室内空气温度与工作温度驱动暖通空调系统的热舒适与能耗比较

C. Turhan
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引用次数: 3

摘要

暖通空调(HVAC)系统的主要目的是满足居住者的热舒适。传统上,暖通空调系统通过连续测量室内环境空气温度来调节设定温度以达到热舒适。然而,ASHRAE 55,一个可接受的热环境标准,提供了在空调建筑中使用可接受的工作温度范围。由于工作温度是室内空气温度和平均辐射温度的函数,因此可以利用工作温度来控制暖通空调系统的设定温度,以满足使用者的中性热舒适。本研究比较了两种完全相同的暖通空调系统分别基于室内空气温度和工作温度运行时的热舒适性和能耗。位于土耳其安卡拉一所大学的两个具有相同建筑结构的办公室被选为案例研究。暖通空调系统分别根据室内空气温度和工作温度在同一时间和占用时间表运行。结果表明,工作温度驱动控制暖通空调系统在能耗略有增加的同时获得了较好的热舒适性。本研究的主要发现不仅有助于设计节能的暖通空调系统,而且有助于创造更舒适的环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COMPARISON OF INDOOR AIR TEMPERATURE AND OPERATIVE TEMPERATURE -DRIVEN HVAC SYSTEMS BY MEANS OF THERMAL COMFORT AND ENERGY CONSUMPTION
The main purpose of Heating, Ventilating and Air-Conditioning (HVAC) systems is to satisfy thermal comfort for the occupants. Conventionally, HVAC systems adjust set-temperature to achieve thermal comfort by continuously measuring indoor air temperature of the environment. However, ASHRAE 55, a standard of acceptable thermal environments, offers to use acceptable ranges of operative temperatures in air-conditioned buildings. Considering operative temperature is a function of indoor air temperature and mean radiant temperature, set-temperature of HVAC system can be controlled by using operative temperature to satisfy neutral thermal comfort for the occupants. This study compares thermal comfort and energy consumption of two exactly same HVAC systems which are operated based on indoor air temperature and operative temperature, respectively. Two office rooms with same architectural configurations -which are located in a university-Ankara-Turkey- were selected as a case study. The HVAC systems were operated based on indoor air temperature and operative temperature, respectively, at the same time and occupancy schedules. The results showed that operative temperature driven controlled HVAC system achieves better thermal comfort while slightly increasing energy consumption. The main findings of this study would be useful not only to design energy-efficient HVAC systems but also create more comfortable environments.
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