题名

浮置剛體受脈衝型單週期弦波激振之傾覆限度研究

并列篇名

A Study on Overturning Limit of One-Sine Pulse Type Excitation to Free-standing Rigid Bodies

DOI

10.3966/101632122020120114002

作者

姚昭智(George C. Yao);凃昭伃(Chao-Yu Tu);王于愷(Yu-Kai Wang)

关键词

非結構物 ; 近斷層效應 ; 浮置剛體 ; 傾覆限度 ; Non-Structural Component ; Near-Fault Ground Motion ; Overturning ; Earthquake Response ; Critical Response

期刊名称

建築學報

卷期/出版年月

114期(2020 / 12 / 30)

页次

21 - 40

内容语文

繁體中文

中文摘要

2018年0206花蓮地震造成大量結構物受損,也造成非結構物遭受損害,以花蓮國軍醫院進豐門診處為例,因近斷層效應下較大瞬時位移、地表速度,使院內多項非結構物傾倒,如藥品冰箱、水塔和病例櫃等;結構物雖無明顯損壞,醫療功能卻暫時停擺,對於震災的搶救造成一定的影響。本研究針對浮置的非結構物在近斷層震波下轉動行為,藉由實驗驗證已知理論公式,並經過簡化後提出適用於對稱、非對稱剛體簡化傾覆模型,以判斷非結構物是否需加固以防傾倒。利用簡化公式,可由已知剛體幾何條件,計算多種頻率單週期弦波下剛體傾覆限度。最後,將簡化模型結果與其他傾覆理論以及多組對稱、非對稱試體傾覆試驗結果作比對,確認其確實具有一定可靠度,可提供後續研究者作參考。

英文摘要

Based on the experiences learned from earthquakes, it is recognized that the losses to the non-structural component can be significant. This study aims to identify the overturning limit of free-standing rigid bodies. A numerical solution on the input level of one-sine pulse as a substitute of a near-fault ground motion is derived for the overturning of rigid bodies. Based on the rigid blocks rocking and overturning experiments, rocking moment of gravity can be reduced to time-invariant parameter. This enables us to avoid the computation of complicated differential equation. By the conservation law of angular momentum and the conservation law of mechanical energy, the overturning limit of certain geometric shape under vary frequency ground motion can be defined, and can be a reference to the further research.

主题分类 工程學 > 土木與建築工程
参考文献
  1. Housner, G. W.(1963).The behavior of inverted pendulum structures during earthquakes.Bull. Seismological Soc. of Am.,53(2),404-417.
  2. Ishiyama, Y.(1982).Motions of rigid bodies and criteria for overturning by earthquake excitations.Earthq. Eng. Struct. Dyn.,10,635-650.
  3. Lopez, G. D.,Soong, T. T.(2003).Sliding fragility of block type nonstructural components. Part 1: Unrestrained Components.Earthquake Engineering and Structural Dynamics,32(1),111-129.
  4. Lopez, G. D.,Soong, T. T.(2003).Sliding fragility of block type non-structural components. Part 2: Restrained components.Earthquake Engineering and Structural Dynamics,32(1),131-149.
  5. Nabeshima, K.,Taniguchi, R.,Kojima, K.,Takewaki, I.(2016).Closed-form overturning limit of rigid block under critical near-fault ground motions.Front. Built Environ,2,9.
  6. Zhang, J.,Makris, N.(2001).Rocking response of free-standing blocks under cycloidal pulses.Journal of Engineering Mechanics,127,473-483.
  7. 王于愷, Y. K.(2019)。台南市=Tainan City,國立成功大學建築研究所=Department of Architecture in National Cheng Kung University。
  8. 王仁佐, R. Z.,王修賢, H. H.,江宏偉, H. W.,江奇融, C. L.,李柏翰, B. H.,李翼安, Y. A.,沈文成, W. C.,林凡茹, F. R.,林旺春, W. C.,林哲民, C. M.,林沛暘, P. Y.,林瑞良, J. L.,洪曉慧, H. H.,柴駿甫, J. F.,郭俊翔, C. H.,翁樸文, P. W.,張毓文, Y. W.,許尚逸, S. Y.,陳俊仲, C. C.,游忠翰, C. H.,黃郁惟, Y. W.,黃雋彥, J. Y.,曾柏翰, B. H.,楊卓諺, C. Y.,楊炫智, H. C.,趙書賢, S. H.,劉佳泓, C. H.,盧志杰, C. C.,賴姿妤, Z. Y.,蕭輔沛, F. P.,蘇進國, C. K.,王于愷, Y. K.,林子傑, T. C.,凃昭伃, C. Y.,姚昭智, G. C.(2018)。國家地震工程研究中心報告國家地震工程研究中心報告,臺北市=Taipei City:國家地震工程研究=National Center for Research on Earthquake Engineering。