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Numerical simulation and sensitivity analysis of a steel framed internal insulation system

机译:钢框架内部保温系统的数值模拟和灵敏度分析

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The increase of thermal insulation of existing buildings is considered a fundamental operation for reducing building energy consumption for heating and cooling. Internal insulation systems represents, in some cases, the only possible solution. Historical refurbished buildings represent a typical case when local regulations forbid external insulation placement. However, sometimes designers compute insulated wall thermal conductance disregarding the effect of structural elements employed to fix the insulation layers to existing walls. In the present paper, we analyse a typical internal insulation system made of steel studs fixed to the wall with interposed insulation layers covered by plasterboard. Using previously obtained experimental measurements of the heat flux at the centre of insulation and on steel studs, the validation of a three-dimensional numerical model and a parametric analysis has been carried out. Five cases have been analysed, showing that the main parameter to be taken into account is the radiation heat exchange between the steel studs and the wall, on the contrary, air convection inside the stud resulted less important in evaluating heat transfer. The numerical model has been used to compute a mean conductance of the wall showing that neglecting the steel stud leads to the underestimation of wall conductance by about 20 percent. (C) 2017 Elsevier B.V. All rights reserved.
机译:现有建筑物的隔热增加被认为是减少建筑物供暖和制冷能耗的基本操作。内部绝缘系统在某些情况下是唯一可能的解决方案。当当地法规禁止外部绝缘放置时,历史悠久的翻新建筑是典型案例。但是,有时设计人员会计算绝缘墙的导热系数,而不考虑用来将绝缘层固定到现有墙壁上的结构元件的作用。在本文中,我们分析了一个典型的内部保温系统,该系统由钢钉制成,固定在墙上,中间的绝缘层由石膏板覆盖。使用先前获得的绝缘中心处和钢钉上的热通量的实验测量值,对三维数值模型和参数分析进行了验证。分析了五种情况,表明要考虑的主要参数是钢钉与壁之间的辐射热交换,相反,钉内的空气对流对评估传热的重要性较小。数值模型已用于计算墙体的平均电导率,表明忽略钢钉会导致墙体电导率低估约20%。 (C)2017 Elsevier B.V.保留所有权利。

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