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Development of the timber-glass upgrade module for the purpose of its installation on energy-inefficient buildings in the refurbishment process

机译:开发木材玻璃升级模块,以便在翻新过程中将其安装在低能耗建筑上

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The current research study presents the development of the upgrade module consisting of a timber frame structure with the optimal glazing size in the east-, south- and west-oriented fa double dagger ades for the purpose of energy-efficient refurbishment of the existing energy-inefficient buildings. Such construction module could open the way to simple installation onto the existing residential, public or office buildings of various shapes and ensure better energy performance of the refurbished buildings. The optimal glazing size of the east-, south- and west-oriented fa double dagger ades of the module with the optimal shape 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 sum of the annual energy is defined through an extensive parametric numerical analysis including variations regarding the module's aspect ratio, the thermal transmittance of its envelope and the glazing size in its east-, south- and west-oriented fa double dagger ades. A parametric analysis carried out in the previously described manner leads to analytic functional dependence between the energy consumption and the module's design parameters. It is therefore possible to make a fairly simple preliminary estimate of the annual energy need, in addition to defining the optimal floor plan shape of the module along with the optimal proportion of glazing in its east-, south- and west-oriented fa double dagger ades. The optimal proportion of glazing varies from 24 to 91% in the south-oriented fa double dagger ade, from 7 to 43% in the east and from 9 to 55% in the west fa double dagger ade, at the thermal transmittance of the thermal envelope 0.100 W/(m(2) K). The variation in the optimal glazing proportion of the module with the thermal transmittance of the thermal envelope 0.165 W/(m(2) K) ranges from 14 to 85% in the east, from 28 to 97% in the south and from 16 to 68% in the west-oriented fa double dagger ade. The presented research study permits a choice of the optimal module design with respect to baseline characteristics of the existing building and allows for a more systematic as well as energy-efficient refurbishment process.
机译:当前的研究报告提出了升级模块的开发,该模块由木框架结构组成,在东,南和西向的双面匕首玻璃中具有最佳的玻璃尺寸,目的是对现有能源进行节能翻新。低效的建筑物。这样的建筑模块可以为简单安装到现有的各种形状的住宅,公共或办公建筑中提供途径,并确保翻新建筑具有更好的能源性能。具有最佳形状的组件的东,南和西取向的双匕首玻璃的最佳玻璃尺寸取决于玻璃与墙的面积比,其中加热和冷却所需的年能源总和模块的数量很少。年能量的总和是通过广泛的参数数值分析来定义的,其中包括有关模块的纵横比,其包络线的热透射率以及其向东,向南和向西的双面匕首玻璃的尺寸的变化。以先前描述的方式执行的参数分析导致能耗和模块设计参数之间的解析功能依赖性。因此,除了定义模块的最佳平面布置形状以及其向东,向南和向西的双匕首玻璃的最佳比例之外,还可以对年度能源需求进行相当简单的初步估算。阿德斯在热的热传递率下,最佳玻璃的比例在朝南的双匕首玻璃中为24%至91%,在东部为7%至43%,在西部为9%至55%。包络0.100 W /(m(2)K)。组件的最佳玻璃比例随热封壳的热传递系数0.165 W /(m(2)K)的变化从东部的14%到85%,从南部的28%到97%,从16%到16%。 68%的西方双匕首剑。提出的研究允许相对于现有建筑物的基线特征选择最佳的模块设计,并允许更系统,更节能的翻新过程。

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