Response of instrumented buildings under the 2016 Kaikoura earthquake.

R. Chandramohan, Q. Ma, L. Wotherspoon, B. Bradley, M. Nayyerloo, S. Uma, M. Stephens
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引用次数: 18

Abstract

Six buildings in the Wellington region and the upper South Island, instrumented as part of the GeoNet Building Instrumentation Programme, recorded strong motion data during the 2016 Kaikoura earthquake. The response of two of these buildings: the Bank of New Zealand (BNZ) Harbour Quays, and Ministry of Business, Innovation, and Employment (MBIE) buildings, are examined in detail. Their acceleration and displacement response was reconstructed from the recorded data, and their vibrational characteristics were examined by computing their frequency response functions. The location of the BNZ building in the CentrePort region on the Wellington waterfront, which experienced significant ground motion amplification in the 1–2 s period range due to site effects, resulted in the imposition of especially large demands on the building. The computed response of the two buildings are compared to the intensity of ground motions they experienced and the structural and nonstructural damage they suffered, in an effort to motivate the use of structural response data in the validation of performance objectives of building codes, structural modelling techniques, and fragility functions. Finally, the nature of challenges typically encountered in the interpretation of structural response data are highlighted.
2016年凯库拉地震下仪器建筑的响应。
作为GeoNet建筑仪器计划的一部分,惠灵顿地区和上南岛的六栋建筑记录了2016年凯库拉地震期间的强震数据。其中两座建筑:新西兰银行(BNZ)港口码头和商业、创新和就业部(MBIE)大楼,详细研究了它们的反应。根据实测数据重构了它们的加速度和位移响应,并通过计算它们的频响函数来检验它们的振动特性。新西兰国家银行大楼位于惠灵顿海滨的CentrePort地区,由于场地影响,在1-2秒的时间范围内经历了显著的地面运动放大,导致对建筑的要求特别高。将两座建筑的计算响应与它们经历的地面运动强度以及它们遭受的结构和非结构破坏进行比较,以激励在建筑规范、结构建模技术和脆弱性函数的性能目标验证中使用结构响应数据。最后,强调了在解释结构响应数据时通常遇到的挑战的性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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