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FRAMEWORK FOR AN INTEGRATED SYSTEM FOR ENHANCING THE ENERGY EFFICIENCY AND STRUCTURAL PERFORMANCE OF BUILDINGS

机译:用于提高建筑物的能效和结构性能的集成系统的框架

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The building stock should be in operational and reliable state in order to ensure primarily the safety of the users. In addition to safety, nowadays the comfort of the users is of prime importance. To satisfy the required comfort levels the user should consume energy, in the form of heating, cooling etc. Therefore this ongoing trend to satisfy these conditions, results in buildings which are safer, more economic to operate and more sustainable. Taking into account economic, technical, durability and environmental factors there is the need for a holistic approach for the optimum performance of buildings for structural integrity and energy efficiency. Current practice evolves around building solutions that isolate each deficiency and proposes solutions to enhance each of the two separately. In the last few years, from a sustainability perspective, emphasis is placed on developing an integrated system for buildings that will improve simultaneously both the structural integrity and the energy performance and should be preferred over individual actions. This study investigates independent building and/or retrofit actions applied for structural strengthening and energy performance improvements that have the potential to be combined into an integrated system to enhance the overall performance of buildings. Such multidisciplinary approach will ensure that new and existing buildings satisfy both structural safety and energy efficiency targets in a more economic and effective manner. Furthermore, as first step in this direction, an experimental test program was conducted in the laboratory to examine the benefit of applying thermal insulation in the form of polystyrene on the durability context by reducing the building's material deterioration due to environmental effects.
机译:建筑物料应处于运行可靠的状态,以主要确保使用者的安全。除了安全以外,如今用户的舒适性也至关重要。为了满足所需的舒适度,用户应该以供暖,制冷等形式消耗能量。因此,满足这些条件的这种持续趋势导致建筑物更安全,操作更经济,更可持续。考虑到经济,技术,耐用性和环境因素,需要一种整体方法来使建筑物的最佳性能达到结构完整性和能效。当前的实践围绕构建解决方案来隔离每个缺陷,并提出了分别增强这两个缺陷的解决方案。在过去的几年中,从可持续性的角度来看,重点放在开发用于建筑物的集成系统上,该系统将同时改善结构完整性和能源性能,并且应优先于个人行动。这项研究调查了用于结构加固和能源性能改善的独立建筑和/或改造行动,这些行动有可能被整合到一个集成系统中,以增强建筑物的整体性能。这种多学科方法将确保新建筑物和现有建筑物以更经济和有效的方式满足结构安全和能效目标。此外,作为朝着这个方向迈出的第一步,在实验室中进行了一项实验测试计划,以检查通过减少建筑物因环境影响而造成的材料劣化而在耐久性方面应用聚苯乙烯形式的隔热材料的好处。

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