透過您的圖書館登入
IP:18.217.203.172
  • 學位論文

以反應譜法分析隔震建物內之次結構的動力反應

Dynamic Responses of Secondary Systems in Base-Isolated Buildings by Response Spectrum Analysis

指導教授 : 田堯彰

摘要


台灣位處於環太平洋地震帶上,經常發生地震,結構物內重要設備物的耐震設計是相當必要的,如半導體產業之晶圓廠、核能電廠之核子反應爐等工業廠房,一旦地震損壞了次結構繼續運作之能力,將對於社會產業造成極大的損害與衝擊。 過往對於次結構動力分析所採用的方法,不是需要耗費大量的電腦運算時間,就是忽略了主結構與次結構合成系統的固有特性。因此本文首先針對主、次結構合成系統利用狀態空間原理推導出可運用於複數形式的振態疊加法則,並將該法延伸至反應譜方法,提供更為簡便且省時的方法供工程師使用。分析主、次結構合成系統時,需考慮兩者間互制、協調與非比例阻尼等相互影響因素,而當主結構或次結構含有偏心時,又會受到扭轉效應之影響,故內文推導出兩種快速解得主結構與次結構合成系統之振態近似解分析模式,分別為簡化修正法與廣義修正法兩式與直接解振態相比有較省時之優點。 本文最後探討於建築物基礎下部設置隔震層之合成系統分析方法。對一含基底隔震層之主、次結構合成系統,其模態解可依循僅考慮二個子系統時的觀念,分為兩階段進行模態修正,第一階段為含隔震層之主結構部份的振態特性,第二階段再將次結構與含有隔震層之主結構部份進行全面性的系統模態修正,如此將可不必再使用數值分析,即能快速解得含隔震層之次結構的近似振態解。

並列摘要


This paper utilizes complex modal analysis technique to deal with a non-proportional damping composite system, which consists of a primary and a secondary systems. The outcome is presented by a response spectrum which is more convenient in the application of design. The interaction, tuning and non-classical damping between sub-systems must be taken into account in the structural analysis of a composite system. In addition, when the structures contain eccentricity, the torsional effect has to be evaluated in the analytical model. The present study obtains the modal characteristics of the composite system by simple modified method and general modified method. These methods offer a less numerical labor than the ordinary one. In regard to a base-isolated composite system, the study focuses on each individual sub-system and modifies the modal shapes by two phases. First, a system involving only the primary structure and its base isolation is analyzed. Then, it goes to the modification of the whole system which includes the secondary system. By using so, the analytical complexity is reduced substantially.

參考文獻


【14】陳柏愷 “考慮基底隔震的設備物動力反應分析” 國立台灣大學土木工程學研究所碩士論文, 田堯彰 教授指導,民國九十四年六月.
【2】T.Igusa & A.Der Kiureghian,“ Generation of Floor Response Spectra Including Oscillator-Structure Interaction”, Earthquake Engineering and Structural Dunamics, Vol. 13, 1985, pp. 661-676.
【4】J.M. Kelly & J.L. Sackman,“ Response Spectra Design Methods For Tuned Equipment-Structure System”, Tournal of Sound and Viration, 59(2),1978, pp. 171-179.
【5】J.L Sackman & A.Der Kiureghian, Bahram Nour-Omid,” Dynamic Analysis of Light Equipment In Structures : Modal Properties of The Combined System”, Journal of Engineering Mechanics, Asce, Vol.109, No 1, 1983, pp.73-89.
【6】T.J. Ingham & J.L. Sackman,” Some Methods for The Analysis of Equipment-Structure Interaction”, Earthquake Engineering and Structural Dynamics, Vol.12, 1984, pp.583-601.

被引用紀錄


李孟賢(2010)。以簡化反應譜法分析土壤互制下設備物之動力反應〔碩士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2010.02567
陳建翔(2009)。以反應譜法分析含土壤互制結構內設備物之動力反應〔碩士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2009.00114
蘇昱臻(2008)。以簡化反應譜法分析設備物之動力反應〔碩士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2008.01034
謝煥昇(2007)。以反應譜法分析含黏彈性阻尼器結構內之設備物的動力反應〔碩士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2007.02196

延伸閱讀