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      ENVI-met을 활용한 도시개발사업에 따른 열환경 변화 분석 : 창원시를 대상으로 = An Analysis of Thermal Environment Change According to Urban Development Project Using ENVI-met Model : Focused on ChangWon

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      https://www.riss.kr/link?id=A108333161

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      다국어 초록 (Multilingual Abstract)

      This study analyzed the thermal environment before and after the project to determine the impact of an urban development project on the regional thermal environment and suggested improvement methods of spatial planning. Buildings, spatial arrangement, vegetation, soil, and surface were modeled using ENVI-met for two urban development project areas adjacent to downtown areas, which are vulnerable to urban heat. Changes in urban microclimate factors such as temperature and wind were predicted and analyzed. The analysis confirmed that, in both areas, the temperature increased due to the increase in pavement area and the formation of dense high-rise buildings after development, and the thermal environment became weak as the air circulation in the overall area deteriorated.
      Accordingly, a spatial planning plan for improving the thermal environment and securing wind fluidity for the entire target area was presented.
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      This study analyzed the thermal environment before and after the project to determine the impact of an urban development project on the regional thermal environment and suggested improvement methods of spatial planning. Buildings, spatial arrangement,...

      This study analyzed the thermal environment before and after the project to determine the impact of an urban development project on the regional thermal environment and suggested improvement methods of spatial planning. Buildings, spatial arrangement, vegetation, soil, and surface were modeled using ENVI-met for two urban development project areas adjacent to downtown areas, which are vulnerable to urban heat. Changes in urban microclimate factors such as temperature and wind were predicted and analyzed. The analysis confirmed that, in both areas, the temperature increased due to the increase in pavement area and the formation of dense high-rise buildings after development, and the thermal environment became weak as the air circulation in the overall area deteriorated.
      Accordingly, a spatial planning plan for improving the thermal environment and securing wind fluidity for the entire target area was presented.

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      참고문헌 (Reference) 논문관계도

      1 송봉근 ; 박경훈 ; 정성관, "토지이용 유형별 공간특성을 고려한 ENVI-met 모델의 현장측정자료 기반의 검증" 한국지리정보학회 17 (17): 156-172, 2014

      2 이우성 ; 정성관 ; 박경훈 ; 김경태, "친환경적 공간계획을 위한 도시의 열환경 분석" 한국지리정보학회 13 (13): 142-154, 2010

      3 황희수 ; 강정은, "위성영상과 민간자동관측시스템 자료를 활용한 도시열섬과 도시오염섬의 공간 분포 특성 - 부산광역시를 대상으로 -" 한국지리정보학회 23 (23): 100-119, 2020

      4 김종성 ; 강정은, "압축형 공간구조 특성이 도시 열환경에 미치는 영향" 한국도시설계학회 19 (19): 21-36, 2018

      5 권유진 ; 이동근 ; 안새결, "미시적 열섬현상 저감을 위한 도시 가로수 식재 시나리오별 분석 - 서울시를 대상으로 -" 한국환경영향평가학회 28 (28): 23-34, 2019

      6 도우곤 ; 정우식, "도심 하천 복원에 따른 주변지역 열환경 변화 특성 분석" 한국환경과학회 28 (28): 235-248, 2019

      7 김현옥 ; 염종민, "도시지역의 토지피복유형이 지표면온도에 미치는 영향: 경기도 일산 신도시를 중심으로" 대한원격탐사학회 28 (28): 203-214, 2012

      8 송봉근, "도시지역의 기후변화 및 열섬효과 완화를 위한 환경계획 기법의 개발" 창원대학교 대학원 2014

      9 조명희 ; 조윤원 ; 김성재, "도시복원사업의 열 환경 변화 분석을 위한 ASTER 열적외 위성영상자료의 활용 -청계천 복원사업을 사례로-" 한국지리정보학회 12 (12): 73-80, 2009

      10 임은나 ; 이우성 ; 최철현 ; 송봉근 ; 정성관, "도시근린공원의 열환경 개선을 위한 열쾌적성 평가" 한국지리정보학회 16 (16): 153-170, 2013

      1 송봉근 ; 박경훈 ; 정성관, "토지이용 유형별 공간특성을 고려한 ENVI-met 모델의 현장측정자료 기반의 검증" 한국지리정보학회 17 (17): 156-172, 2014

      2 이우성 ; 정성관 ; 박경훈 ; 김경태, "친환경적 공간계획을 위한 도시의 열환경 분석" 한국지리정보학회 13 (13): 142-154, 2010

      3 황희수 ; 강정은, "위성영상과 민간자동관측시스템 자료를 활용한 도시열섬과 도시오염섬의 공간 분포 특성 - 부산광역시를 대상으로 -" 한국지리정보학회 23 (23): 100-119, 2020

      4 김종성 ; 강정은, "압축형 공간구조 특성이 도시 열환경에 미치는 영향" 한국도시설계학회 19 (19): 21-36, 2018

      5 권유진 ; 이동근 ; 안새결, "미시적 열섬현상 저감을 위한 도시 가로수 식재 시나리오별 분석 - 서울시를 대상으로 -" 한국환경영향평가학회 28 (28): 23-34, 2019

      6 도우곤 ; 정우식, "도심 하천 복원에 따른 주변지역 열환경 변화 특성 분석" 한국환경과학회 28 (28): 235-248, 2019

      7 김현옥 ; 염종민, "도시지역의 토지피복유형이 지표면온도에 미치는 영향: 경기도 일산 신도시를 중심으로" 대한원격탐사학회 28 (28): 203-214, 2012

      8 송봉근, "도시지역의 기후변화 및 열섬효과 완화를 위한 환경계획 기법의 개발" 창원대학교 대학원 2014

      9 조명희 ; 조윤원 ; 김성재, "도시복원사업의 열 환경 변화 분석을 위한 ASTER 열적외 위성영상자료의 활용 -청계천 복원사업을 사례로-" 한국지리정보학회 12 (12): 73-80, 2009

      10 임은나 ; 이우성 ; 최철현 ; 송봉근 ; 정성관, "도시근린공원의 열환경 개선을 위한 열쾌적성 평가" 한국지리정보학회 16 (16): 153-170, 2013

      11 송봉근 ; 박경훈, "도시공간을 고려한 야간시간대의 열섬특성 분석" 한국지리정보학회 15 (15): 133-143, 2012

      12 김종성 ; 강정은, "도시 열환경 개선을 위한 취약지역 선정 및 바람길 조성 방안:창원시를 대상으로" 한국환경영향평가학회 30 (30): 187-202, 2021

      13 Aboelata A., "Vegetation in different street orientations of aspect ratio (H/W 1: 1) to mitigate UHI and reduce buildings’ energy in arid climate" 172 : 106712-, 2020

      14 Santamouris M, "Using cool pavements as a mitigation strategy to fight urban heat island—A review of the actual developments" 26 : 224-240, 2013

      15 Tan Z, "Urban tree design approaches for mitigating daytime urban heat island effects in a high-density urban environment" 114 : 265-274, 2016

      16 Erell E, "Urban microclimate: designing the spaces between buildings" Routledge 2012

      17 Arnfield AJ, "Two decades of urban climate research : a review of turbulence, exchanges of energy and water, and the urban heat island" 23 : 1-26, 2003

      18 Klok L, "The surface heat island of Rotterdam and its relationship with urban surface characteristics" 64 : 23-29, 2012

      19 Choi HJ, "The numerical modeling the sensitivity of coastal wind and ozone concentration to different SST forcing" 46 : 2022-2042, 2012

      20 Morakinyo TE, "Temperature and cooling demand reduction by green-roof types in different climates and urban densities : A co-simulation parametric study" 145 : 226-237, 2017

      21 IPCC, "Summary for Policymakers In, Climate Change 2022: Impacts, Adaptation and Vulnerability. Contribution of Working Group II to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change" Cambridge University Press 2022

      22 Chen H, "Study on mitigation measures for outdoor thermal environment on present urban blocks in Tokyo using coupled simulation" 44 : 2290-2299, 2009

      23 Morakinyo TE, "Simulation study on the impact of tree-configuration, planting pattern and wind condition on street-canyon's micro-climate and thermal comfort" 103 : 262-275, 2016

      24 Catarina D, "Portugal reports more than 1,000 heat-related deaths"

      25 Li, "Optimization of vegetation arrangement to improve microclimate and thermal comfort in an urban park"

      26 Chow WTL, "Observing and modeling the nocturnal park cool island of an arid city : horizontal and vertical impacts" 103 : 197-211, 2011

      27 Winston TLC, "Observing and modeling the nocturnal park cool island of an arid city : horizontal and vertical impacts" 103 : 197-211, 2011

      28 Korean Law Information Center, "List of laws related to urban development projects"

      29 Fellenberg G., "Lebensraum Stadt" Verlag der Fachvereine Zürich 1991

      30 정길섭 ; 구슬 ; 유환희, "Landsat위성영상에 의한 용도지역 온도변화분석" 대한공간정보학회 19 (19): 55-61, 2011

      31 Fahmy M, "LAI based trees selection for mid latitude urban developments : A microclimatic study in Cairo, Egypt" 45 : 345-357, 2010

      32 Korea Meteorological Administration, "In the second half of the 21st century, summer extends to up to six months"

      33 Li J, "Impacts of landscape structure on surface urban heat islands : A case study of Shanghai, China" 115 : 3249-3263, 2011

      34 Krüger EL, "Impact of urban geometry on outdoor thermal comfort and air quality from field measurements in Curitiba, Brazil" 46 : 621-634, 2011

      35 Middel A, "Impact of urban form and design on mid-afternoon microclimate in Phoenix local climate zones" 122 : 16-28, 2014

      36 Dwivedi A, "Impact of green roof on micro climate to reduce Urban Heat Island, Remote Sensing Applications" 10 : 56-69, 2018

      37 Fan Y, "Horizontal extent of the urban heat dome flow" 7 (7): 1-10, 2017

      38 Shin BS, "Heatwave deaths were more than three times higher than typhoons and heavy rains"

      39 Taleghani M, "Heat in courtyards : a validated and calibrated parametric study of heat mitigation strategies for urban courtyards in the Netherlands" 103 : 108-124, 2014

      40 Nadia Assaf, "Green rooftops’mitigation potential on urban heat island"

      41 Hien WN, "GIS-based greenery evaluation on campus master plan" 84 : 166-182, 2008

      42 Kato S, "Estimation of storage heat flux in an urban area using ASTER data" 110 : 1-17, 2007

      43 Wong, N. H., "Environmental study of the impact of greenery in an institutional campus in the tropics" 42 : 2949-2970, 2007

      44 Cheung PK, "Comparing the cooling effects of a tree and a concrete shelter using PET and UTCI" 130 : 49-61, 2018

      45 Changwon City, "Changwon Sapa District Development Project"

      46 Changwon City, "Changwon National Industrial Complex Development Project (00 Military base relocation site development project)"

      47 Korea Adaptation Center For Climate Change, "Change effect"

      48 송동웅, "CALMET 및 ENVI-MET를 이용한 산업단지 입지에 따른 국지 바람장 분석" 한국환경영향평가학회 21 (21): 417-429, 2012

      49 Oke TR, "Boundary layer climates" Routledge 2002

      50 Stewart ID, "A systematic review and scientific critique of methodology in modern urban heat island literature" 31 : 200-217, 2011

      51 Ahn JS, "A study on thermal environment evaluation for eco-friendly urban planning" Keimyung University 2007

      52 Kim JS, "A study on the improvement of urban heat island phenomenon in consideration of regional characteristics" Changwon Research Institute 2019

      53 Ng E, "A study on the cooling effects of greening in a high-density city : An experience from Hong Kong" 47 : 256-271, 2012

      54 Rizwan AM, "A review on the generation, determination and mitigation of Urban Heat Island" 20 (20): 120-128, 2008

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