抗震救灾结构的运动检测和基础隔离系统:仿生学的应用

M. F. Khamidi, S. A. Farhan, K. Chai, A. Idrus, M. Nuruddin
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引用次数: 0

摘要

提出了一种抗震救灾结构运动检测与基础隔震系统的概念设计。设计过程运用仿生学原理,灵感来自鸟类和鱼类的运动检测能力和啄木鸟头骨的隔震能力。对混凝土砌块进行了振动台试验,以评价基础隔震系统的效率。结果表明,基础隔震系统使混凝土砌块的水平加速度降低约82.00±2.0%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Motion detection and base isolation system for earthquake-resistant relief structures: Application of biomimetics
The conceptual design of a motion detection and base isolation system for earthquake-resistant relief structures is presented. The design process, which applies principles of biomimetics, is inspired by the motion detection ability of birds and fishes and shock isolation ability of woodpeckers' skulls. Concrete blocks with and without base isolators were subjected to shake table tests to evaluate the efficiency of the base isolation system. Results revealed that the base isolation system reduces horizontal acceleration of concrete blocks by approximately 82.00 ± 2.0%.
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