References
- 강동현, 최철현, 정성관. 2014. 영남지역의 토지 피복에 따른 열쾌적성 평가도 구축, 한국지리정보학회지 17(2), 136-155. (Kang, D. H., Choi, C. H. and Jung, S. G. 2014. Development of Thermal Comfort Evaluation Map by the Land Cover in Yeongnam Region, Journal of the Korean Association of Geographic Information Studies 17(2), 136-155.)
- 백상훈, 시미즈아키, 김학윤, 정응호. 2011. 도시가로공간의 공공디자인 개선사업에 따른 열환경 개선 효과 평가, 한국환경과학회지 20(9), 1105-1114. (Baek, S., Aki Shimizu, Kim, H. Y. and Jung, E. H. 2011. Evaluation of Thermal Environment Improvement Effect from Public Design Improvement Project on the Urban Street Space, Journal of the Environmental Sciences, 20(9), 1105-1114.) https://doi.org/10.5322/JES.2011.20.9.1105
- 송봉근, 박경훈. 2011. 도시기후 형성 요소를 고려한 공간유형 분류-창원시를 대상으로-, 환경영향평가 20(3), 299-311.
- 송봉근. 2014. 도시지역의 기후변화 및 열섬효과 완화를 위한 환경계획 기법의 개발, 창원대학교 박사학위논문(Song, B. G. 2014. Development of Environmental Planning Methodology for Mitigation of Climate change and Heat island effect in Urban area, Ph.D DISSERTATION, Changwon National University, Korea.)
- 이민복. 2014. 수도권 신도시의 열쾌적성 평가, 한양대학교 석사학위논문.(Lee, M., 2014. Evaluation of thermal comfort of new towns in Seoul metropolitan area, Master thesis, Hanyang University.)
- 이정아, 정대영, 전진형, 이상문, 송영배. 2010. 공간 구조별 열쾌적성 평가와 열환경 개선방안, 한국조경학회지 38(5), 12-20.(Lee, J. A., Jung, D. Y., Chon, J. H., Lee, S. M. and Song, Y. B. 2010. An Evaluation of Human Thermal Comfort and Improvement of Thermal Environment by Spatial Structure, Journal of the Korea Institute of Landscape Architecture, 38(5), 12-20.)
- 질병관리본부. 2013. 폭염으로 인한 온열질환 신고현황 연보, 주간 건강과 질병보고서.(Korea Center for Disease Control and Prevention. 2013. Annual Report on the Notified Patients with Heat related illness in Korea, Public Health Weekly Report.)
- 창원시. 2009. 창원시 환경지도 제작 및 GIS구축, 창원시 연구보고서.(Changwon-si. 2009. Changwon-si environmental atlas and GIS construction, Changwon-si report)
- Chen, H., Ooka, R., Huang, H. and Tsuchiya, T. 2009. Study on mitigation measures for outdoor thermal environment on present urban blocks in Tokyo using coupled simulation, Building and Environment 44, 2290-2299. https://doi.org/10.1016/j.buildenv.2009.03.012
- Cheng, V., Steemers, K., Montavon, M. and Compagnon, R. 2006. Urban Form, Density and Solar Potential. Conference on Passive and Low Energy Architecture, Geneva, Switzerland.
- Emmanuel, R. 1997. Summertime heat island effects of urban design parameters, PhD thesis, The University of Michigan.
- Erell, E., Pearlmutter, D. and Williamson, T. 2011. Urban Microclimate -Designing the Spaces Between Buildings-, earthscan, London and Washington, DC.
- Giridharan, R., Lau, S.S.Y., Ganesan, S., and Givoni, B. 2008. Lowering the outdoor temperature in high-rise high-density residential developments of coastal Hong Kong: The vegetation influence, Building and Environment 43, 1583-1595. https://doi.org/10.1016/j.buildenv.2007.10.003
- Givoni, B. 1998. Climate considerations in building and urban design, USA, Wiley.
- Gulyas, A., Unger, J. and Matzarakis, A. 2006. Assessment of the microclimatic and human comfort conditions in a complex urban environment: Modelling and measurements, Building and Environment 41, 1713-1722. https://doi.org/10.1016/j.buildenv.2005.07.001
- Huang, J., Laurent, J. G. C., Spengler, J. and Reinhart, C. 2012. A GIS-BASED ASSESSMENT MTEHOD FOR MEAN RADIANT TEMPERATURE IN DENSE URBAN AREA, Fifth National Conference of IBPSA-USA. Madison, Wisconsin. August 1-3, 246-254.
- Lai, P. Low, C., Tse, W.C., Tsui, C., Lee, H. and Hui, P. 2013. Risk of tuberculosis in high-rise and high density dwellings: An exploratory spatial analysis, Environmental Pollution 183, 40-45. https://doi.org/10.1016/j.envpol.2012.11.025
- Lai, D., Guo, D., Hou, Y., Lin, C. and Chen, Q. 2014. Studies of outdoor thermal comfort in northern China, Building and Environment 77, 110-118. https://doi.org/10.1016/j.buildenv.2014.03.026
- Li, X., Wang, C., Hang, G., Xiao, L. and Dixon, J. 2012. Urbanization and human health in China: spatial features and a systemic perspective, Environmental Science and Pollution Research 19, 1375-1384. https://doi.org/10.1007/s11356-011-0718-7
- Matzarakis, A., Rutz, F. and Mayer, H. 2007. Modelling radiation fluxes in simple and complex environments-application of the RayMan model, International Journal of Biometeorology 51, 323-334. https://doi.org/10.1007/s00484-006-0061-8
- Memon, R. A., Leung, D. Y. C. and Liu, C. 2009. An investigation of urban island intensity (UHI) as an indicator of urban heating. Atmospheric Research 94, 491-500. https://doi.org/10.1016/j.atmosres.2009.07.006
- Oke, T. R. 1981. Canyon geometry and the nocturnal heat island: comparison of scale model and field observations, Journal of Climatology, 1, 237-254. https://doi.org/10.1002/joc.3370010304
- Shashua-Bar, L., Hoffman, M. E. 2000. Vegetation as a climate component in the design of an urban street An empirical model for predicting the cooling effect of urban green areas with trees, Energy and Building 31, 221-235. https://doi.org/10.1016/S0378-7788(99)00018-3
- Shashua-Bar, L., Hoffman, M.E. and Tzamir, Y. 2006. Integrated thermal effects of generic built forms and vegetation on the UCL microclimate, Building and Environment 41, 343-354. https://doi.org/10.1016/j.buildenv.2005.01.032
- Spangenberg, J., Shinzato, P., Johansson, E., and Duarte, D. 2008. Simulation of the influence of vegetation on microclimate and thermal comfort in the city of Sao Paulo, Rev. SBAU, Piracicaba 3(2), 1-19.
- Svensson, M. K. 2004. Sky view facotr analysis - implications for urban air temperature differences, Meteorological Applications, 11, 201-211. https://doi.org/10.1017/S1350482704001288
- Villadiego, K., Velay-Dabat, M. A. 2014. Outdoor thermal comfort in a hot and humid climate of Colombia: A field study in Barranquilla, Building and Environment 75, 142-152. https://doi.org/10.1016/j.buildenv.2014.01.017
- Watson, I. D. and Johnson, G. T. 1987. Graphical estimation of sky view factors in urban environments, International Journal of Climatology, 7, 193-197. https://doi.org/10.1002/joc.3370070210
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