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LCVA를 이용한 초고층 건물의 풍진동 제어성능을 위한 실험적 평가
The Experimental Evaluation of LCVA for Mitigation of Wind-Induced Motion of High Rise Building

  • 간행물
    대한건축학회지회연합회 학술발표대회논문집 바로가기
  • 권호(발행년)
    2008년도 추계학술발표대회 (2008.12) 바로가기
  • 페이지
    pp.329-332
  • 저자
    박제우, 정효선, 김홍진
  • 언어
    한국어(KOR)
  • URL
    https://www.earticle.net/Article/A103318

원문정보

초록

영어
Recently, there have been many researches and developments on secondary mass dampers such as TMD (Tuned Mass Damper) and TLCD (Tuned Liquid Column Damper). LCVA (Liquid Column Vibration Absorber) is a special type of TLCD relying on the motion of a column of liquid in a U-shaped container to counteract the forces acting on the structure. Since it has different dimensions for vertical and horizontal portions of container, it has benefits of easy tuning and wide natural frequency range. In this paper, the control performance of LCVA against wind loading is evaluated using shaking table test. Total of three LCVAs with different mass are used in the test in order to assess the control performance In the test, the harmonic loads with varying frequencies were used. The peak and RMS accelerations subjected to resonant frequency input are compared for with and without LCVA. And the peak accelerations subjected to varying frequency inputs are also compared. As a result, it is found that the maximum acceleration and RMS acceleration of the structure decreases up to 49.1% and 54.1% respectively when LCVA is
installed. Especially, as the mass of LCVA increases, i.e., the mass ratio of water mass to structure mass increases, the control performance of LCVA increases.

목차

Abstract
 1. 서론
  1.1 연구의 목적
 2. 이론적 배경
 3. 실험 개요
  3.1 제어 대상 구조물의 고유 진동수 측정
  3.2 LCVA 동조 실험
  3.3 LCVA 제어성능 평가실험
 4. 결 론
 참고문헌

저자

  • 박제우 [ Park, Je-Woo | 경북대학교 대학원 석사과정 ]
  • 정효선 [ Jeong, Hyo-Seon | 경북대학교 건축토목공학부 학사과정 ]
  • 김홍진 [ Kim, Hong-Jin | 경북대학교 건축토목공학부 전임강사 ]

참고문헌

자료제공 : 네이버학술정보

    간행물 정보

    • 간행물
      대한건축학회지회연합회 학술발표대회논문집
    • 간기
      부정기
    • 수록기간
      2005~2013
    • 십진분류
      KDC 540 DDC 690