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Full-scale testing of low-rise, residential buildings with realistic wind loads

机译:实际风荷载下的低层住宅建筑的全面测试

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摘要

Wind engineering research is undergoing some dramatic changes with novel, large-scale and full-scale research facilities being built around the world to deal with the rising economic losses associated with natural disasters caused by severe wind storms. The paper discusses some of the emerging test methods and challenges being addressed by such facilities with a particular focus on full-scale testing at the "Three Little Pigs" Project at the University of Western Ontario and at the Insurance Institute for Business and Home Safety's new research facility in South Carolina. The challenges center around both the nature of wind loading and the response of low-rise, residential structures. Residential construction is typically built using prescriptive building codes, and is characterized by the use of materials with large variability and structures with significant static indeterminacy making load paths and overall performance difficult to ascertain. These new facilities are able to deal with these issues by bringing realistic wind loads to full-scale structures, enabling the development of improved building code requirements, product safety standards and loss models. Recent research on the performance of toe-nailed, roof-to-wall connections in wood-frame houses serves as a case study to illustrate these points.
机译:风力工程研究正在发生巨大变化,在世界范围内建立了新颖,大规模和全面的研究设施,以应对与严重暴风雨引起的自然灾害相关的不断上升的经济损失。本文讨论了此类设施所解决的一些新兴测试方法和挑战,尤其着重于西安大略大学的“三只小猪”项目以及商业和家庭安全保险研究所新设立的全面测试。南卡罗来纳州的研究机构。挑战既围绕风的性质,又涉及低层住宅结构的响应。住宅建筑通常使用规定性的建筑规范进行建造,其特点是使用的材料变异性大,并且结构具有很大的静态不确定性,因此难以确定载荷路径和总体性能。这些新设施能够通过将实际的风荷载带入完整结构来解决这些问题,从而能够开发出改进的建筑规范要求,产品安全标准和损失模型。最近对木结构房屋中用脚趾钉固定的屋顶到墙的连接性能的研究作为一个案例研究来说明这些观点。

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