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Design of Structures with Dampers per ASCE 7-16 and Performance for Large Earthquakes

机译:每杆仪器阻尼器设计7-16和大地震性能

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An impediment to the use of seismic protection devices has been the difficulty for practicing engineers to design buildings with isolation system or damping devices. ASCE/SEI task committees charged with development of new generation of codes for seismic design and retrofit of buildings have updated the relevant code sections with one goal being to encourage the use of such devices. An effort was undertaken to develop a step-by-step design guideline for such design. Following the preparation of guideline, incremental analysis of four steel SMF building models was undertaken. The benchmark model was designed using the strength and drift requirements of ASCE 7-16. The other models were based on provisions of Chapter 18 of ASCE 7-16. For one model the lower base shear value was used, and for a third model, the drift ratios were further limited to obtain enhanced performance. Lower- and upper-bound analyses as required by ASCE 7-16 were conducted to size the dampers. The models were then subjected to incremental nonlinear analysis and key response parameters were evaluated. In all cases, the use of dampers resulted in reduction in the hinging of SMF members. It was notes that the best performing model was the model designed for 100% of nominal base shear and above minimum effective damping had superior performance, remaining elastic at design earthquake, and having almost no residual displacement at very large earthquakes.
机译:使用地震保护装置的障碍一直是练习工程师设计具有隔离系统或阻尼设备的建筑物的难以使用。 asce / sei任务委员会向建筑物的地震设计和改造的新一代代码负责,已经更新了相关的代码部分,以鼓励使用此类设备。承担了努力,为这种设计制定逐步的设计指南。在制定指南之后,进行了四钢SMF建筑模型的增量分析。基准模型采用ASCE 7-16的强度和漂移要求设计。其他型号是基于ASCE 7-16第18章的规定。对于一种模型,使用较低的基础剪切值,并且对于第三模型,漂移比进一步限制以获得增强的性能。根据ASCE 7-16所需的尺寸和上限分析进行了尺寸的阻尼器。然后对模型进行增量非线性分析,并评估关键响应参数。在所有情况下,使用阻尼器导致SMF成员的铰接减少。值得注意的是,最好的表演模型是设计了100%的标称基础剪切的型号,高于最低有效阻尼的性能优异,剩余的抗弹性在设计地震中,并且在非常大的地震中几乎没有残留的位移。

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