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Ventilated Facade with double chamber and flow control device

机译:带双室和流量控制装置的通风幕墙

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Currently, ventilated facades are composed by an inner sheet, thermal insulation, ventilation chamber and exterior finish, a system that allows the heat absorbed by solar radiation to dissipate through natural ventilation of the air from the chamber. This article discusses the feasibility of adding a second air chamber parallel to the existing one, both interconnected by the bottom of the facade, and with a device at the top to regulate the air flow in the chambers, depending on the gradient of the existing temperature between inside and outside the building. The main objective is to evaluate the potential of this proposed system in the improvement of the energy efficiency of the building, using a steady model of Computational Fluid Dynamics (CFD). To this end, a comparative study of energy performance was carried out, as well as the thermal and fluid dynamic behavior, between the proposed two-chamber system and the conventional ventilated facade system with closed joint, at different times of the year. The results show that the proposed system allows an increase of 38% efficiency in summer period, and 333% in winter period, compared to a conventional ventilated facade with closed joint. (C) 2017 Elsevier B.V. All rights reserved.
机译:当前,通风的外墙由内层板,隔热层,通风室和外部饰面组成,该系统允许太阳辐射吸收的热量通过室内空气的自然通风而消散。本文讨论了添加一个与现有空气室平行的第二空气室的可行性,该空气室都通过立面的底部相互连接,并在顶部具有一个装置来调节空气室中的空气流动,具体取决于现有温度的梯度在建筑物的内部和外部之间。主要目标是使用计算流体动力学(CFD)的稳定模型来评估该拟议系统在提高建筑物能源效率方面的潜力。为此,在一年中的不同时间,对拟议的两室系统和传统的带封闭式接缝的通风外墙系统之间的能源性能以及热和流体动力学行为进行了比较研究。结果表明,与传统的带封闭缝的通风外墙相比,该系统在夏季可提高38%的效率,在冬季可提高333%的效率。 (C)2017 Elsevier B.V.保留所有权利。

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