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Assessment of thermal comfort preferences in Mediterranean climate: A university office building case

机译:评估地中海气候对热舒适性的偏好:一个大学办公楼案例

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This study aims at evaluating the perceived thermal sensation of occupants with respect to thermal comfort standards, ASHRAE 55 and ISO 7730, for office buildings located in Mediterranean climate. A small office building in Izmir Institute of Technology Campus Area, Izmir, Turkey, was chosen as a case building and equipped with measurement devices to assess thermal comfort of occupants with respect to predicted mean vote and actual mean vote. Both objective and subjective measurements were conducted. The former included indoor and out-door air temperature, mean radiant temperature, relative humidity and air velocity that were used for evaluating the thermal comfort of occupants. Oxygen concentration which can play an additional role in thermal comfort/discomfort, health and productivity of the office occupants, was also measured. Furthermore, occupants were subjected to a survey via a mobile application to obtain subjective measurements to calculate actual mean vote values. Based on objective and subjective measurements, the relationships among the parameters were derived by using simple regression analysis technique while a new combined mean vote correlation was also derived but this time by using multiple linear regression model. Neutral and comfort temperatures were obtained using indoor air temperature and actual mean vote values which were calculated from subjective measurements. The results showed that neutral temperature in the university office building was 20.9°C whilst the comfort temperature range was between 19.4 and 22.4°C for the heating season. By applying new comfort temperatures, energy consumption of the case building located in Mediterranean climate, can be reduced.
机译:这项研究旨在评估位于地中海气候中的办公楼在热舒适性标准(ASHRAE 55和ISO 7730)方面对乘员的感知热感。选择了土耳其伊兹密尔伊兹密尔理工大学校园区的一栋小型办公楼作为案例建筑,并配备了测量装置,以评估预计平均投票和实际平均投票对居住者的热舒适度。进行客观和主观测量。前者包括室内和室外空气温度,平均辐射温度,相对湿度和空气速度,用于评估乘员的热舒适性。还测量了可以在办公室人员的热舒适/不适,健康和生产率中发挥额外作用的氧气浓度。此外,通过移动应用程序对居住者进行调查以获得主观测量结果,以计算实际平均投票值。基于客观和主观测量,使用简单回归分析技术导出参数之间的关系,同时还使用多元线性回归模型导出新的组合平均投票相关性。使用室内空气温度和实际平均投票值(通过主观测量计算得出)来获得中性和舒适温度。结果表明,大学办公大楼的中性温度为20.9°C,而供暖季节的舒适温度范围为19.4至22.4°C。通过应用新的舒适温度,可以减少位于地中海气候中的案例建筑的能耗。

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