Johansson,E, & Emmanuel, R. (2006). The influence of urban design on outdoor thermal comfort in the hot, humid city of Colombo, Sri Lanka. Int J Biometeorol, 51, 119-133.
2. Chatzidimitriou, A, & Yannas, S. (2016). Microclimate design for open spaces: Ranking urban design effects on pedestrian thermal comfort in summer, Journal of Sustainable Cities and Society, 26, 27-47.
3. Barakat, A, & Ayad, H, & El-Sayed, Z. (2017). Urban design in favor of human thermal comfort for hot arid climates using advanced simulation methods. Alexandria Engineering Journal, 56, 533-543.
4. Zou, M, & Zhang, H. (2021). Cooling Strategies for Thermal Comfort in Cities: A Review of Key Methods in Landscape Design. Journal of Research Square, 1-18.
5. Katzschner, L. (2005). Microclimatic thermal comfort analysis in cities for urban planning and open space design. Institute of Environmental Meteorology, University Kassel, Department of Architecture and Urban Planning, Kassel, Germany.
6. Aydin, E, & Jakubiec. (2018). Sensitivity Analysis of Sustainable Urban Design Parameters: Thermal Comfort, Urban Heat Island, Energy, Daylight, and Ventilation in Singapore. Singapore University of Technology and Design, Singapore.
7. Cocci Grifoni, R, & Passerini, G, & Pierantozzi, M. (2013). Assessment of outdoor thermal comfort and its relation to urban geometry. Journal of Sustainable Development and Planning, 173, 3-14.
8. Johansson, E. (2006). Influence of urban geometry on outdoor thermal comfort in a hot dry climate: A study in Fez, Morocco. Journal of Building and Environment, 41, 1326-1338.
9. Fahmy, M, & Sharples, S. (2008). Passive design for urban thermal comfort: a comparison between different urban forms in Cairo, Egypt. Conference on Passive and Low Energy Architecture, 307, 1-6.
10. Ahmadpour Kalhorudi, N.; Pourjafer, M.; Mahdavi Nejad, M.; Yousfiian, S. (1396). The role and influence of design elements on the thermal comfort quality of urban open spaces (Case study: Pedestrianization of Tamqāchi streets in Kashan). Journal of Architecture and Urbanism Notes. 18.
11. Karmi Rad, S.; Ali Abadi, M.; Habibi, A.; Vakili Nejad, R. (1396). Assessing the influence of vegetation cover on outdoor thermal comfort of pedestrians (Case study: Goldast Shiraz residential complex). Journal of Scientific-Research of Iran Architectural and Urbanism Association, 14.
12. Zabetian, E.; Khirdein, R. (1397). The role of comfort—especially thermal comfort—in citizen behavior patterns in urban spaces (Case study: Imam Khomeini and Imam Hossein Squares, Tehran). Journal of Urban Management, 50.
13. Jafari, M.; Taban, M.; Safari Pour, M. (1398). Assessment of thermal comfort in urban streets (Case study: Chamran Street, Kermanshah). Journal of Environmental Studies, 4.
14. Samdpoo Shahrak, M.; Karimishavar, M. (1402). Assessment of tree-planting patterns on surrounding thermal comfort of residential blocks. Journal of Urban Studies, 12.
15. Monjazi, N.; Eslami Moghadam, A. (1402). PMV index in thermal comfort of open urban spaces in spring (Case study: Pedestrian walkway along the Khoramabad River). Journal of Climate Studies, 53.
16. Karmi Rad, S.; Ali Abadi, M.; Habibi, A. (1397). Assessing the influence of urban geometry on outdoor thermal comfort at a small-scale climate level (Case: Goldast Shiraz residential complex). Regional Planning Quarterly, 29.
17. Taleb Safa, Shahrzad; Taheri Shahr Aini, M.; Shiaushan Yang, Y.; Rabii, M. R. (1402). Assessing the impact of shading on outdoor thermal comfort and delimitation of thermal comfort zone. Pages: 43–59. Saffi Architecture and Urban Studies Quarterly.
18. Sadeghi Roshan, M. H.; Tabatabaei, S. M. (1388). Delineation of thermally comfortable ranges under arid climate (Case study: Yazd City). City Identity Journal, 3(4), 46–39.
19. Haqiqat-Naini, G.; Fiyaz, R.; Biqarrh, B. (1397). Attaining thermal comfort in public spaces using step-by-step simulation method (Case study: one housing unit in Imam Khomeini Town, Lar). Journal of Architectural and Urbanism Notes, 21, 77–99.
20. Azmoudeh, M. (1400). How plants modulate parameters affecting thermal comfort in urban spaces (Study: Green wall in Tehran). Journal of Geography and Environmental Planning, 32(3), 80–67.
21. Kosmāei, M. (1387). Climate and Architecture. Tehran: Ars Publisher.
22. Razazadeh, R.; Aghajan Biglu, E. (1390). A proposed pattern for massing in row housing units: A comparative study of two massing patterns in residential blocks with a thermal comfort criterion, Name of Architecture and Urbanism Journal. (7).
23. Bruse M, (2015). ENVI-met. Available at: http://www.envi-met.com/.
24. Matzarakis. A, Mayer H and Iziomon M G. (1999), Application of a Universal Thermal Index: Physiological Equivalent Temperature. Int. Biometorology.43: 78-84.
25. Bruse M. (2009). ENVI-met website, Available at: http://www.envi-met.com.
26. Arsa Urban Planning and Architecture Consulting Engineers (2009/1388), Yazd City Comprehensive Plan, Yazd Province Housing and Urban Development Organization, Ministry of Housing and Urban Development.