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    KCI등재 SCOPUS

    미시적 규모에서 수목의 열섬저감효과

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    https://www.riss.kr/link?id=A102027958

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Urban Heat Island has become a serious problem in urban area. Tree is considered as effective measure for mitigating urban heat. The purpose of this study is reviewing urban heat island mitigation effect of tree, focusing on evaluation indices related to temperature reduction. We selected 49 previous studies and classified studies considering type of site and variables related to mitigate urban heat. Studies were classified as tree, vegetation, green roof/wall and green area. Variables of each group were categorized as space, function, individual and environment variables. Each study site showed different mitigation effects and considered different variables. Therefore, plans or designs for green area in urban area should consider differences among sites and use integrated evaluation indices including humidity and wind speed for mitigating urban heat.
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    Urban Heat Island has become a serious problem in urban area. Tree is considered as effective measure for mitigating urban heat. The purpose of this study is reviewing urban heat island mitigation effect of tree, focusing on evaluation indices related...

    Urban Heat Island has become a serious problem in urban area. Tree is considered as effective measure for mitigating urban heat. The purpose of this study is reviewing urban heat island mitigation effect of tree, focusing on evaluation indices related to temperature reduction. We selected 49 previous studies and classified studies considering type of site and variables related to mitigate urban heat. Studies were classified as tree, vegetation, green roof/wall and green area. Variables of each group were categorized as space, function, individual and environment variables. Each study site showed different mitigation effects and considered different variables. Therefore, plans or designs for green area in urban area should consider differences among sites and use integrated evaluation indices including humidity and wind speed for mitigating urban heat.

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    목차 (Table of Contents)

    • Ⅰ. 서론
    • Ⅱ. 연구방법
    • 1. 자료수집 및 분석방법
    • 2. 수집된 자료의 분류
    • Ⅲ. 결과 및 고찰
    • Ⅰ. 서론
    • Ⅱ. 연구방법
    • 1. 자료수집 및 분석방법
    • 2. 수집된 자료의 분류
    • Ⅲ. 결과 및 고찰
    • 1. 연구대상별 열섬저감효과
    • 2. 연구대상별 수목관련변수와 이에 따른 열섬저감효과
    • 3. 수목의 열섬저감효과 고찰
    • Ⅳ. 적요
    • Ⅴ. References
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    참고문헌 (Reference)

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

    2 Lee, S., "Urban heat mitigation by roof surface materials during the East Asian summer monsoon" 10 (10): 124012-, 2015

    3 Konarska, J., "Transpiration of urban trees and its cooling effect in a high latitude city" 60 (60): 159-172, 2016

    4 Taleghani, M, "Thermal assessment of heat mitigation strategies: the case of Portland State University, Oregon, USA" 73 : 138-150, 2014

    5 Ballinas, M., "The urban tree as a tool to mitigate the urban heat island in Mexico City: a simple phenomenological model" 166 : 157-166, 2016

    6 Spronken-Smith, R.A, "The thermal regime of urban parks in two cities with different summer climates" 19 (19): 2085-2104, 1998

    7 Huang, Y.J., "The potential of vegetation in reducing summer cooling loads in residential buildings" 26 : 1103-1116, 1987

    8 Shashua-Bar, L, "The influence of trees and grass on outdoor thermal comfort in a hot-arid environment" 31 (31): 1498-1506, 2011

    9 Akbari, H, "The impact of trees and white surfaces on residential heating and cooling energy use in four Canadian cities" 17 (17): 141-149, 1992

    10 Li, D., "The effectiveness of cool and green roofs as urban heat island mitigation strategies" 9 (9): 055002-, 2014

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

    2 Lee, S., "Urban heat mitigation by roof surface materials during the East Asian summer monsoon" 10 (10): 124012-, 2015

    3 Konarska, J., "Transpiration of urban trees and its cooling effect in a high latitude city" 60 (60): 159-172, 2016

    4 Taleghani, M, "Thermal assessment of heat mitigation strategies: the case of Portland State University, Oregon, USA" 73 : 138-150, 2014

    5 Ballinas, M., "The urban tree as a tool to mitigate the urban heat island in Mexico City: a simple phenomenological model" 166 : 157-166, 2016

    6 Spronken-Smith, R.A, "The thermal regime of urban parks in two cities with different summer climates" 19 (19): 2085-2104, 1998

    7 Huang, Y.J., "The potential of vegetation in reducing summer cooling loads in residential buildings" 26 : 1103-1116, 1987

    8 Shashua-Bar, L, "The influence of trees and grass on outdoor thermal comfort in a hot-arid environment" 31 (31): 1498-1506, 2011

    9 Akbari, H, "The impact of trees and white surfaces on residential heating and cooling energy use in four Canadian cities" 17 (17): 141-149, 1992

    10 Li, D., "The effectiveness of cool and green roofs as urban heat island mitigation strategies" 9 (9): 055002-, 2014

    11 Armson, D., "The effect of tree shade and grass on surface and globe temperatures in an urban area" 11 (11): 245-255, 2012

    12 Oliveira, S., "The cooling effect of green spaces as a contribution to the mitigation of urban heat: a case study in Lisbon" 46 (46): 2186-2194, 2011

    13 Shashua-bar, L, "The Green CTTC model for predicting the air temperature in small urban wooded sites" 37 : 1279-1288, 2002

    14 Alexandri, E, "Temperature decreases in an urban canyon due to green walls and green roofs in diverse climates" 43 (43): 480-493, 2008

    15 Takebayashi, H., "Surface heat budget on green roof and high reflection roof for mitigation of urban heat island" 42 : 2971-2979, 2007

    16 Song, J, "Supplementary data of ‘Impacts of mesic and xeric urban vegetation on outdoor thermal comfort and microclimate in Phoenix, AZ" 5 : 918-920, 2015

    17 Ooka, R, "Study on optimum arrangement of trees for design of pleasant outdoor environment using multiobjective genetic algorithm and coupled simulation of convection, radiation and conduction" 96 (96): 1733-1748, 2008

    18 Spronken-Smith, R.A, "Scale modelling of nocturnal cooling in urban parks" 93 (93): 287-312, 1999

    19 Kong, F., "Retrieval of three-dimensional tree canopy and shade using terrestrial laser scanning (TLS) data to analyze the cooling effect of vegetation" 217 : 22-34, 2016

    20 Morille, B., "Preliminary study of the impact of urban greenery types on energy consumption of building at a district scale: Academic study on a canyon street in Nantes (France) weather conditions" 114 : 275-282, 2016

    21 Mochida, A, "Prediction of wind environment and thermal comfort at pedestrian level in urban area" 96 (96): 1498-1527, 2008

    22 Susca, T., "Positive effects of vegetation: urban heat island and green roofs" 159 : 2119-2126, 2011

    23 Hongbing, W, "Optimal tree design for daylighting in residential buildings" 45 (45): 2594-2606, 2010

    24 Bo, H, "Optimal design of vegetation in residential district with numerical simulation and field experiment" 19 (19): 688-695, 2012

    25 Santamouris, M., "On the impact of urban climate on the energy consumption of buildings" 70 (70): 201-216, 2001

    26 Synnefa, A., "On the development, optical properties and thermal performance of cool colored coatings for the urban environment" 81 : 488-497, 2007

    27 Hong, B, "Numerical studies of the outdoor wind environment and thermal comfort at pedestrian level in housing blocks with different building layout patterns and trees arrangement" 73 : 18-27, 2015

    28 Vidrih, B, "Multiparametric model of urban park cooling island" 12 (12): 220-229, 2013

    29 Zoulia, I., "Monitoring the effect of urban green areas on the heat island in Athens" 156 (156): 275-292, 2009

    30 Napoli, M, "Modeling tree shade effect on urban ground surface temperature" 45 (45): 146-156, 2016

    31 Shashua-Bar, L., "Microclimate modelling of street tree species effects within the varied urban morphology in the Mediterranean city of Tel Aviv, Israel" 30 (30): 44-57, 2010

    32 Giridharan, R., "Lowering the outdoor temperature in high-rise high-density residential developments of coastal Hong Kong: The vegetation influence" 43 (43): 1583-1595, 2008

    33 Rafiee, A., "Local impact of tree volume on nocturnal urban heat island: a case study in Amsterdam" 16 : 50-61, 2016

    34 Tan, M.H., "Integrated assessment of the cool island intensity of green spaces in the mega city of Beijing" 34 : 3028-3043, 2013

    35 Gaitani, N., "Improving the microclimate in urban areas: a case study in the centre of Athens" 32 (32): 53-71, 2011

    36 Salata, F, "How high albedo and traditional buildings’ materials and vegetation affect the quality of urban microclimate" 99 : 32-49, 2015

    37 Taha, H, "Heat island and oasis effects of vegetative canopies : micro-meteorological fieldmeasurements" 44 (44): 123-138, 1991

    38 Smith, Kathryn R., "Green roof mitigation potential for a proxy future climate scenario in Chicago, Illinois" 26 (26): 507-522, 2011

    39 Yang, J., "Further development of the regional boundary layer model to study the impacts of greenery on the urban thermal environment" 54 (54): 137-152, 2015

    40 Djedjig, R., "Experimental study of a green wall system effects in urban canyon scene" 16 : 1-9, 2013

    41 Ouldboukhitine, S.E, "Experimental and numerical investigation of urban street canyons to evaluate the impact of green roof inside and outside buildings" 114 : 273-282, 2014

    42 Wang, Y., "Effects of urban trees on local outdoor microclimate: synthesizing field measurements by numerical modelling" 1305-1331, 2015

    43 Maimaitiyiming, M., "Effects of green space spatial pattern on land surface temperature: Implications for sustainable urban planning and climate change adaptation" 89 : 59-66, 2014

    44 Vailshery, L.S, "Effect of street trees on microclimate and air pollution in a tropical city" 12 (12): 408-415, 2013

    45 Rahman, M.A, "Effect of rooting conditions on the growth and cooling ability of Pyrus calleryana" 10 (10): 185-192, 2011

    46 Cohen, P., "Daily and seasonal climatic conditions of green urban open spaces in the Mediterranean climate and their impact on human comfort" 51 : 285-295, 2012

    47 Zhang, Z., "Cooling and humidifying effect of plant communities in subtropical urban parks" 12 (12): 323-329, 2013

    48 Potcher, O, "Climatic behavior of various urban pakrs during hot and humid summer in the mediterranean city of Tel Aviv" 26 (26): 1695-1711, 2006

    49 O’Loughlin, J., "Climate variability and conflict risk in East Africa, 1990—2009" 109 (109): 18344-18349, 2009

    50 Digiovanni, K., "Applicability of classical predictive equations for the estimation of evapotranspiration from urban green spaces : green roof results" 18 : 99-107, 2013

    51 Durand, C. P., "A systematic review of built environment factors related to physical activity and obesity risk: Implications for smart growth urban planning" 12 (12): 173-182, 2011

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

    53 Wang, Z.H, "A spatially-analytical scheme for surface temperatures and conductive heat fluxes in urban canopy models" 138 (138): 171-193, 2011

    54 Rizwan, A.M., "A review on the generation, determination and mitigation of urban heat island" 20 : 120-128, 2008

    55 Rahman, M.A., "A comparison of the growth and cooling effectiveness of five commonly planted urban tree species" 18 : 371-389, 2015

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2026 평가 재인증평가 신청대상 (재인증)
    2020-01-01 등재 등재학술지 유지 (재인증) KCI등재
    2017-02-17 학술지명변경 한글명 : 한국인간식물환경학회지 -> 인간식물환경학회지
    외국어명 : Journal of Korean Society for Plants, People and Environment -> Journal of People, Plants, and Environment
    KCI등재
    2017-02-17 학회명변경 한글명 : 한국인간식물환경학회 -> 인간식물환경학회
    영문명 : Korean Society For People, Plants, And Environment -> Society For People, Plants, And Environment
    KCI등재
    2017-01-01 등재 등재학술지 유지 (계속평가) KCI등재
    2013-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2010-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2008-10-17 학회명변경 한글명 : 한국식물ㆍ인간ㆍ환경학회 -> 한국인간식물환경학회
    영문명 : Korean Society For Plants, People And Environment -> Korean Society For People, Plants, And Environment
    KCI등재
    2008-09-30 학술지명변경 한글명 : 한국식물인간환경학회지 -> 한국인간식물환경학회지 KCI등재
    2008-01-01 등재 등재 1차 FAIL (등재유지) KCI등재
    2005-01-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    2004-01-01 등재 등재후보 1차 PASS (등재후보1차) KCI등재후보
    2003-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    학술지 인용정보

    학술지 인용정보
    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.38 0.38 0.37
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.35 0.39 0.458 0.16
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