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Impact of the position of the window in the reveal of a cavity wall on the heat loss and the internal surface temperature of the head of an opening with a steel lintel

机译:孔壁中窗的位置对带有钢门lin的开口头部的热损失和内表面温度的影响

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摘要

The interface between the head of the window and the wall represents one of the largest thermal bridges of a building and one of the areas with the highest risk of surface condensation. This paper confirmed the importance, and investigated the impact, of the location of the window in the reveal of a cavity wall on the lintel and surface temperature of the area. Additionally, it studied the reliability and accuracy of assessing this thermal bridge using an adiabatic surface instead the actual window. Two possible construction details that meet PARTL 2013 were modelled and assessed with HEAT2D software, following\udtwo different methods: the standard and commonly used (adiabatic surface) method and the detailed one (including the actual window). The outputs revealed that the adiabatic surface prevents the software to account the heat transfer that in reality occurs between the window frame and the highly conductive steel lintel. Therefore, the current simplified method could underestimates the heat losses up to 33% and the surface temperature by over 4 ◦C for certain locations. Additionally, it locates the optimal area for the\udframe between overlapping 70 mm the cavity to align with the insulation layer of the cavity. Finally, it concluded that under current trends of extremely low lintel the adiabatic surface has a greater impact than before, producing less accurate outputs, enough to start to think on the necessity of including the actual window during the assessment of the thermal performance of top hat lintels without base plate\udin low/zero carbon projects.
机译:窗户的头部和墙壁之间的界面代表建筑物中最大的热桥之一,也是表面凝结风险最高的区域之一。本文证实了窗洞位置在洞壁上的重要性,并研究了窗洞对门on和该区域表面温度的影响。此外,它还研究了使用绝热表面而非实际窗口评估此热桥的可靠性和准确性。使用\ EAT两种不同的方法,使用HEAT2D软件对满足PARTL 2013的两种可能的施工细节进行了建模和评估:两种和两种不同的方法:标准和常用(绝热表面)方法以及详细的一种(包括实际窗口)方法。输出表明,绝热表面阻止了软件计算实际上发生在窗框和高导电性钢石之间的传热。因此,对于某些位置,当前的简化方法可能低估了高达33%的热损失和4℃以上的表面温度。此外,它在重叠的70毫米空腔之间定位了\ udframe的最佳区域,以与空腔的绝缘层对齐。最后,得出的结论是,在当前极低low石的趋势下,绝热表面的影响比以前更大,产生的输出精度较低,足以开始考虑在评估高顶礼帽的热性能时包括实际窗口的必要性没有底板\ udin低碳/零碳项目的门。

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