• Title/Summary/Keyword: 저영향개발기법

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Hydrological Evaluation Design Factors Setting of Green Roof System Based on Model(K-LIDM) (모형을 기반으로 한 옥상녹화시스템의 수문학적 평가 설계인자 설정)

  • Kim, Jae Moon;Kim, Sae Boom;Jang, Young Su;Kim, Byung Sung;Shin, Hyun Suk
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.272-272
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    • 2020
  • 급격한 도시화와 기후변화로 인해 기존 물순환 체계가 왜곡됨에 따라 저영향개발(Low Impact Development) 기법의 필요성이 증가하고 있는 추세이다. LID 요소 중 하나인 옥상녹화는 국내에 도입이 많이 되었고 적정 설계인자를 설정하기 위해 지속적으로 연구를 수행하고 있다. 따라서 본 연구에서는 옥상녹화 설계인자의 설정과 수문·식생·토양을 고려한 시나리오 구축을 통해 국내 물순환 모형인 K-LIDM을 이용하여 옥상녹화의 정량적 물순환 효율성 분석을 수행하였다. 대상유역은 한국 그린인프라 저영향개발센터 내 옥상녹화 실험장으로 옥상녹화에서 계측하고 있는 측정값을 기반으로 K-LIDM 모형 검보정을 수행하고 옥상녹화의 설계인자에 따른 시나리오를 통해 수문학적 성능평가를 수행하였다. 단기강우 시나리오를 적용하였을 때 옥상녹화는 일반콘트리트 옥상에 비해 5.25 ~ 36.48%의 유출저감률이 산정되었으며, 유출저감 한계효율은 지속시간 60분, 120분, 180분 일 때 각각 8.93%, 6.17%, 5.25%로 산정되었다. 장기강우 시나리오를 적용하였을 때는 연평균 53.54%의 유출저감률이 산정되었다. 또한 토심의 증가에 따른 유출량 감소는 관목>교목>지피 식물 순으로 나타났으며, 토심이 1cm 증가할 때의 저감유출랴은 지피 식물의 경우 0.0002㎥/s, 교목의 경우 0.0005㎥/s, 관목의 경우 0.0008㎥/s로 나타났다. 옥상녹화는 건물 설계에 따른 적재하중과 환경조건, 식물선정, 생육에 많은 영향을 받는 기술요소이므로 다양한 시나리오를 통한 수문학적 성능평가가 필요시 된다. 본 연구결과는 정량적 옥상녹화시스템 효율성 검증을 실시하기 위한 옥상녹화 설계가이드라인에서 고려사항을 제시할 수 있는 기준이 될 것이라고 기대된다.

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Characteristics and Fate of Stormwater Runoff Pollutants in Constructed Wetlands (도시지역에 적용가능한 인공습지에서의 강우유출수 함유 오염물질의 거동과 특성)

  • Alihan, Jawara Christian;Maniquiz-Redillas, Marla;Choi, Jiyeon;Flores, Precious Eureka;Kim, Lee-Hyung
    • Journal of Wetlands Research
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    • v.19 no.1
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    • pp.37-44
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    • 2017
  • Nonpoint source (NPS) pollution continues to degrade the water quality. NPS pollutants signals high concerns against a sustainable environment. Low impact development (LID) is the leading management practice which regulates and treats stormwater runoff especially in highly impervious urban areas. Constructed wetlands are known to have efficient removal capability of NPS pollutants. Likewise, these LID facilities were intended to maintain the predeveloped hydrologic regime through series of mechanisms such as particle settling, filtration, plant uptake, and etc. In this study, the objective was to investigate the characteristics, fate and treatment performance of the two in-campus constructed wetlands (SW1 and SW2) which were installed adjacent to impervious roads and parking lots to treat stormwater runoff. A total of 42 storm events were monitored starting from July 2010 until November 2015. Manual grab sampling was utilized at the inlet and outlet units of each LID facilities. Based on the results, the wetlands were found to be effective in reducing 37% and 41% of the total runoff volume and peak flows, respectively. Aside from this, outflow EMCs were generally lower than the inflow EMCs in most events suggesting that the two wetlands improved the water quality of stormwater runoff. The average removal efficiency of pollutants in facilities were 63~79% in TSS, 38~54% in TN, 54% in TP and 32%~81% in metals. The results of this study recommend the use of constructed wetlands as efficient treatment facility for urban areas for its satisfactory performance in runoff and pollutant reduction.

Seismic Fragility Curves for Multi-Span Concrete Bridges (다경간 콘크리트 교량의 지진 취약도)

  • Kim, Sang-Hoon
    • Journal of the Earthquake Engineering Society of Korea
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    • v.7 no.6
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    • pp.35-47
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    • 2003
  • Seismic ground motion can vary significantly over distances comparable to the length of a majority of highway bridges on multiple supports. This paper presents results of fragility analysis of two actual highway bridges under ground motion with spatial variation. Ground motion time histories are artificially generated with different amplitudes, phases, as well as frequency contents at different support locations. Monte Carlo simulation is performed to study dynamic responses of the bridges under these ground motions. The effect of spatial variation on the seismic response is systematically examined and the resulting fragility curves are compared with those under identical support ground motion. This study shows that ductility demands for the bridge columns can be underestimated if the bridge is analyzed using identical support ground motions rather than differential support ground motions. Fragility curves are developed as functions of different measures of ground motion intensity including peak ground acceleration(PGA), peak ground velocity(PGV), spectral acceleration(SA), spectral velocity(SV) and spectral intensity(SI). This study represents a first attempt to develop fragility curves under spatially varying ground motion and provides information useful for improvement of the current seismic design codes so as to account for the effects of spatial variation in the seismic design of long-span bridges.

Analyzing the Efficiency of LID Technique for Urban Non-point Source Management - Focused on City of Ulsan in Korea - (저영향개발기법 적용을 통한 비점오염원 저감 및 비용효율 분석에 관한 실증적 연구 - 울산광역시를 대상으로 -)

  • Lim, Yong-Kyun;Jung, Ju-Chul;Shin, Hyun-Suk;Ha, Gyoung-Jun
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.17 no.2
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    • pp.1-14
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    • 2014
  • The purpose of this study is to identify the efficiency of LID technologies for controlling non-point source pollution from urban areas. The recent technical responses to managing water resource and urban areas according to the influence of climate change is an important national policy, along with green growth. Through various reference studies reasonable ways to consider a wholistic plan on urban-eco-friendly river management, the Low Impact Development (LID) as the adequate river management method is being undertaken in foreign countries to technically apply to urban plans. However, the LID is at the initial stage in Korea, with no specific studies implemented. Thus, this study explored whether LID technologies can be efficient measures to control non-point source pollution on the cost side. Ulsan's Namgu and Bukgu have been chosen as case studies that illustrate the efficiency of the LID technologies. On investigation, if LID technologies are designed properly, the efficiency of them is expected to higher than that of sewage treatment plant.

Indoor Location Estimation and Navigation of Mobile Robots Based on Wireless Sensor Network and Fuzzy Modeling (무선 센서 네트워크와 퍼지모델을 이용한 이동로봇의 실내 위치인식과 주행)

  • Kim, Hyun-Jong;Kang, Guen-Taek;Lee, Won-Chang
    • Journal of the Korean Institute of Intelligent Systems
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    • v.18 no.2
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    • pp.163-168
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    • 2008
  • Navigation system based on indoor location estimation is one of the core technologies in mobile robot systems. Wireless sensor network has great potential in the indoor location estimation due to its characteristics such as low power consumption, low cost, and simplicity. In this paper we present an algorithm to estimate the indoor location of mobile robot based on wireless sensor network and fuzzy modeling. ZigBee-based sensor network usually uses RSSI(Received Signal Strength Indication) values to measure the distance between two sensor nodes, which are affected by signal distortion, reflection, channel fading, and path loss. Therefore we need a proper correction method to obtain accurate distance information with RSSI. We develop the fuzzy distance models based on RSSI values and an efficient algorithm to estimate the robot location which applies to the navigation algorithm incorporating the time-varying data of environmental conditions which are received from the wireless sensor network.

A Study on Waterfront Planning and Design from the Perspective of Resilience - Focusing on Resilient by Design Challenge and Sponge City (리질리언스 관점에서 수변 공간 계획에 관한 고찰 - 리질리언트 바이 디자인 공모전과 스펀지 시티 프로젝트를 바탕으로)

  • Jinhyun Jun
    • Journal of the Society of Disaster Information
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    • v.19 no.3
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    • pp.562-571
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    • 2023
  • Purpose: This study aims to provide a direction for restructuring resilient waterfront spaces, emphasizing the severity of water-related disasters and the significance of developing responsive urban strategies. Method: To achieve this objective, the study analyzes overseas planning and design cases based on the theoretical framework of urban resilience. The goal is to identify physical and social systemic design elements that can be applied to waterfront space planning and design of Korea. Result: The proposals from the Resilient by Design Callenge included strategies for enhancing social systems and promoting sustainability in a more systematic manner. Additionally, various physical design strategies and technologies were identified in the Sponge City projects, which aim to create a flexible urban waterfront space. Conclusion: When planning and designing Korean waterfront spaces to effectively respond to disasters, several elements should be considered, such as enhancing educational functions, expanding local resident participation, establishing a governance system, developing systematic sustainable plans, adopting ecological approaches, and implementing various low-impact development techniques.

Analysis of Runoff Reduction Effect of Flood Mitigation Policies based on Cost-Benefit Perspective (비용-편익을 고려한 홍수 대응 정책의 유출 저감 효과 분석)

  • Jee, Hee Won;Kim, Hyeonju;Seo, Seung Beom
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.43 no.6
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    • pp.721-733
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    • 2023
  • As the frequency of extreme rainfall events increase due to climate change, climate change adaptation measures have been proposed by the central and local governments. In order to reduce flood damage in urban areas, various flood response policies, such as low impact development techniques and enhancement of the capacity of rainwater drainage networks, have been proposed. When these policies are established, regional characteristics and policy-effectiveness from the cost-benefit perspective must be considered for the flood mitigation measures. In this study, capacity enhancement of rainwater pipe networks and low impact development techniques including green roof and permeable pavement techniques are selected. And the flood reduction effect of the target watershed, Gwanak campus of Seoul National University, was analyzed using SWMM model which is an urban runoff simulation model. In addition, along with the quantified urban flooding reduction outputs, construction and operation costs for various policy scenarios were calculated so that cost-benefit analyses were conducted to analyze the effectiveness of the applied policy scenarios. As a result of cost-benefit analysis, a policy that adopts both permeable pavement and rainwater pipe expansion was selected as the best cost-effective scenario for flood mitigation. The research methodology, proposed in this study, is expected to be utilized for decision-making in the planning stage for flood mitigation measures for each region.

The Application of Nature-Based Technologies for Addressing Urban Environmental Problems (도시 환경 문제를 해결하기 위한 자연 기반해법의 적용)

  • Haque, Md Tashdedul;Reyes, Nash Jett DG.;Lee, Jung-min;Guerra, Heidi B.;Jeon, Minsu;Choi, Hyeseon;Kim, Lee-Hyung
    • Journal of Wetlands Research
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    • v.24 no.4
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    • pp.367-376
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    • 2022
  • LID technologies are capable of mitigating the negative impacts of non-point source (NPS) pollution generated in different land uses. Apart from the increase in point and non-point pollutant generation, highly developed and paved areas generally affect microclimate conditions. This study evaluated both the efficiency of Low Impact Development (LID) facilities in treating NPS pollutant loads as well as the unit pollutant loads (UPL) generated in various urban features (such as parking lots and highways). This investigation also looked at how LID technology helped to alleviate Urban Heat Island (UHI) conditions. As compared to the typical unit pollutant loads in South Korea, the unit pollutant loads at Kongju National University were relatively low, because of no classes, limited vehicular transmission, and low anthropogenic activities during vacation. After receiving treatment from the LID facilities, the effluent pollutant loads were significantly decreased. The sedimentation in filtration mechanisms considerably reduced the pollutant fractions in the influent. Additionally, it was shown that LID facilities' mean surface temperatures are up to 7.2℃ lower than the nearby paved environment, demonstrating the LID systems reducing the UHI impact on an urban area.

An Algorithm with Low Complexity for Fast Motion Estimation in Digital Video Coding (디지털 비디오 부호화에서의 고속 움직임 추정을 위한 저복잡도 알고리즘)

  • Lee, Seung-Chul;Kim, Min-Ki;Jeong, Je-Chang
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.31 no.12C
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    • pp.1232-1239
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    • 2006
  • In video standards such as MPEG-1/2/4 and H.264/AVC, motion estimation / compensation(ME/MC) process causes the most encoding complexity of video encoder. The full search method, which is used in general video codecs, exhausts much encoding time because it compares current macroblock with those at all positions within search window for searching a matched block. For the alleviation of this problem, the fast search methods such as TSS, NTSS, DS and HEXBS are exploited at first. Thereafter, DS based MVFAST, PMVFAST, MAS and FAME, which utilize temporal or spacial correlation characteristics of motion vectors, are developed. But there remain the problems of image quality degradation and algorithm complexity increase. In this thesis, the proposed algorithm maximizes search speed and minimizes the degradation of image quality by determining initial search point correctly and using simple one-dimension search patterns considering motion characteristics of each frame.

Structural Safety Evaluation by Analysis of Pressure Variation Characteristics of Small Hydro Power Hydraulic Turbine Blades in Sewage Treatment Plant (하수처리장 소수력 수차 블레이드의 압력변화 특성 분석을 통한 구조안전성 평가)

  • Park, Yoo-Sin;Kim, Ki-Jung;Youn, Byong-Don
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.21 no.6
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    • pp.126-131
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    • 2017
  • Numerical analysis using commercial CFD code was carried out to develop the drag force type vertical axis hydraulic turbine for the improvement of the production efficiency of small hydro energy at low flow velocity condition. Blade pressure changes and internal flows were analyzed according to the presence or absence of the hydraulic turbine blade holes at flow velocity of less than 1.0~3.0 m/s. According to the numerical results, the pressure and flow velocity is severly affected by the flow velocity in turbine blade with no holes, while the influence of flow velocity is comparatively decreased in turbine blade with holes. It is also found that the pressure and flow velocity on the blade surface with holes are evenly distributed with no singular location and it is believed that forming a hole in the blade may be helpful in terms of structural safety.