- پوردیهیمی، شهرام. (1390). زبان اقلیمی در طراحی معماری پایدار (جلد 1). تهران، ایران: دانشگاه شهید بهشتی.
- کرمی کرد علیوند، فیروزه و نارنگی فرد، مهدی. (1396). بهینهسازی جهتگیری ساختمانها در برابر تابش ( مطالعه موردی: شهر شیراز). مجله اندیشه جغرافیایی، 16، 96-122.
https://geonot.znu.ac.ir/article_25845.html
- کسمایی، مرتضی. (1387). اقلیم و معماری. تهران: انتشارات نگارنده دانش.
- مهندسین مشاور پارهاس و همکاران. (1388, مرداد). طرح تجدیدنظر طرح جامع شهر جدید صدرا (جلد 2 مطالعات مرحبه شناخت و سنجش وضعیت). وزارت مسکن و شهرسازی. صدرا: شرکت عمران شهر جدید صدرا.
- مهندسین مشاور پارهاس و همکاران. (1394, دی). طرح تجدیدنظر طرح جامع (طرح و برنامه توسعه). وزارت مسکن و شهرسازی. صدرا: شرکت عمران شهر جدید صدرا.
- مهندسین مشاور شهر و دیار. (1395). گزارش وضع موجود پارک موضوعی کندو شهر صدرا (جلد اول). شهرداری صدرا. صدرا: شرکت عمران شهر جدید صدرا.
- Abd Elraouf, R., Elmokadem, A. Megahed, N., Abo Eleinen, O., Eltarabily, S. (2022). The impact of urban geometry on outdoor thermal comfort in a hot-humid climate, Building and Environment, Volume 225.
https://doi.org/10.1016/j.buildenv.2022.109632
- Akbari, H., Pomerantz, M., & Taha, H. (2001). Cool surfaces and shade trees to reduce energy use and improve air quality in urban areas. Solar energy, 70(3), 295-310.
https://doi.org/10.1016/S0038092X(00)00089-X
- Ameen, R. F. M., Mourshed, M., & Li, H. (2015). A critical review of environmental assessment tools for sustainable urban design. Environmental Impact Assessment Review, 55, 110-125.
https://doi.org/10.1016/j.eiar.2015.07.006
- BREEAM Team (2015), BREEAM Communities technical manual: SD202 - 1.0.2012, BRE Global Ltd (September 22, 2015).
- Building Research Establishment Ltd. (2011, March). BREEAM for Communities Assessor Manual: Development Planning Application Stage.
https://doi.org/10.11129/detail.9783955531683.30
- Davis, J., & Uffer, S. (2013). Evolving Cities: exploring the relations between urban form ‘resilience’and the governance of urban form. London School of Economics.
https://lsecities.net/publications/reports/evolvin...
- Forgaci, C., & Van Timmeren, A. (2014). Urban form and fitness: Towards a space-morphological approach to general urban resilience. International Sustainable Development Research Society (ISDRS).
http://resolver.tudelft.nl/uuid:9d427722-bca3-44c1-b10f-2d0d775d0653
- Golubchikov, Oleg, Climate Neutral Cities: How to Make Cities Less Energy and Carbon Intensive and More Resilient to Climatic Challenges (2011). New York and Geneva: United Nations, Economic Commission for Europe (UNECE), Available at.
https://ssrn.com/abstract=2181136
- Hamin, E. M., & Gurran, N. (2009). Urban form and climate change: Balancing adaptation and mitigation in the US and Australia. Habitat international, 33(3), 238-245.
https://doi.10.1016/j.habitatint.2008.10.005
- (2014). CASBEE for urban Development technical manual. 2014. (J. s. consortium(JSBC), Ed.) Tokyo, Japan: Institude for Building Environment and Energy Conservation. Retrieved from.
http://www.ibec.or.jp/CASBEE
- Jabareen, Y. R. (2006). Sustainable urban forms: Their typologies, models, and concepts. Journal of planning education and research, 26(1), 38-52.
https://doi.org/10.1177/0739456X05285119
- Johansson, Erik. Spangenberg, Jörg. Gouvêa, Mariana Lino. Freitas, Edmilson D. (2013). Scale-integrated atmospheric simulations to assess thermal comfort in different urban tissues in the warm humid summer of São Paulo, Brazil. Urban Climate, vol.6, pp. 24-43.
https://doi.org/10.1016/j.uclim.2013.08.003
- Liu,Ch., Wang,F.,MacKillop, F.(2020).A critical discussion of the BREEAM Communities method as applied to Chinese eco-village assessment,Sustainable Cities and Society,Volume 59.
https://doi.org/10.1016/j.scs.2020.102172
- Marique, A. F., & Reiter, S. (2014). A simplified framework to assess the feasibility of zero-energy at the neighbourhood/community scale. Energy and Buildings, 82, 114-122.
https://doi.org/10.1016/j.enbuild.2014.07.006
- McLeod, R., Kym Mead, & Mark Standen. (n.d.) (2014). Passivhaus primer- Designer’s guide:A guide for the design team and local authorities. Passivhaus Institut. England.Retrieved from
http://www.passivhaus.org.uk
- Meerow, S., Newell, J. P., & Stults, M. (2016). Defining urban resilience: A review. Landscape and urban planning, 147, 38-49.
https://doi.org/10.1016/j.landurbplan.2015.11.011
- Michalina D, Mederly P, Diefenbacher H, Held B.(2021). Sustainable Urban Development: A Review of Urban Sustainability Indicator Frameworks. Sustainability; 13(16):9348.
https://doi.org/10.3390/su13169348
- Oikarinen, E. M. (2014). Urban design with weather variability–Adaptive capacity approaches towards Northern climate now and in the future. In Proceedings of the Annual Architectural Research Symposium in Finland (pp. 119-132).
https://journal.fi/atut/article/view/46145
- Pasimeni, M. R., Petrosillo, I., Aretano, R., Semeraro, T., De Marco, A., Zaccarelli, N., & Zurlini, G. (2014). Scales, strategies and actions for effective energy planning: A review. Energy Policy, 65, 165-174.
https://doi.10.1016/j.enpol.2013.10.027
- Ratti, C., Baker, N., & Steemers, K. (2005). Energy consumption and urban texture. Energy and buildings, 37(7), 762-776.
https://doi.org/10.1016/j.enbuild.2004.10.010
- Ratti, C., Raydan, D., & Steemers, K. (2003). Building form and environmental performance: archetypes, analysis and an arid climate. Energy and buildings, 35(1), 49-59.
https://doi.org/10.1016/S0378-7788(02)00079-8
- Sanaieian, H., Tenpierik, M., van den Linden, K., Seraj, F. M., & Shemrani, S. M. M. (2014). Review of the impact of urban block form on thermal performance, solar access and ventilation. Renewable and Sustainable Energy Reviews, 38, 551-560.
https://doi.10.1016/j.rser.2014.06.007
- Sharifi, A., & Yamagata, Y. (2014). Major principles and criteria for development of an urban resilience assessment index. In International Conference and Utility Exhibition on Green Energy for Sustainable Development (ICUE), Pattaya, Thailand, 2014, pp. 1-5.
- Sharifi, A., & Yamagata, Y. (2015). A conceptual framework for assessment of urban energy resilience. Energy Procedia, 75, 2904-2909.
https://doi.org/10.1016/j.egypro.2015.07.586
- Sharifi, A., & Yamagata, Y. (2016). Principles and criteria for assessing urban energy resilience: A literature review. Renewable and Sustainable Energy Reviews, 60, 1654-1677.
https://doi.org/10.1016/j.rser.2016.03.028
- Sharifi, A.,(2021).Urban sustainability assessment: An overview and bibliometric analysis, Ecological Indicators,Volume 121.
https://doi.org/10.1016/j.ecolind.2020.107102
- Solecki, W., Seto, K. C., Balk, D., Bigio, A., Boone, C. G., Creutzig, F.,... Romero-Lankao, P. (2015). A conceptual framework for an urban areas typology to integrate climate change mitigation and adaptation. Urban Climate, 14, 116-137.
https://doi.org/10.1016/j.uclim.2015.07.001
- Stangl, P., & Guinn, J. M. (2011). Neighborhood design, connectivity assessment and obstruction. Urban Design International, 16(4), 285-296.
https://doi.org/10.1057/udi.2011.14
- STAR Communities. (2014). STAR Community Rating System. 1.1. U.S.
https://www.usgbc.org/resources/star-community-rating-system-technical-guide-v2
- Stone, B., Hess, J. J., & Frumkin, H. (2010). Urban form and extreme heat events: are sprawling cities more vulnerable to climate change than compact cities?. Environmental health perspectives, 118(10), 1425.
https://doi.10.1289/ehp.0901879
- Taleb, H., & Taleb, D. (2014). Enhancing the thermal comfort on urban level in a desert area: Case study of Dubai, United Arab Emirates. Urban forestry & urban greening, 13(2), 253-260.
https://doi.org/10.1016/j.ufug.2014.01.003
- Taleghani, Mohammad. Kleerekoper, Laura. Tenpierik, Martin.van den Dobbelsteen, Andy. (2015). Outdoor thermal comfort within five different urban forms in the Netherlands. Building and Environment,vol. 83,pp. 65-78.
https://doi.org/10.1016/j.buildenv.2014.03.014
- S. Green Building Council. (2014). LEED Reference Guide For Neighborhood Development. 4.
https://www.usgbc.org/guide/nd
- Voskamp, I. M., & Van de Ven, F. H. M. (2015). Planning support system for climate adaptation: Composing effective sets of blue-green measures to reduce urban vulnerability to extreme weather events. Building and Environment, 83, 159-167.
https://doi.org/10.1016/j.buildenv.2014.07.018