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Chilled ceiling and displacement ventilation aided with personalized evaporative cooler

机译:冷冻天花板和置换通风与个性化的蒸发冷却器相辅相成

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摘要

This paper aims at studying the energy impact of a chilled ceiling displacement ventilation CC/DV system aided with a personalized evaporative cooler {PEC) directed towards the occupant trunk and face. A simulation model is developed for integrating the personalized cooler with the ascending thermal plume. The thermal model of the conditioned room air around the person is integrated with a segmental bioheat and thermal comfort model to predict the human thermal comfort. The model is validated with experimental data on the vertical temperature distribution in the room, and the recorded overall comfort perceived by surveyed subjects. Experimental results agreed well with predicted values of temperature and comfort level. When using personalized cooling, the DV supply air temperature can be as high as 24 C while the PEC at flow rates of 3-101/s achieved similar comfort with a DV system at supply temperature of 21 C. At equal thermal comfort level, the integrated CC/DV system, PEC model resulted in up to 17.5% energy savings compared to the CC/DV system without a PEC. When mixed air is used in the CC/DV system additional 25% savings in energy is realized when compared with energy used for the 100% fresh air without the PEC.
机译:本文旨在研究带有针对个人后备箱和脸部的个性化蒸发冷却器(PEC)的冷冻天花板置换式通风CC / DV系统的能量影响。开发了一个仿真模型,用于将个性化冷却器与上升的热羽整合在一起。将人周围调节过的室内空气的热模型与分段生物热和热舒适模型集成在一起,以预测人类的热舒适度。该模型已通过有关室内垂直温度分布的实验数据以及被调查对象感知到的记录的总体舒适度进行了验证。实验结果与温度和舒适度的预测值非常吻合。当使用个性化冷却时,DV的送风温度可高达24 C,而PEC在3-101 / s的流量下与DV系统在21 C的送风温度下可获得相似的舒适度。集成的CC / DV系统,与不带PEC的CC / DV系统相比,PEC模型可节省多达17.5%的能源。与没有PEC的100%新鲜空气相比,在CC / DV系统中使用混合空气时,可节省25%的能源。

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