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STRUCTURAL OPTIMISATION OF TIMBER OFFSITE MODERN METHODS OF CONSTRUCTION

机译:木材异型现代建筑结构的结构优化

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Efficient and sustainable building systems are required in order to achieve the British government's target of building three million new homes by 2020. Given the current lack of activity in the housing construction market to achieve this goal, increased levels of offsite modern methods of construction (MMC) need to be adopted which conform to future regulatory and code requirements, are environmentally sound and structurally robust. The Centre for Offsite Construction and Innovative Structures (COCIS) at Edinburgh Napier University, in collaboration with its industrial and professional partners, has carried out a research project which revolved around the optimisation of a low-carbon affordable home which includes a thermal envelope with reduced cold bridging and a three-dimensional module containing two bathrooms and the main building services. The project is known as Future Affordable and this paper focuses on the service module which is entirely manufactured in the factory, then transported to site and connected to the other building components. The wall and floor panels of this volumetric unit consist of solid timber planks joined together with steel nails. This research originates and develops from other projects which are currently being conducted at the Centre, to investigate timber construction from different, but complementary, perspectives including United Kingdom (UK) Engineering and Physical Science Research Council (EPSRC) funded work into the Structural Optimisation of Timber Offsite MMC.
机译:为了实现英国政府到2020年建造300万套新房屋的目标,需要高效且可持续的建筑系统。鉴于目前房屋建筑市场缺乏实现这一目标的活动,非现场现代建筑方法(MMC)的水平不断提高)必须采用符合未来法规和规范要求,对环境无害且结构坚固的材料。爱丁堡纳皮尔大学的异地建设与创新结构中心(COCIS)与工业和专业合作伙伴合作,开展了一项研究项目,围绕优化低碳可负担房屋进行研究,其中包括减少了隔热层。冷桥和一个三维模块,其中包含两个浴室和主要建筑服务。该项目被称为“未来负担得起”,本文重点介绍服务模块,该服务模块完全在工厂制造,然后运输到现场并连接到其他建筑组件。该体积单位的墙板和地板由用钢钉连接在一起的实木木板组成。这项研究源于当前正在中心进行的其他项目,这些项目从不同但互补的角度研究木材建设,包括英国(UK)工程和物理科学研究委员会(EPSRC)资助的木材结构优化研究。木材异地MMC。

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