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首页> 外文期刊>Physiology & behavior >The influence of local effects on thermal sensation under non-uniform environmental conditions - Gender differences in thermophysiology, thermal comfort and productivity during convective and radiant cooling
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The influence of local effects on thermal sensation under non-uniform environmental conditions - Gender differences in thermophysiology, thermal comfort and productivity during convective and radiant cooling

机译:在非均匀环境条件下局部效应对热感的影响-对流和辐射冷却过程中热生理,热舒适性和生产率的性别差异

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摘要

Applying high temperature cooling concepts, i.e. high temperature cooling (T supply is 16-20°C) HVAC systems, in the built environment allows the reduction in the use of (high quality) energy. However, application of high temperature cooling systems can result in whole body and local discomfort of the occupants. Non-uniform thermal conditions, which may occur due to application of high temperature cooling systems, can be responsible for discomfort. Contradictions in literature exist regarding the validity of the often used predicted mean vote (PMV) index for both genders, and the index is not intended for evaluating the discomfort due to non-uniform environmental conditions. In some cases, however, combinations of local and general discomfort factors, for example draught under warm conditions, may not be uncomfortable. The objective of this study was to investigate gender differences in thermophysiology, thermal comfort and productivity in response to thermal non-uniform environmental conditions. Twenty healthy subjects (10 males and 10 females, age 20-29. years) were exposed to two different experimental conditions: a convective cooling situation (CC) and a radiant cooling situation (RC). During the experiments physiological responses, thermal comfort and productivity were measured. The results show that under both experimental conditions the actual mean thermal sensation votes significantly differ from the PMV-index; the subjects are feeling colder than predicted. Furthermore, the females are more uncomfortable and dissatisfied compared to the males. For females, the local sensations and skin temperatures of the extremities have a significant influence on whole body thermal sensation and are therefore important to consider under non-uniform environmental conditions.
机译:在建筑环境中应用高温冷却概念,即高温冷却(T供气温度为16-20°C)HVAC系统,可以减少(高质量)能源的使用。然而,高温冷却系统的应用会导致乘员全身和局部不适。可能由于使用高温冷却系统而发生的不均匀热状况可能导致不适感。文献中关于经常使用的男女平均预测投票(PMV)指数的有效性存在矛盾,该指数并非旨在评估由于环境条件不均匀而引起的不适。但是,在某些情况下,局部和一般不适因素的组合(例如在温暖条件下的吃水)可能不会感到不适。这项研究的目的是调查热生理,热舒适度和生产力方面的性别差异,以应对热不均匀的环境条件。二十名健康受试者(男10例,女10例,年龄20-29。岁)经历了两种不同的实验条件:对流冷却情况(CC)和辐射冷却情况(RC)。在实验期间,测量生理反应,热舒适性和生产率。结果表明,在两种实验条件下,实际的平均热感投票与PMV指数显着不同。受试者感觉比预期的要冷。此外,与男性相比,女性更不舒服和不满意。对于女性而言,四肢的局部感觉和皮肤温度对全身的热感觉有重要影响,因此在不均匀的环境条件下考虑时很重要。

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