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Contribution of waste products in single-layer ceramic building envelopes to overall energy savings

机译:单层陶瓷建筑围护结构中的废品对整体节能的贡献

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The contribution of waste materials to the overall energy savings in buildings with single-layer ceramic envelopes is twofold. They can not only enhance the thermal properties of the brick blocks but also reduce the total energy necessary for the brick production. In this paper the contribution of waste products to the energy performance is demonstrated for a typical brick family house in the climatic conditions of Prague, Czech Republic. The energy calculations are conducted using Energy Plus with pre-calculated parameters given by the PHPP model. Specific computational modules for the calculation of effective thermal conductivity of brick blocks are utilized as integral parts of the energy performance calculation tool. Five different types of external walls are analyzed. They are made of solid clay bricks, sawdust-lightweighted solid clay bricks and a new type of highly perforated ceramic block with improved geometry which was developed recently by a Czech brick producer in three versions, having the cavities filled with air, waste polyurethane and mineral wool. The obtained results show that perforating the bricks, together with lightening their body and applying thermal insulating cavity fillers, can reduce the specific heating demands of the analyzed building up to 79.4%. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在单层陶瓷外壳的建筑物中,废料对整体节能的贡献是双重的。它们不仅可以提高砖块的热性能,而且可以减少生产砖块所需的总能量。在本文中,在捷克共和国布拉格的气候条件下,证明了典型砖房房屋中废物对能源性能的贡献。使用Energy Plus进行能量计算,并使用PHPP模型给出的预先计算的参数。用于计算砖块有效导热系数的特定计算模块被用作能源性能计算工具的组成部分。分析了五种不同类型的外墙。它们由实心粘土砖,锯末轻质实心粘土砖和新型改进几何形状的高穿孔陶瓷砖制成,捷克砖生产商最近开发了三种形式的空心砖,它们的空腔中充满了空气,废聚氨酯和矿物羊毛。所得结果表明,对砖进行穿孔,减轻其重量并使用隔热空腔填充剂,可将被分析建筑物的比供暖需求降低多达79.4%。 (C)2016 Elsevier Ltd.保留所有权利。

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