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A museum storeroom air-conditioning system employing the temperature and humidity independent control device in the cooling coil

机译:在冷却盘管中采用温度和湿度独立控制装置的博物馆储藏室空调系统

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摘要

For conservation of cultural heritage, HVAC systems are often necessary for museums to maintain suitable indoor environment with precise control of indoor thermal-hygrometric parameters and air velocity. Large deviations of these parameters from the design values should be prevented, because they may cause degradation of artworks. So, more energy consumption is inevitable. This paper presents a novel temperature and humidity independent control (THIC) device and its associated control method in a museum storeroom air-conditioning system. Compared with the conventional HVAC system with the cooling coil (CC), where the apparatus dew point is usually fixed, this system adopting the THIC device can achieve independent temperature and humidity control in an energy saving way. The experiment study shows that this system can reduce the energy consumption by 21.7%, compared with the conventional HVAC systems using reheat and humidify for an indoor thermal-hygrometric environment, and the temperature and humidity in the storeroom are also kept stable and at a higher precision level.
机译:为了保护文化遗产,博物馆通常需要HVAC系统,以通过精确控制室内温湿度参数和空气速度来维持合适的室内环境。这些参数与设计值的较大偏差应避免,因为它们可能会导致艺术品退化。因此,更多的能源消耗是不可避免的。本文介绍了一种新颖的温湿度独立控制(THIC)装置及其在博物馆储藏室空调系统中的相关控制方法。与通常具有固定露点的带有冷却盘管(CC)的传统HVAC系统相比,该采用THIC装置的系统可以以节能的方式实现独立的温度和湿度控制。实验研究表明,与传统的在室内温湿度环境下采用再加热和加湿的传统HVAC系统相比,该系统可减少21.7%的能耗,并且储藏室中的温度和湿度也保持稳定和较高精度水平。

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