Abstract
본 연구에서는 중요 통신장비의 지진발생시 파손 및 성능저하를 방지하기 위하여 구조물로 전달되는 가속도를 조절할 수 있는 CFPBS(Cone-type Friction Pendulum Bearing System:원추형 마찰진자베어링)를 개발하고 내진성능을 검증하였다. CFPBS는 기존의 FPS(Friction Pendulum System)와 다르게 원추형으로 제작되었으며 보다 큰 마찰력을 얻기 위하여 마찰면에 패턴을 음각하였다. CFPBS의 고유성능을 파악하기 위하여 4개의 CFPBS가 하나의 개체를 이루도록 제작된 지진격리장치를 이용하여 자유진동시험을 수행하였다. 운동방정식으로부터 유도된 CFPBS의 이론식과 Newmark-<TEX>${\beta}$</TEX> Method를 이용하여 내진성능을 검증하기위한 MATLAB7.0 기반의 동적 수치해석프로그램을 제작하였으며 CFPBS의 제작 시 원하는 성능을 발휘할 수 있도록 간략화된 CFPBS의 설계식을 제안하였다. 수치해석을 통한 CFPBS의 내진성능평가를 위하여 건축구조설계기준(KBC-2005)의 최대지진규모에 해당하는 인공지진파를 생성하고 검증하였다. El Centro NS(1940)와 Kobe NS(1995), 인공지진파 등을 사용하여 CFPBS의 상부질량과 경사각을 매개변수로 하는 수치해석을 수행하였다. 수치해석의 결과를 토대로 CFPBS의 내진성능을 평가하였으며 수치해석의 결과와 설계식을 이용하여 동일한 조건에서 얻어진 결과를 비교분석하였다. In this study, a CFPBS (Cone-type Friction Pendulum Bearing System) was developed which controls the acceleration delivered to the structure to prevent damage and degradation of the critical communication equipment in case of an earthquake. The isolation performance of the CFPBS was evaluated by numerical analysis. The CFPBS was manufactured in the shape of a cone differenced from the existing FPS (Friction Pendulum System), and a pattern was engraved on the friction surface. The natural frequencies of the CFPBS were evaluated from a free-vibration test with the seismic isolator system consisting of four CFPBSs. In order to verify its earthquake-resistant performance, a numerical analysis program was created from the equation of the CFPBS induced from the equations of motion. A simplified theoretical equation of the CFPBS was proposed to manufacture the equipment which could demonstrate the necessary performance. Artificial seismic waves satisfying the maximum earthquake scale of the Korean Building Code-Structural (KBC-2005) were created and verified to review the earthquake-resistant performance of the CFPBS by numerical analysis. The superstructural mass of the CFPBS and skew angle of the friction surface were considered for numerical analysis with El Centro NS (1940), Kobe NS (1995) and artificial seismic waves. The CFPBS isolation performance evaluation was based on the results of numerical analysis and the executed comparative analysis between the results from numerical analysis and the simplified theoretical equation under the same conditions.
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More From: Journal of the Earthquake Engineering Society of Korea
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