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A thermo-activated wall for load reduction and supplementary cooling with free to low-cost thermal water

机译:用于减载和减载的热激活壁 补充冷却,免费提供低成本的热水

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摘要

A building envelope serves as a thermal barrier and plays an important role in determining the amount of energy used to achieve a comfortable indoor environment. Conventionally, it is constructed and treated as a passive component in a building thermal energy system. In this article, a novel, mini-tube capillary-network embedded and thermal-water activated building envelope is proposed to turn the passive component into active, therefore broaden the direct utilization of low-grade thermal energy in buildings. With this proposed approach, low-grade thermal water at a medium temperature close to the ambient environment can be potentially utilized to either counterbalance the thermal load or indirectly heat and cool the space. With the revealing of the idea, effects of water temperature and flow rate on the envelope’s thermal performance are investigated using a transient model. The results indicate that the thermo-activated wall can be effective in stabilizing the internal surface temperature, offsetting the heat gain, and supplying cooling energy to the space in summer. Utilization of the innovation should take the cost of total energy, energy benefit and efficiency into consideration. This article illustrates how low-grade energy can be actively used as a means for achieving net-zero energy buildings.
机译:建筑围护结构用作隔热层,并在确定实现舒适的室内环境所用的能量时起着重要作用。按照惯例,它被构造并视为建筑物热能系统中的无源组件。在本文中,提出了一种新颖的微型管式毛细管网络嵌入式热水活化建筑围护结构,以将被动组件转变为主动组件,从而扩大了建筑物中低等级热能的直接利用。通过这种提议的方法,可以潜在地利用处于接近周围环境的中等温度的低级热水来抵消热负荷或间接加热和冷却空间。有了这个想法,就可以使用瞬态模型研究水温和流速对信封热性能的影响。结果表明,在夏天,热活化墙可以有效地稳定内表面温度,抵消热量增加并向空间提供冷却能量。创新的利用应考虑总能源成本,能源效益和效率。本文说明了如何将低品位能源积极地用作实现零能耗建筑的手段。

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