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短、长途交通工具中的乘客热感觉、热舒适需求和适应性。

Passenger thermal perceptions, thermal comfort requirements, and adaptations in short- and long-haul vehicles.

机构信息

Department of Leisure Planning, National Formosa University, 64 Wen-hua Rd, Huwei, Yunlin 632, Taiwan.

出版信息

Int J Biometeorol. 2010 May;54(3):221-30. doi: 10.1007/s00484-009-0273-9. Epub 2009 Oct 23.

DOI:10.1007/s00484-009-0273-9
PMID:19851789
Abstract

While thermal comfort in mass transportation vehicles is relevant to service quality and energy consumption, benchmarks for such comfort that reflect the thermal adaptations of passengers are currently lacking. This study reports a field experiment involving simultaneous physical measurements and a questionnaire survey, collecting data from 2,129 respondents, that evaluated thermal comfort in short- and long-haul buses and trains. Experimental results indicate that high air temperature, strong solar radiation, and low air movement explain why passengers feel thermally uncomfortable. The overall insulation of clothing worn by passengers and thermal adaptive behaviour in vehicles differ from those in their living and working spaces. Passengers in short-haul vehicles habitually adjust the air outlets to increase thermal comfort, while passengers in long-haul vehicles prefer to draw the drapes to reduce discomfort from extended exposure to solar radiation. The neutral temperatures for short- and long-haul vehicles are 26.2 degrees C and 27.4 degrees C, while the comfort zones are 22.4-28.9 degrees C and 22.4-30.1 degrees C, respectively. The results of this study provide a valuable reference for practitioners involved in determining the adequate control and management of in-vehicle thermal environments, as well as facilitating design of buses and trains, ultimately contributing to efforts to achieve a balance between the thermal comfort satisfaction of passengers and energy conserving measures for air-conditioning in mass transportation vehicles.

摘要

在大众运输工具中,热舒适与服务质量和能源消耗有关,但是目前缺乏反映乘客热适应的此类舒适度基准。本研究报告了一项现场实验,该实验涉及同时进行的物理测量和问卷调查,共收集了 2129 名受访者的数据,评估了短途和长途公共汽车和火车的热舒适度。实验结果表明,高空气温度、强烈的太阳辐射和低空气流动是导致乘客感到热不适的原因。乘客在车辆中所穿衣物的整体隔热性能和热适应性行为与他们在居住和工作空间中的行为不同。短途车辆中的乘客习惯性地调节出风口以增加热舒适度,而长途车辆中的乘客则更喜欢拉上窗帘以减少长时间暴露在太阳辐射下的不适感。短途和长途车辆的中性温度分别为 26.2°C 和 27.4°C,舒适区分别为 22.4-28.9°C 和 22.4-30.1°C。本研究的结果为从事确定车内热环境适当控制和管理的从业人员提供了有价值的参考,同时也为公共汽车和火车的设计提供了便利,最终有助于在乘客的热舒适度满意度和大众运输工具空调的节能措施之间实现平衡。

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本文引用的文献

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Investigating the adaptive model of thermal comfort for naturally ventilated school buildings in Taiwan.台湾自然通风学校建筑热舒适适应性模型研究
Int J Biometeorol. 2009 Mar;53(2):189-200. doi: 10.1007/s00484-008-0203-2. Epub 2009 Jan 9.
2
Combined comfort model of thermal comfort and air quality on buses in Hong Kong.香港巴士上热舒适与空气质量的综合舒适模型。
Sci Total Environ. 2008 Jan 25;389(2-3):277-82. doi: 10.1016/j.scitotenv.2007.08.063. Epub 2007 Oct 18.
3
The effects of solar radiation on thermal comfort.太阳辐射对热舒适性的影响。
Int J Biometeorol. 2007 Jan;51(3):233-50. doi: 10.1007/s00484-006-0050-y. Epub 2006 Aug 29.
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Comfort climate evaluation with thermal manikin methods and computer simulation models.
Indoor Air. 2003 Mar;13(1):28-37. doi: 10.1034/j.1600-0668.2003.01113.x.
5
Probit analysis of thermal sensation assessments.热感觉评估的概率分析。
Int J Biometeorol. 1977 Mar;21(1):29-43. doi: 10.1007/BF01552964.