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香港巴士上热舒适与空气质量的综合舒适模型。

Combined comfort model of thermal comfort and air quality on buses in Hong Kong.

作者信息

Shek Ka Wing, Chan Wai Tin

机构信息

Department of Building Services Engineering, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China.

出版信息

Sci Total Environ. 2008 Jan 25;389(2-3):277-82. doi: 10.1016/j.scitotenv.2007.08.063. Epub 2007 Oct 18.

Abstract

Air-conditioning settings are important factors in controlling the comfort of passengers on buses. The local bus operators control in-bus air quality and thermal environment by conforming to the prescribed levels stated in published standards. As a result, the settings are merely adjusted to fulfill the standards, rather than to satisfy the passengers' thermal comfort and air quality. Such "standard-oriented" practices are not appropriate; the passengers' preferences and satisfaction should be emphasized instead. Thus a "comfort-oriented" philosophy should be implemented to achieve a comfortable in-bus commuting environment. In this study, the achievement of a comfortable in-bus environment was examined with emphasis on thermal comfort and air quality. Both the measurement of physical parameters and subjective questionnaire surveys were conducted to collect practical in-bus thermal and air parameters data, as well as subjective satisfaction and sensation votes from the passengers. By analyzing the correlation between the objective and subjective data, a combined comfort models were developed. The models helped in evaluating the percentage of dissatisfaction under various combinations of passengers' sensation votes towards thermal comfort and air quality. An effective approach integrated the combined comfort model, hardware and software systems and the bus air-conditioning system could effectively control the transient in-bus environment. By processing and analyzing the data from the continuous monitoring system with the combined comfort model, air-conditioning setting adjustment commands could be determined and delivered to the hardware. This system adjusted air-conditioning settings depending on real-time commands along the bus journey. Therefore, a comfortable in-bus air quality and thermal environment could be achieved and efficiently maintained along the bus journey despite dynamic outdoor influences. Moreover, this model can help optimize air-conditioning control by striking a beneficial balance between energy conservation and passengers' satisfaction level.

摘要

空调设置是控制公交车上乘客舒适度的重要因素。当地公交运营商通过符合已发布标准中规定的水平来控制车内空气质量和热环境。因此,这些设置仅仅是为了满足标准而调整,而非为了满足乘客的热舒适度和空气质量。这种“以标准为导向”的做法并不合适;相反,应该强调乘客的偏好和满意度。因此,应实施“以舒适度为导向”的理念,以营造舒适的车内通勤环境。在本研究中,重点围绕热舒适度和空气质量对营造舒适车内环境进行了考察。通过测量物理参数和进行主观问卷调查,收集了车内实际的热参数和空气参数数据,以及乘客的主观满意度和感受投票。通过分析客观数据与主观数据之间的相关性,开发了综合舒适度模型。这些模型有助于评估在乘客对热舒适度和空气质量的各种感受投票组合下的不满意百分比。一种将综合舒适度模型、硬件和软件系统以及公交车空调系统整合在一起的有效方法,可以有效控制车内瞬态环境。通过使用综合舒适度模型对来自连续监测系统的数据进行处理和分析,可以确定空调设置调整指令并传送给硬件。该系统会根据公交车行驶过程中的实时指令调整空调设置。因此,尽管受到动态的室外影响,在公交车行驶过程中仍可实现并有效维持舒适的车内空气质量和热环境。此外,该模型有助于通过在节能与乘客满意度之间达成有益平衡来优化空调控制。

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