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A basis for developing sustainable earthquake-resisting structures

机译:开发可持续地震抵抗结构的基础

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摘要

Sustainable seismic design (SSD) is a relatively new field of study that promises improved human welfare and innovative developments in structural engineering worldwide. In the present context, SSD refers to structural operability with a view to post-earthquake realignment and repair (PERR). The difference between conventional seismic design and SSD is the expected behaviour during and after earthquakes. In conventional earthquake-resistant systems, attention is focused on the response of the structure to code-level seismic demand whereas, in SSD, the post-earthquake attributes of the system are as important as those during the event. SSD is neither part of contemporary curricula nor codes of practice. This article promotes the notion that a structure can be seismically sustainable if it is able to prevent actual collapse, overcome residual effects and lend itself well to PERR. In order to gain insight into the inner workings of SSD, resort has been made to adaptive design, bioinspiration and the study of structural differences between conventional and seismically sustainable structures. It is shown that conventional seismic design can be upgraded to SSD without resorting to untenable costs and technologies.
机译:可持续地震设计(SSD)是一个相对较新的研究领域,承诺在全球结构工程中提高人力福利和创新发展。在本文中,SSD指的是结构可操作性,以便发生地震后重新调整和修复(PERR)。传统地震设计和SSD之间的差异是地震期间和之后的预期行为。在传统的抗震系统中,注意力集中在结构上对代码级地震需求的响应,而在SSD中,系统的后地震属性与事件期间的地震属性一样重要。 SSD既不是当代课程的一部分,也不是实践守则。本文促进了如果能够防止实际崩溃,克服剩余效果并对Perr提供良好的结构,可以在地震上可持续地遭受地造成地震可持续性的概念。为了深入了解SSD的内部运作,已经对常规和地震可持续结构之间的结构差异进行了自适应设计,生物灌注度和研究。结果表明,可以升级传统的地震设计,而无需诉诸以无法维持的成本和技术。

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