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天花板安装的个性化通风系统与二次空气分配系统集成——湿热气候下的人体响应研究。

Ceiling-mounted personalized ventilation system integrated with a secondary air distribution system--a human response study in hot and humid climate.

机构信息

Department of Building, School of Design and Environment, National University of Singapore, Singapore.

出版信息

Indoor Air. 2010 Aug;20(4):309-19. doi: 10.1111/j.1600-0668.2010.00655.x. Epub 2010 Mar 19.

Abstract

UNLABELLED

The benefits of thermal comfort and indoor air quality with personalized ventilation (PV) systems have been demonstrated in recent studies. One of the barriers for wide spread acceptance by architects and HVAC designers has been attributed to challenges and constraints faced in the integration of PV systems with the work station. A newly developed ceiling-mounted PV system addresses these challenges and provides a practical solution while retaining much of the apparent benefits of PV systems. Assessments of thermal environment, air movement, and air quality for ceiling-mounted PV system were performed with tropically acclimatized subjects in a Field Environmental Chamber. Thirty-two subjects performed normal office work and could choose to be exposed to four different PV airflow rates (4, 8, 12, and 16 L/s), thus offering themselves a reasonable degree of individual control. Ambient temperatures of 26 and 23.5 degrees C and PV air temperatures of 26, 23.5, and 21 degrees C were employed. The local and whole body thermal sensations were reduced when PV airflow rates were increased. Inhaled air temperature was perceived cooler and perceived air quality and air freshness improved when PV airflow rate was increased or temperature was reduced.

PRACTICAL IMPLICATIONS

The newly developed ceiling-mounted PV system offers a practical solution to the integration of PV air terminal devices (ATDs) in the vicinity of the workstation. By remotely locating the PV ATDs on the ceiling directly above the occupants and under their control, the conditioned outdoor air is now provided to the occupants through the downward momentum of the air. A secondary air-conditioning and air distribution system offers additional cooling in the room and maintains a higher ambient temperature, thus offering significant benefits in conserving energy. The results of this study provide designers and consultants with needed knowledge for design of PV systems.

摘要

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最近的研究表明,热舒适性和个性化通风(PV)系统的室内空气质量带来了好处。建筑师和暖通空调设计师广泛接受的障碍之一是在将 PV 系统与工作站集成时面临的挑战和限制。新开发的天花板安装式 PV 系统解决了这些挑战,提供了一个实用的解决方案,同时保留了 PV 系统的大部分明显优势。在现场环境室中,对热带地区适应的受试者进行了天花板安装式 PV 系统的热环境、空气流动和空气质量评估。三十二名受试者进行正常办公工作,并可以选择暴露于四种不同的 PV 气流率(4、8、12 和 16 L/s),从而为他们提供了合理的个人控制程度。环境温度为 26 和 23.5 摄氏度,PV 空气温度为 26、23.5 和 21 摄氏度。当增加 PV 气流率时,局部和全身热感觉会降低。当增加 PV 气流率或降低温度时,吸入空气温度感觉更凉爽,感知空气质量和空气新鲜度提高。

实际意义

新开发的天花板安装式 PV 系统为在工作站附近集成 PV 空气终端设备(ATD)提供了实用的解决方案。通过将 PV ATD 远程定位在天花板上,直接在居住者上方并在他们的控制之下,现在通过空气的向下动量向居住者提供经过调节的室外空气。辅助空调和空气分配系统为房间提供额外的冷却,并维持较高的环境温度,从而在节能方面带来显著的好处。本研究的结果为设计师和顾问提供了设计 PV 系统所需的知识。

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