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Thermal evaluation of a double glazing facade system with integrated Parallel Slat Transparent Insulation Material (PS-TIM)

机译:集成了平行板条透明隔热材料(PS-TIM)的双层玻璃幕墙系统的热评估

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Concerns over sustainability in the built environment have resulted in continuous efforts to improve the performance of glazed facade systems and hence indoor comfort and building energy conservation. An innovative facade system where parallel transparent plastic slats are sandwiched between glass panes to form a Parallel Slat Transparent Insulation Material (PS-TIM)is proposed as a strategy to effectively reduce coupled convective and radiative heat transfer between the panes of a double glazed window. This strategy increases the thermal resistance of the facade, while maintaining access to daylight. A numerical investigation of the thermal and optical performance of this facade system is presented. Detailed modelling of the thermal characteristics of a double glazed window containing PS-TIM systems was carried out for different cell aspect ratios (defined by the thickness of window air cavity and slat interval distance), slat thickness and slat properties (conductivities and emissivities) using a validated Computational Fluid Dynamic (CFD) model. The CFD predictions show that: 1) an aspect ratio of 0.35 can provide full suppression of convection; 2) the PS-TIM structure can achieve a 35-46% reduction in thermal conductance compared with the same double glazing in the absence of PS-TIM; 3) material conductivity, thickness and emissivity have a more apparent influence on small cell structures than large cell structures. In addition, a simple analysis of U-value and light transmittance at various solar incidence angles was undertaken. The results provide a better understanding of the benefits of PS-TIM in terms of energy saving and offer suggestions for the improved design of glazing facade systems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对建筑环境可持续性的关注导致人们不断努力改善玻璃幕墙系统的性能,从而改善室内舒适度和建筑节能。提出了一种创新的立面系统,其中将平行的透明塑料板条夹在玻璃板之间以形成平行板条的透明隔热材料(PS-TIM),作为有效减少双层玻璃窗板之间的对流和辐射耦合传热的策略。此策略可增加立面的热阻,同时保持对日光的访问。提出了对该立面系统的热和光学性能的数值研究。使用以下方法对包含PS-TIM系统的双层玻璃窗的热特性进行了详细建模:不同的单元长宽比(由窗孔的厚度和板条间隔距离定义),板条厚度和板条特性(电导率和发射率)经过验证的计算流体动力学(CFD)模型。 CFD的预测表明:1)0.35的纵横比可以完全抑制对流; 2)与没有PS-TIM的相同双层玻璃相比,PS-TIM结构的导热系数可降低35-46%; 3)材料的电导率,厚度和发射率对小孔结构的影响比大孔结构的影响大。此外,还对各种太阳入射角下的U值和透光率进行了简单分析。结果更好地了解了PS-TIM在节能方面的优势,并为改进玻璃幕墙系统设计提供了建议。 (C)2016 Elsevier Ltd.保留所有权利。

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