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Validation of a coupled pressure-equalization-thermal-mechanical model to study double-skin facades

机译:验证耦合压差 - 均衡 - 热机械模型,用于研究双皮立面

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Although double skin fa?ades are a well-known fa?ade system, still few experimental data and numerical approaches exist in literature that couple their thermal behaviour and pressure equalisation with the structural response. The reason is that, differently from insulating glazing units, the extent of the problem is trivial when designing ventilated double skins. Indeed, the leakage of the double skin cavity is large enough to avoid any response of the internal cavity pressure to its temperature variations. However, during the last years Closed Cavity Fa?ades, a new trend of double skins, have been applied in order to achieve high performances in terms of thermal and acoustic insulation and providing at the same time valuable benefit with regards to maintenance cost reduction. The CCF low levels of air permeability are responsible for a strong correlation of pressure and temperature of its cavity and the phenomenon needs an accurate model to support the design. Indeed, an optimal design of the outer and inner skin should consider the skin interactions and their coupling through the cavity, under the dynamic temperature and variable mass within the cavity itself. The mass variation is governed by two counteracting effects: on one side the dry and clean air that is pumped into the cavity in order to avoid the risk of condensation, on the other side the mass flows through the skin openings that connects cavity with external and internal environment. Moreover, the pressure is also affected by the interior and exterior air pressures that induce a deflection of the inner and outer skin. A numerical calculation procedure was developed, integrated with commercial codes commonly used in fa?ade design, in order to provide a unique assessment tool for the coupled thermal-mechanical design of double skin facades. The tool has been validated by means of an extensive experimental campaign and the different relevant effects have been described.
机译:虽然双皮FA?ADES是一个众所周知的FA?ADE系统,文献中存在仍然存在的实验数据和数值方法,使其热行为和压力均衡与结构响应耦合。原因是,与绝缘玻璃单元不同,在设计通风双皮肤时,问题的程度是微不足道的。实际上,双表皮腔的泄漏足够大,以避免内腔压力的任何响应到其温度变化。然而,在过去几年中,封闭腔FA?Ades,一种新的双皮趋势,已经应用,以便在热和声学绝缘方面实现高性能,同时提供有价值的受益于维护成本减少。 CCF低水平的透气性负责其腔的压力和温度的强烈相关性,并且该现象需要准确的模型来支持设计。实际上,外皮和内皮的最佳设计应该考虑皮肤相互作用,并在腔体内的动态温度和可变质量下通过腔体进行皮肤相互作用和它们的耦合。质量变化由两个抵消效果管辖:在一侧泵入腔中的干燥和清洁空气以避免凝结的风险,在另一侧,质量通过外部和外部连接腔的皮肤开口。内部环境。此外,压力也受到内部和外部空气压力的影响,该内部和外部空气压力诱导内部和外部皮肤的偏转。开发了数值计算过程,与FA常用的商业代码集成,为ADE设计,为双皮肤外墙的耦合热电机械设计提供了独特的评估工具。该工具已通过广泛的实验活动验证,并描述了不同的相关效果。

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