110 Lu et al: Modeling the Shading Effect of Vancouver’s Urban Tree Canopy Palme M, Privitera R, La Rosa D. 2020. The shading effects of Green Infrastructure in private residential areas: Building Performance Simulation to support urban planning. Energy and Buildings. 229:110531. https://doi.org/10.1016/j.enbuild .2020.110531 Peronato G, Kämpf JH, Rey E, Andersen M. 2017. Integrating urban energy simulation in a parametric environment: A Grasshopper interface for CitySim. In: Brotas L, Roaf S, Fergus N, editors. Design to Thrive—PLEA 2017 Conference Proceedings, Volume II. Passive Low Energy Architecture 2017 Edinburgh—Design to Thrive; 2017 July 2–5; Edinburgh, Scotland. Network for Comfort and Energy Use in Buildings. p. 2124-2131. https://plea2017.net Pigliautile I, Pisello AL, Bou-Zeid E. 2020. Humans in the city: Representing outdoor thermal comfort in urban canopy models. Renewable and Sustainable Energy Reviews. 133:110103. https://doi.org/10.1016/j.rser.2020.110103 Plowright AA, Coops NC, Chance CM, Sheppard SRJ, Aven NW. 2017. Multi-scale analysis of relationship between impervious- ness and urban tree height using airborne remote sensing. Remote Sensing of Environment. 194:391-400. https://doi.org/ 10.1016/j.rse.2017.03.045 Plowright AA, Coops NC, Eskelson BNI, Sheppard SRJ, Aven NW. 2016. Assessing urban tree condition using airborne light detection and ranging. Urban Forestry & Urban Green- ing. 19:140-150. https://doi.org/10.1016/j.ufug.2016.06.026 Radiance. 2021. Setting rendering options. [Accessed 2021 May 31]. https://floyd.lbl.gov/radiance/refer/Notes/rpict_options.html Robinson D, Stone A. 2004. Irradiation modelling made simple: The cumulative sky approach and its applications. In: Plea2004—The 21st Conference on Passive and Low Energy Architecture; 2004 September 19–22; Eindhoven, The Neth- erlands. 5 p. Rosenfeld AH, Akbari H, Bretz S, Fishman BL, Kurn DM, Sailor D, Taha H. 1995. Mitigation of urban heat islands: Materials, utility programs, updates. Energy and Buildings. 22(3):255-265. https://doi.org/10.1016/0378-7788(95)00927-P Roudsari MS, Pak M. 2013. Ladybug: A parametric environ- mental plugin for Grasshopper to help designers create an environmentally-conscious design. In: Proceedings of BS2013. 13th Conference of the International Building Performance Simulation Association; 2013 August 26–28; Chambery, France. Toronto (Canada): IBPSA. p. 3128-3135. http://www.ibpsa .org/proceedings/BS2013/p_2499.pdf Sabrin S, Karimi M, Nazari R, Pratt J, Bryk J. 2021. Effects of different urban-vegetation morphology on the canopy-level thermal comfort and the cooling benefits of shade trees: Case-study in Philadelphia. Sustainable Cities and Society. 66:102684. https://doi.org/10.1016/j.scs.2020.102684 Sailor DJ, Pavlova AA. 2003. Air conditioning market saturation and long-term response of residential cooling energy demand to climate change. Energy. 28(9):941-951. https://doi.org/10 .1016/S0360-5442(03)00033-1 Shahtahmassebi AR, Li C, Fan Y, Wu Y, lin Y, Gan M, Wang K, Malik A, Blackburn GA. 2021. Remote sensing of urban green spaces: A review. Urban Forestry & Urban Greening. 57:126946. https://doi.org/10.1016/j.ufug.2020.126946 Stone B, Hess JJ, Frumkin H. 2010. Urban form and extreme heat events: Are sprawling cities more vulnerable to climate ©2022 International Society of Arboriculture change than compact cities? Environmental Health Perspectives. 118(10):1425-1428. https://doi.org/10.1289/ehp.0901879 Stone B, Vargo J, Habeeb D. 2012. Managing climate change in cities: Will climate action plans work? Landscape and Urban Planning. 107(3):263-271. https://doi.org/10.1016/j.landurbplan .2012.05.014 Tan PY, Wang J, Sia A. 2013. Perspectives on five decades of the urban greening of Singapore. Cities. 32:24-32. https://doi.org/ 10.1016/j.cities.2013.02.001 Tan Z, Lau KKL, Ng E. 2016. Urban tree design approaches for mitigating daytime urban heat island effects in a high-density urban environment. Energy and Buildings. 114:265-274. https://doi.org/10.1016/j.enbuild.2015.06.031 Tooke TR, Coops NC, Christen A, Gurtuna O, Prévot A. 2012. Integrated irradiance modelling in the urban environment based on remotely sensed data. Solar Energy. 86(10):2923-2934. https://doi.org/10.1016/j.solener.2012.06.026 Torrie R. 2015. Low carbon futures in Canada—The role of urban climate change mitigation: Briefing on urban energy use and greenhouse gas emissions. Seattle (WA, USA): Stockholm Environment Institute. www.sei-international.org Vancouver Board of Parks and Recreation. 2020. Park Board Meeting: December 7, 2020. Vancouver (BC, Canada). https://parkboardmeetings.vancouver.ca/2020/20201207/ REPORT-UrbanForestStrategyUpdate-20201207.pdf Ward GJ. 1994. The RADIANCE lighting simulation and ren- dering system. In: SIGGRAPH ’94: Proceedings of the 21st annual conference on computer graphics and interactive techniques. SIGGRAPH 94; 1994 July 24–29; Orlando, Florida. New York (NY, USA): Association for Computing Machinery, Inc. p. 459-472. https://doi.org/10.1145/192161 .192286 Wong NH, Kwang Tan AY, Chen Y, Sekar K, Tan PY, Chan D, Chiang K, Wong NC. 2010. Thermal evaluation of vertical greenery systems for building walls. Building and Environment. 45(3):663-672. https://doi.org/10.1016/j.buildenv.2009.08.005 Yu Q, Ji W, Pu R, Landry S, Acheampong M, O’Neil-Dunne J, Ren Z, Tanim SH. 2020. A preliminary exploration of the cooling effect of tree shade in urban landscapes. International Journal of Applied Earth Observation and Geoinformation. 92:102161. https://doi.org/10.1016/j.jag.2020.102161 Yu X, Wu Z, Zheng H, Li M, Tan T. 2020. How urban agglomer- ation improve the emission efficiency? A spatial econometric analysis of the Yangtze River Delta urban agglomeration in China. Journal of Environmental Management. 260:110061. https://doi.org/10.1016/j.jenvman.2019.110061 Ziter CD, Pedersen EJ, Kucharik CJ, Turner MG. 2019. Scale- dependent interactions between tree canopy cover and impervious surfaces reduce daytime urban heat during sum- mer. Proceedings of the National Academy of Sciences of the United States of America. 116(15):7575-7580. https://doi.org/ 10.1073/pnas.1817561116 ACKNOWLEDGMENTS The authors thank the Social Sciences and Humanities Research Council (#892-2020-1038) and the Pacific Institute for Climate Solutions (PICS #36170–50280) for funding this research. The authors also thank Emma Ng for help visualizing results.
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