ASHRAE-Standard-55 - Page 072

Extracted Content

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with vertical air temperature gradient. Energy and Buildings P.110085. doi: doi.org/10.1016/ j.enbuild.2020.110085. www.escholarship.org/uc/item/0s76t57k. Matsuzaki, R., E. Mihake, Y. Miyashita, and S. I. Tanabe. 2019. Optimum indoor thermal comfort condi tions required after entering a room from outdoor summer heat. Tokyo, Japan: Waseda University. McCullough, E.A., and D.P. Wyon. 1983. Insulation characteristics of winter and summer indoor clothing.

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84(2):264–77. McNall, P.E., Jr., and R.E. Biddison. 1970. Thermal and comfort sensations of sedentary persons exposed to

asymmetric radiant fields. ASHRAE Transactions 76(1):123–36. McNall, P.E., Jr., J. Jaax, F.H. Rohles, R.G. Nevins, and W. Springer. 1967. Thermal comfort (thermally neu tral) conditions for three levels of activity. ASHRAE Transactions 73(1):I.3.1-I.3.14. Melikov, A.K., H. Hanzawa, and P.O. Fanger. 1988. Airflow characteristics in the occupied zone of heated

spaces without mechanical ventilation. ASHRAE Transactions 94(1):52–70. Mihara, K., C. Sekhar, K. W. Tham, Y. Takemasa, and B. Lasternas. 2019. Effects of temperature, air move ment and initial metabolic rate on thermal sensation during transient state in the tropics. Building and Environment 155:70–82. Mishra, A.K., M.G.L.C. Loomans, and J.L.M. Hensen. 2016. Thermal comfort of heterogeneous and

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70 ANSI/ASHRAE Standard 55-2023