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Forty years of Fanger's model of thermal comfort: comfort for all?

机译:Fanger热舒适模型四十年了:所有人都能舒适吗?

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摘要

The predicted mean vote (PMV) model of thermal comfort, created by Fanger in the late 1960s, is used worldwide to assess thermal comfort. Fanger based his model on college-aged students for use in invariant environmental conditions in air-conditioned buildings in moderate thermal climate zones. Environmental engineering practice calls for a predictive method that is applicable to all types of people in any kind of building in every climate zone. In this publication, existing support and criticism, as well as modifications to the PMV model are discussed in light of the requirements by environmental engineering practice in the 21st century in order to move from a predicted mean vote to comfort for all. Improved prediction of thermal comfort can be achieved through improving the validity of the PMV model, better specification of the model's input parameters, and accounting for outdoor thermal conditions and special groups. The application range of the PMV model can be enlarged, for instance, by using the model to assess the effects of the thermal environment on productivity and behavior, and interactions with other indoor environmental parameters, and the use of information and communication technologies. Even with such modifications to thermal comfort evaluation, thermal comfort for all can only be achieved when occupants have effective control over their own thermal environment.
机译:Fanger在1960年代后期创建的热舒适性预测平均投票(PMV)模型在全球范围内用于评估热舒适性。 Fanger的模型基于大学生,用于适度热气候区域中空调建筑物的恒定环境条件。环境工程实践要求一种预测方法,该方法适用于每个气候区中任何类型建筑物中的所有类型的人。在本出版物中,根据21世纪环境工程实践的要求,讨论了现有的支持和批评以及对PMV模型的修改,以便从预测的平均投票转为所有人的舒适。通过改善PMV模型的有效性,更好地指定模型的输入参数以及考虑室外热条件和特殊人群,可以提高对热舒适性的预测。 PMV模型的应用范围可以扩大,例如,通过使用模型来评估热环境对生产力和行为的影响以及与其他室内环境参数的相互作用以及信息和通信技术的使用。即使对热舒适性评估进行了此类修改,也只有在乘客对其自身的热环境进行有效控制的情况下,才能实现所有人的热舒适性。

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