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三种通风方式下教室热舒适条件的评价。

Evaluation of thermal comfort conditions in a classroom with three ventilation methods.

机构信息

Building Energy & Environmental Technology Research Unit, Division of Building Science and Technology, City University of Hong Kong, Kowloon, Hong Kong.

出版信息

Indoor Air. 2011 Jun;21(3):231-9. doi: 10.1111/j.1600-0668.2010.00693.x. Epub 2011 Jan 25.

Abstract

UNLABELLED

Thermal sensation is studied experimentally under mixing ventilation, displacement ventilation, and stratum ventilation in an environmental chamber. Forty-eight subjects participated in all tests under the same boundary conditions but different ventilation methods in the classroom. Thermal comfort analysis was carried out according to the designated supply airflow rate, room temperature, and relative humidity for the three ventilation methods. The thermal neutral temperature under stratum ventilation is approximately 2.5 °C higher than that under mixing ventilation and 2.0 °C higher than that under displacement ventilation. This result indicates that stratum ventilation could provide satisfactory thermal comfort level to rooms of temperature up to 27 °C. The energy saving attributable to less ventilation load alone is around 12% compared with mixing ventilation and 9% compared with displacement ventilation.

PRACTICAL IMPLICATIONS

The confirmation of the significantly elevated thermal neutral temperature can have a number of implications for both thermal comfort in an air-conditioned room and energy consumption of the associate air-conditioning system. With respect to the former, it provides scientific basis for the feasibility of elevated room temperatures, and with respect to the latter, it reveals considerable potentials for energy saving.

摘要

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在环境室中,通过混合通风、置换通风和分层通风对热感觉进行了实验研究。48 名受试者在相同边界条件下参与了所有测试,但在教室中采用了不同的通风方式。根据指定的送风速度、室温、相对湿度对三种通风方式进行了热舒适分析。分层通风的热中性温度比混合通风高约 2.5°C,比置换通风高 2.0°C。这一结果表明,分层通风可以为温度高达 27°C 的房间提供令人满意的热舒适水平。与混合通风相比,仅由于通风负荷减少而节省的能源约为 12%,与置换通风相比,节省的能源约为 9%。

实际意义

热中性温度的显著升高,可以对空调房间的热舒适性和相关空调系统的能耗产生多种影响。就前者而言,它为提高室温的可行性提供了科学依据,就后者而言,它揭示了节能的巨大潜力。

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