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Design and Climate-Responsiveness Performance Evaluation of an Integrated Envelope for Modular Prefabricated Buildings

机译:模块化预制房屋集成围护结构的设计和气候响应性能评估

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Modular prefabricated buildings effectively improve the efficiency and quality of building design and construction and represent an important trend in the development of building industrialization. However, there are still many deficiencies in the design and technology of existing systems, especially in terms of the integration of architectural performance defects that cannot respond to occupants’ comfort, flexibility, and energy-saving requirements throughout the building’s life cycle. This research takes modular prefabricated steel structural systems as its research object and sets the detailed design of an integrated modular envelope system as the core content. First, the researcher chose two types of thermal insulation materials, high insulation panels and aerogel blankets, in order to study the construction details of integrated building envelopes for modular prefabricated buildings. Focusing on the weakest heat point, the thermal bridge at the modular connection point, this work used construction design and research to build an experimental building and full-scale model; the goal was to explore and verify the feasibility of the climate-responsive construction technique called “reverse install.” Second, as a response to climate change, building facades were dynamically adjusted by employing different modular building envelope units such as sunshades, preheaters, ventilation, air filtration, pest control, and other functional requirements in order to improve the building’s climate adaptability. Finally, based on the above structural design and research, this study verified the actual measurements and simulation, as well as the sustainability performance of the structure during the operational phase, and provided feedback on the design. The results highlight the environmental performance of each construction detail and optimized possibilities for an integrated envelope design for modular prefabricated buildings during both the design and renovation phases.
机译:模块化的预制建筑有效地提高了建筑设计和施工的效率和质量,并代表了建筑工业化发展的重要趋势。但是,现有系统的设计和技术仍然存在许多缺陷,特别是在集成建筑性能缺陷方面,这些缺陷无法在建筑物的整个生命周期中满足居住者的舒适性,灵活性和节能要求。本研究以模块化预制钢结构系统为研究对象,以集成模块化围护结构的详细设计为核心内容。首先,研究人员选择了两种类型的隔热材料,即高隔热板和气凝胶毯,以研究模块化预制房屋的集成建筑围护结构的构造细节。着眼于最薄弱的加热点,即模块化连接点处的热桥,这项工作使用了建筑设计和研究,以构建实验建筑和全尺寸模型。目的是探索和验证称为“反向安装”的气候敏感型施工技术的可行性。其次,为了应对气候变化,通过采用不同的模块化建筑围护单元(例如遮阳篷,预热器,通风,空气过滤,害虫控制和其他功能要求)来动态调整建筑物的外墙,以提高建筑物的气候适应性。最后,在上述结构设计和研究的基础上,本研究验证了实际测量和仿真以及结构在运行阶段的可持续性性能,并提供了设计反馈。结果突出了每个施工细节的环保性能,并在设计和装修阶段为模块化预制房屋的集成围护结构设计提供了优化的可能性。

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