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Application of the timber-glass upgrade module for energy refurbishment of the existing energy-inefficient multi-family buildings

机译:木材玻璃升级模块在现有低能耗多户住宅建筑的能源翻新中的应用

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The current research study presents two possible approaches to energy-efficient refurbishment of the existing energy-inefficient multi-family buildings. The first involves individual renovation phases, their combinations and a complex energy-efficient refurbishment of the existing multi-family buildings. The second approach analyses the effect on the multi-family building's annual energy need for heating and cooling produced by a timber-glass upgrade module with the optimal glazing size in its south-oriented facade which is installed onto the multi-family building. For the purpose of its applicability, the study involves upgrade modules of various shapes and net floor areas, with the optimal glazing size in the south-oriented facade defined for each of the module shapes. The optimal glazing size of the module is determined by the glazing-to-wall area ratio where the sum total of the annual energy need for heating and cooling of the module is minimal. The study is based on two existing energy-inefficient multi-family buildings with different floor plans on top of which four upgrade modules are installed. The presented results show a possible positive impact the installation of an upgrade module with the optimal glazing size in south-oriented facade has on energy savings of the building. Within the energy refurbishment process the study offers a possibility of selecting various module shapes and even a different number of upgrade modules with appropriately selected parameters. (C) 2016 Elsevier B.V. All rights reserved.
机译:当前的研究报告提出了两种可能的方法来对现有的低能耗多户建筑进行高能效翻新。第一阶段涉及单个翻新阶段,它们的组合以及对现有多户住宅建筑的复杂节能翻新。第二种方法分析了安装在多层房屋上的朝南立面具有最佳玻璃尺寸的木材玻璃升级模块所产生的供暖和制冷对多层房屋每年能源需求的影响。出于其适用性的目的,该研究涉及各种形状和净地板面积的升级模块,并为每种模块形状定义了朝南的立面中的最佳玻璃尺寸。模块的最佳玻璃尺寸由玻璃与壁的面积比确定,其中,用于模块加热和冷却的年能源总需求最小。这项研究基于两座现有的低能耗多户家庭建筑,它们的平面图各不相同,并在其上安装了四个升级模块。呈现的结果表明,在朝南的立面中安装具有最佳玻璃尺寸的升级模块可能会对建筑物的节能产生积极影响。在能源翻新过程中,该研究提供了选择各种模块形状甚至具有适当选择参数的不同数量升级模块的可能性。 (C)2016 Elsevier B.V.保留所有权利。

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