting the influent properties in an infiltration trench through deep learning analysis (딥러닝 분석을 통한 침투도랑 내 유입수 성상 예측분석)

  • Jeon, Minsu;Choi, Hyeseon;Geronimo, Franz Kevin;Heidi, Guerra;Jett, Reyes Nash;Kim, Leehyung
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.363-363
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    • 2022
  • LID 시설에 대한 모니터링은 인력을 활용한 실강우 모니터링을 진행하고 있으나 LID 시설은 소규모 분산형시설로서 인력을 동원한 식생고사, 강우시 모니터링, 현장답사 등 꾸준한 시설확인에 한계가 있으며, LID 시설을 조성한 이후 적정한 유지관리 방법(주기, 빈도, 항목 등)을 인지하지 못하여 막힘현상, 효율저하, 식물고사 등의 문제가 발생한다. 따라서 본연구에서는 딥러닝 분석을 활용하여 강우시 강우모니터링 자료와 LID 시설 내 센서를 통해 측정된 자료를 통해 침투도랑 내 유입수 성상에 대한 예측분석을 수행하였다. 심지 내 LID 시설에 유입되는 오염물질을 예측을 위한 딥러닝 분석을 위해 과거 실강우시 모니터링 자료(TSS, COD, TN, TP)와 대기센서(대기습도, 대기온도, 강수량, 미세먼지) 데이터를 활용하여 딥러닝 모델에 대한 적용가능성 평가를 수행하였다. 측정항목에 대한 상관성 분석을 수행하였으며, 딥러닝 모델은 Tenser Flow를 이용하여 DNN(Deep Neural Network)모델을 활용하여 분석하였다. DNN 모델에 대한 MSE값은 0.31로 분석되었으며, TSS에 대한 평균 50.6mg/L로 분석되었으며, COD 평균 98.7 mg/L로 나타났다. TN의 평균 2.21 mg/L로 분석되었으며, TP 평균 0.67 mg/L로 나타났다. 상관계수분석결과 TSS는 0.53로 분석되었으며, TN과 TP의 상관계수는 0.10, 0.56으로 나타났다. COD의 상관계수는 0.63으로 TSS와 COD, TP에 대한 예측이 된 것으로 분석되었다. 딥러닝을 통한 LID 시설 내 농도변화 예측시 강우시 센서데이터 값은 조밀해야하며 오염물질 농도와 상관성이 높은 항목들에 대해 계측과 실강우 모니터링 자료를 축적하여 미래에 대한 활용성을 높여야 한다.

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A Study on The Introduction of LID Prior Consultation for Small-Scale Development Projects - Focusing on Cost-Benefit Analysis - (소규모 개발사업의 저영향개발(LID) 사전협의 제도 도입 연구 - 비용편익 분석을 중심으로 -)

  • Ji, Min-Kyu;Sagong, Hee;Joo, Yong-Jun
    • Clean Technology
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    • v.26 no.2
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    • pp.151-157
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    • 2020
  • Rapid urbanization has elevated the risk of urban flooding due to the increase in the impervious surface, causing environmental disasters and environmental pollution problems, such as lowering the groundwater level and increasing water pollution. In Korea, low impact development (LID) techniques have been introduced to minimize these environmental impacts and maintain the water cycle soundness. However, most small-scale development projects are in blind spots because there is no legal basis for rainfall runoff management. Small-scale development projects that increase the surface runoff of rainwater are required to mandate the application of LID facilities in accordance with the polluters' responsibility principle. Therefore, it is necessary to implement a preliminary consultation system for water cycle recovery. This study focuses on the cost-benefit analysis on the application of LID techniques for small-scale development projects. The scale of nationwide small-scale development projects used for cost-benefit analysis were defined as buildings with a land area of more than 1,000 ㎡ or a total floor area of 1,500 ㎡. As a result of analyzing the cost-benefits from the installation of LID facilities, they were found to be much lower than the economic standard value of 1. This might be due to the high cost of facilities compared to the scale of the project. However, considering the overall environmental value of improving the water environment and air quality by the installation of LID facilities and the publicity of reducing the operating cost of sewage treatment facilities, the introduction of a prior consultation for small-scale development projects is inevitable. In the future, institutional and financial support from local governments is required to improve the cost-benefits with the introduction of a prior consultation for small-scale development projects.

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.

Evaluation on the adsorption and desorption capabilities of filter media applied to the nonpoint source pollutant management facilities (비점오염 저감시설에 적용되는 여재의 흡착 및 탈착 능력 평가)

  • Moon, Soyeon;Hong, Jungsun;Choi, Jiyeon;Yu, Gigyung;Kim, Lee Hyung
    • Journal of Wetlands Research
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    • v.17 no.3
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    • pp.228-236
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    • 2015
  • Urbanization causes many environmental, hydrological and ecological problems such as distortion of the natural water circulation system, increase in nonpoint source pollutants in stormwater runoff, degradation of surface water quality, and damage to the ecosystem. Due to the increase in impervious surface by urbanization, developed countries apply low impact development (LID) techniques as important alternatives to reduce the impacts of urbanization. In Korea, LID techniques were employed since 2012 in order to manage nonpoint source pollutants. LID technology is a technique for removing pollutants using a variety of physical, chemical and biological mechanisms in plants, microorganisms and filter media with the reduced effluence of stormwater runoff by mimicking natural water circulation system. These LID facilities are used in a variety of filter media, but an assessment has not been carried out for the comprehensive comparison evaluation of adsorption and desorption characteristics for the pollutant removal capacity. Therefore, this study was conducted to analyze the adsorption and desorption characteristics of various filter media used in the LID facilities such as sand, gravel, bioceramic, wood chips and bottom ash etc. in reducing heavy metals(Pb, Cu). In this study, the adsorption affinity for Pb in all filter media was higher than Cu. Pseudo second order equation and Langmuir-3 isotherm are more applicable in the adsorption kinetic model and adsorption isotherm model, respectively. As a result of the desorption experiment, the filter media does not exceed KSLT which is the hazardous substance leaching limit, showing the capability of the filter media in LID. The bioceramic and woodchip as filter medias were evaluated and exhibited excellent adsorption capacity for Pb.

Effects of the ground water level on the stability of an underpass structure considering the degree of surface imperviousness (지표면 유출 특성을 고려한 지하수위 변화가 지하차도 구조물 안정성에 미치는 영향)

  • Jo, Seon-Ah;Hong, Eun-Soo;Cho, Gye-Chun;Jin, Kyu-Nam;Lee, Jung-Min;Han, Shin-In
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.18 no.1
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    • pp.95-107
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    • 2016
  • Ground water is one of important parameters in the designs of underpass structures because urban areas are characterized by soil ground which is relatively permeable than rock ground and a high level of ground water due to low elevation. Therefore, it is important properly to predict variations of the ground water when they can affect underpass structures. In this study, a series of numerical analyses are performed to predict the variations of ground water levels considering the degree of surface imperviousness and LID(Low Impact Development) application. In turn the stability of underground structure is assessed using predicted ground water level. The results show that an increase in the impervious surface area decreases the ground water level. The application of permeable pavement as a LID facility increases the ground water level, improving the infiltration capacity of rainfall into the ground. Seasonal variations of the ground water level are also verified in numerical simulation. The results of this study suggest that reasonable designs of underpass structures can be obtained with the suitable prediction and application of the ground water level considering the surface characteristics.

Determination of the Priority Area of Permeable Pavement for Groundwater Resources Management in Pyeongtaek Region (평택 지역의 지하수자원 관리를 위한 투수성 포장재 적용 우선지역 선정)

  • Kim, Il Hwan;Yang, Jeong Seok
    • Proceedings of the Korea Water Resources Association Conference
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    • 2016.05a
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    • pp.137-137
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    • 2016
  • 최근 지역의 발전으로 인한 도시화로 인해 수문순환에 많은 변화가 생기고 있다. 이와 더불어 기후변화로 인해 강우의 패턴이 변화하면서 연간 강우량은 증가하고 있는 추세로 나타나고 있다. 또한 무강우일수가 증가하여 강우가 특정기간에 집중되어 내려 도심지에서는 유출량과 첨두유량이 급격하게 증가하고 도달시간이 짧아졌으며, 지하로 함양되는 수자원이 줄어들고 있다. 이와 같이 변화하는 수문순환으로 인해 수자원 확보에 대한 문제가 발생하고, 2차적으로 지하수위의 저하 등으로 지반침하, 싱크홀 등의 피해가 발생하고 있다. 이와같은 피해를 방지하기 위해 최근 LID(Low Impact Development, 저영향개발) 등의 기법을 이용하는 연구가 활발히 진행되고 있다. 본 연구에서는 현재 도시화가 진행 중인 평택지역을 대상으로 지하수자원 관리를 위해 LID 기법 중 투수성 포장재를 적용하고 이에 대한 효과 분석을 Visual MODFLOW를 통해 진행한다. 각 지역의 효과 분석 결과로 TOPSIS를 이용하여 투수성 포장재 우선 적용 지역을 선정한다. 이를 통해 한정된 자원 내에서 우선지역을 선정하여 최선의 효과를 나타내도록 한다.

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Development of small constructed wetland for urban and roadside areas (도시 및 도로 조경공간을 활용한 소규모 인공습지 조성 기술)

  • Kang, Chang-Guk;Maniquiz, Marla C.;Son, Young-Gyu;Cho, Hye-Jin;Kim, Lee-Hyung
    • Journal of Wetlands Research
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    • v.13 no.2
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    • pp.231-242
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    • 2011
  • Recently, the green spaces in the urban areas were greatly reduced due to urbanization and industrialization. As urban structures such as roads and buildings are built, the amount of impervious area within a watershed increases. High impervious surfaces are the common causes of high runoff volumes as the soil infiltration capacity decreases and the volume and rate of runoff increase thereby decreasing the groundwater recharge. These effects are causing many environmental problems, such as floods and droughts, climate change, heat island phenomenon, drying streams, etc. Most cities attempted to reduce sewer overflows by separating combined sewers, expanding treatment capacity or storage within the sewer system, or by replacing broken or decaying pipes. However, these practices can be enormously expensive than combined sewer overflows. Therefore, in order to improve these practices, alternative methods should be undertaken. A new approach termed as "Low Impact Development (LID)" technology is currently applied in developed countries around the world. The purpose of this study was to effectively manage runoff by adopting the LID techniques. Small Constructed Wetland(Horizontal Subsurface Flow, HSSF) Pilot-scale reactors were made in which monitoring and experiments were performed to investigate the efficiency of the system in removing pollutants from runoff. Based on the results of the Pilot-plant experiments, TSS, $COD_{Cr}$, TN, TP, Total Pb removal efficiency were 95, 82, 35, 91 and 57%, respectively. Most of the pollutants were reduced after passing the settling tank and the vertical filter media. The results of this study can contribute to the conservation of aquatic ecosystems and restoration of natural water cycle in the urban areas.

An Analysis of Flood Mitigation Effect Applying to LID in Mokgamcheon Watershed using SWMM Model (SWMM 모형을 이용한 목감천 유역의 LID 시설 적용 홍수저감효과 분석)

  • Jang, Yeongsun;Mun, Sungho;Yang, Sunglin
    • International Journal of Highway Engineering
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    • v.15 no.3
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    • pp.75-83
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    • 2013
  • PURPOSES: In this study, flood mitigation effect of drainage asphalt concrete pavement were analyzed by a SWMM 5.0 program in order to evaluate the low impact development (LID) based on the drainage asphalt concrete pavements. METHODS: In order to determine the porosity parameters of drainage asphalt concretes, the specimen mixtures were manufactured using the conditions presented in the previous study. The numerical simulation was conducted using the SWMM 5.0 program considering the flood mitigation effect of drainage asphalt concrete pavements. The effect of flood reduction can be observed when drainage asphalt concrete pavements were applied to Mokgamcheon watershed. The flood mitigation effect analysis of Mokgamcheon watershed as well as continuous simulation of subwatershed runoff were performed through this study. RESULTS : The analysis of drainage asphalt concrete pavements was carried out for evaluating the effect on runoff, resulting in: the peak flow decreases up to 1.26~9.53% after drainage asphalt concrete pavements applied in the SWMM 5.0 program furthermore, the discharge decreases up to 0.55~4.11%. CONCLUSIONS: As a result, the reduced peak flow and discharge were found through the SWMM 5.0 program. It can be concluded that the flood is effectively reduced when the drainage asphalt concrete pavements are used.

Study for improvement of water cycle in waterfront (수변지역의 물순환 개선 방안 연구)

  • Baek, Jong Seok;Lee, Sang Jin;Kim, Hyeong San;Kim, Baek Joong
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.337-337
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    • 2018
  • 시민들은 삶의 질 향상 및 친환경적 어메니티의 수요 증가로 수변지역에 대한 관심이 집중되고 있다. 수변지역은 물에 인접한 지역이라 친수 공간으로서의 긍정적 기능을 많이 포함하고 있으나, 방재 측면에서는 많은 위험성을 내포하고 있다. 수변지역에 적합한 물순환 기준을 정립하여 보다 안전하고 건강한 친수공간의 접근성을 시민들에게 제공하여야 한다. 본 연구에서는 수변지역을 물수지 분석 방법으로 접근하여 강우, 침투, 증발산, 유출 등의 변수들이 LID(Low Impact Development) 기술 적용에 의해 빗물의 저장과 침투가 유출의 감소로 이어질 수 있도록 물순환 기준을 산정해보았다. 물순환은 강우를 기준으로 처리할 목표량을 계획한 후, 침투량을 우선 산정하고 나머지 유량은 저장으로 처리하도록 프로세스화 하였다. 먼저, 물순환 목표량은 대상지의 강우와 유출 특성을 분석하여 기준을 수립한다. 이후 대상지의 토지이용과 토양 등의 지형학적 상태를 고려하여 각각의 세분화된 소유역의 침투량 규모를 산정한다. 목표량에서 침투량을 제한 나머지 유출량은 빗물통과 같은 LID 저장 기술로 해결할 수 있도록 저장 규모를 산정한다. 이상의 프로세스로 수변지역의 물순환 목표량을 LID 기술의 저장과 침투의 방법으로 해결할 수 있다. 이와 같은 방식으로 전국 각지의 수변지역 특성에 맞는 적합한 물순환 기준을 제시하여 보다 안전하고 건강한 친수 공간을 설계할 수 있도록 한다.

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An Experimental Study on Denitrification Efficiency of Agricultural Byproducts for Prevention of Nitrate Contamination from LID or Groundwater Recharge Facilities (지하수 함양시설 또는 LID시설에서의 질산성질소 오염방지를 위한 농업부산물의 탈질효율 실험연구)

  • Lee, Jinwon;Phung, Thanh Huy;Lee, Byungsun;Kim, Kangjoo;Lee, Gyusang
    • Journal of Soil and Groundwater Environment
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    • v.26 no.6
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    • pp.82-94
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    • 2021
  • Facilities for low impact development (LID) or groundwater recharge have the high potential spreading groundwater nitrate contamination because of the rapid infiltration. This study was initiated to remove nitrate from the waters using agricultural byproducts as organic sources for denitrification during infiltration. As the first step of this purpose, we experimentally tested the denitrifying efficiency of 4 organic materials (pine tree woodchips, cherry leaves, rice straws, and rice hulls) and tried to identify the key factors controlling the efficiency. For this study, we precisely investigated the change of chemical reactions during the experiment by analyzing various geochemical parameters. The result shows that the denitrification efficiency is not simply linked to the availability of the easily decomposable contents in the organic matter. It is found that avoiding the severe pH decrease due to the CO2 generation is the essence to derive the efficient denitrifying conditions when organic matters were used.