标题: 医疗院所耐震补强与性能提升之研究---子计画:医疗院所结构耐震评估分析与补强设计工法之研究(II)
A Study on Seismic Capacity Assessment and Retrofit of Hospitals(II)
作者: 王彦博
WANG YEN-PO
国立交通大学土木工程学系(所)
公开日期: 2008
摘要: 在内政部营建署及教育部的政策推动下,目前全台湾公共建筑及各级学校校
舍的结构耐震能力评估工作已全面开展。目前工程界进行建筑物耐震详评工作
时,多将结构视为韧性抗弯构架,且未能将窗台所导致之短柱效应考虑在评估分
析当中。如此不仅无法反映真实的结构行为,且有可能高估结构的耐震能力。耐
震设计强调“强柱弱梁”的观念立意甚佳,惟因楼板的加劲作用使得梁的劲度大
幅提升,以致即使在强震下,梁因挠曲变形有限,其断面主筋无法降伏而未能于
梁端形成塑铰,对RC 结构而言“强柱弱梁”的设计理想未能实现,导致整体结
构之韧性不如预期。此外,许多中小学校舍的破坏模式几乎都是沿走廊长向发生
柱剪力破坏,此乃窗台下的填充墙对柱形成局部加劲作用而导致短柱效应所致。
结构分析若未能忠实呈现这些力学行为,后续之耐震详评结果便不可信。有鉴于
此,本计画乃提出一套RC 结构耐震详细评估方法,根据实际之混凝土强度、断
面尺寸、配筋及填充墙计算结构之极限耐震容量,利用ETABS 推覆分析结果评估
结构之实际耐震能力。结构分析架构系采用剪力屋架以充分反映“强梁弱柱”的
实际结构行为,并以等值斜撑模拟填充砖墙,将其对结构行为的影响反映在分析
模型中。本研究将以典型的医院建筑结构为对象,进行结构耐震能力分析及补强
设计工法之研究。针对耐震能力不足的结构,应考虑功能上有效且对医院正常运
作影响最少的补强工法,以兼顾医院之营运及补强工程之顺利进行。因此,本计
画将发展以挫屈连杆及高分子橡胶为核心之两种斜撑型抗震装置,经由元件测试
掌握其力学行为以及最佳之设计参数,并利用振动台试验进行结构耐震性能试
验,确认其应用于提升结构抗震能力之可行性。
Under the policy moved by Construction and Planning Agency, Ministry
of the Interior and the Ministry of Education, the task of seismic capacity
assessment of public and school buildings has been conducted nationwide in full
scale. Based on experiences gained in reviewing the seismic capacity assessment
projects, the applicant finds that the engineers are treating all the structures as
moment-resisting frames, and not taking into account, in their analysis, the effect
of short-columns caused by window stages. As a result, the analyses are not
reflecting the actual behavior of the structures, and may in turn overestimate the
seismic capacity. The design target of “strong-column-weak-beam” emphasized
in seismic structural design is conceptually correct but impractical for RC
structures, since the beams are too stiff to form plastic hinges as their stiffness are
substantially enhanced by the concrete floor so that the reinforcing steel bars are
not yielding at negligible flexural deformation, even under strong earthquakes.
The ductility of the overall structures is much less than expected as a
consequence. Furthermore, most of the school buildings were found to be
damaged in shear failure of the columns along the corridors. This is due to the
“short-column” effect caused by the partially infill brick walls of the window
stages. The seismic assessment is not reliable if the actual behavior of the
structures is not reflected in the analysis. This project is to propose a seismic
assessment procedure for RC structures based on pushover analysis using ETABS
by considering the design details of the structural members and infill walls.
Typical hospital structures will be considered as the objective in this study. The
analytical models are to be considered as shear buildings to reflect the actual
structural behavior of “weak-column-strong-beam”, and the infill walls are to be
simulated with equivalent bracings. For structures identified as seismically
vulnerable, this project is to propose effective retrofit schemes with least impact
on the daily operations of hospitals. The task is to develop two types of
energy-dissipative braces respectively with buckled strut and polymer rubber
inside, respectively. The mechanical behavior and optimal design parameters of
the proposed devices will be realized via component tests, while the feasibility of
using the proposed devices for seismic retrofit of structures will be verified via
seismic performance tests by shaking table.
官方说明文件#: NSC97-2625-M009-005
URI: http://hdl.handle.net/11536/102041
https://www.grb.gov.tw/search/planDetail?id=1659489&docId=284511
显示于类别:Research Plans