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Energy efficient surfaces on building sandwich panels-A dynamic simulation model

机译:建筑夹芯板上的节能表面-动态仿真模型

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The choice of building envelope is critical for the energy performance of buildings. The major part of the energy used by a building during its lifetime is used for maintaining a suitable interior thermal climate under varying exterior conditions. Although exterior heat radiation properties (i.e. total solar reflectivity and long wave thermal emissivity) have been well accepted to have a large impact on the need for active cooling in warmer climate, the effect of a reduced thermal emissivity on interior surfaces on the building thermal energy flux is rarely studied. This paper addresses the sensitivity of the thermal energy flux through a sandwich panel, by systematically varying the surface thermal emissivity (both interior and exterior) and total solar reflectance of exterior surface, for three geographical locations: southern, middle and northern Europe. A model is introduced for calculating the effect of both interior and exterior optical properties of a horizontal roof panel in terms of net energy flux per unit area. The results indicate potential energy saving by the smart choice of optical properties of interior and exterior surfaces.
机译:建筑物围护结构的选择对于建筑物的能源性能至关重要。建筑物在其生命周期中使用的大部分能量用于在变化的外部条件下维持合适的内部热气候。尽管外界的热辐射特性(即总的太阳反射率和长波热辐射率)已被公认对温暖气候下主动冷却的需求有很大的影响,但是降低室内表面的热辐射率对建筑物热能的影响通量很少研究。本文通过系统地改变三个地区(南欧,中欧和北欧)的表面热发射率(内部和外部)和外部表面的总太阳反射率,来研究通过夹芯板的热能通量的敏感性。引入了一种模型,该模型根据单位面积的净能量通量来计算水平屋顶面板的内部和外部光学特性的影响。结果表明,通过明智地选择内外表面的光学特性,可以节省能源。

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