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Air quality and passenger comfort in an air-conditioned bus micro-environment

机译:空调公交车微环境中的空气质量和乘客舒适度

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摘要

In this study, passenger comfort and the air pollution status of the micro-environmental conditions in an air-conditioned bus were investigated through questionnaires, field measurements, and a numerical simulation. As a subjective analysis, passengers' perceptions of indoor environmental quality and comfort levels were determined from questionnaires. As an objective analysis, a numerical simulation was conducted using a discrete phase model to determine the diffusion and distribution of pollutants, including particulate matter with a diameter 10 mu m(PM10), which were verified by experimental results. The results revealed poor air quality and dissatisfactory thermal comfort conditions in Jinan's air-conditioned bus system. To solve these problems, three scenarios (schemes A, B, C) were designed to alter the ventilation parameters. According to the results of an improved simulation of these scenarios, reducing or adding air outputs would shorten the time taken to reach steady-state conditions and weaken the airflow or lower the temperature in the cabin. The airflow pathway was closely related to the layout of the air conditioning. Scheme B lowered the temperature by 0.4 K and reduced the airflow by 0.01 m/s, while scheme C reduced the volume concentration of PM10 to 150 mu g/m(3). Changing the air supply angle could further improve the airflow and reduce the concentration of PM10. With regard to the perception of airflow and thermal comfort, the scheme with an airflow provided by a 60 degrees nozzle was considered better, and the concentration of PM10 was reduced to 130 mu g/m(3).
机译:在这项研究中,通过问卷调查,现场测量和数值模拟研究了空调公共汽车中乘客的舒适度和微环境状况的空气污染状况。作为主观分析,通过问卷调查确定乘客对室内环境质量和舒适度的看法。作为客观分析,使用离散相模型进行了数值模拟,以确定污染物的扩散和分布,其中包括直径<10μm(PM10)的颗粒物,并通过实验结果进行了验证。结果显示济南的空调公交系统的空气质量差且热舒适性不理想。为了解决这些问题,设计了三种方案(方案A,B,C)来更改通风参数。根据这些情况的改进模拟结果,减少或增加空气输出将缩短达到稳态条件所需的时间,并减弱气流或降低机舱温度。气流路径与空调的布局密切相关。方案B将温度降低了0.4 K,气流减少了0.01 m / s,方案C将PM10的体积浓度降低到150μg / m(3)。改变送风角度可以进一步改善气流并降低PM10的浓度。考虑到气流和热舒适性,采用60度喷嘴提供气流的方案被认为更好,并且PM10的浓度降至130μg / m(3)。

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