• 제목/요약/키워드: connecting damper

검색결과 25건 처리시간 0.018초

지반의 동적물성치 측정을 위한 인홀탄성파시험의 최근 발전 (Recent Development of In-hole Seismic Method for Measuring Dynamic Stiffness of Subsurface Materials)

  • 목영진;정진훈;김영수
    • 한국지반공학회논문집
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    • 제21권1호
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    • pp.105-114
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    • 2005
  • 이 연구에서는 지반의 동적물성치 계측 기술로 시도된 인홀 시험법을, 경제성과 실용성 측면에서 개선하였다. 이전 연구에서 개발된 인홀 장비의 수동식 트리거(trigger) 시스템을 전기식 시스템으로 개량하였고, 발진기와 수신기 사이에 최적의 연결재를 개발하였다. 이로써, 암반뿐만 아니라 토사층에서도 이 기법을 사용하게 되었다. 이 장비를 여러 현장에서 크로스홀 시험과 인홀 시험을 통하여 그 성능을 검증하였다.

차량 진동특성 해석을 위한 VTL 차량 모델 개발에 관한 연구 (A Study on the Development of the VTL Vehicle Dynamics Model to Analyze Vibration Characteristics)

  • 권성진;배철용;김찬중;이봉현;구병국;노국희
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2007년도 추계학술대회논문집
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    • pp.409-414
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    • 2007
  • Nowadays, with the advancement of computational mechanics, and vehicle dynamics simulation linked up with virtual testing laboratory(VTL) and virtual proving ground(VPG) technologies has become a useful method for analyzing numerous driving performances and diverse noise/vibration characteristics. In this paper, the analytical vehicle model based on multi-body dynamics theory was developed to investigate the vibration characteristics according to various road conditions. For the purpose, the whole vehicle parameters, each vehicle's part parameter, and part connecting elements such as spring, damper, and bush were measured by an experiment. Also, the vehicle dynamics model, which includes the front suspension, rear suspension, steering, front wheel, rear wheel, and body subsystems has been constructed for computer simulation. With the developed vehicle dynamics model, three forces and three moments measured at each wheel center were applied to evaluate and analyze dynamics and vibration characteristics for miscellaneous road conditions.

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Compound damping cable system for vibration control of high-rise structures

  • Yu, Jianda;Feng, Zhouquan;Zhang, Xiangqi;Sun, Hongxin;Peng, Jian
    • Smart Structures and Systems
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    • 제29권4호
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    • pp.641-652
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    • 2022
  • High-rise structures prone to large vibrations under the action of strong winds, resulting in fatigue damage of the structural components and the foundation. A novel compound damping cable system (CDCS) is proposed to suppress the excessive vibrations. CDCS uses tailored double cable system with increased tensile stiffness as the connecting device, and makes use of the relative motion between the high-rise structure and the ground to drive the damper to move back-and-forth, dissipating the vibration mechanical energy of the high-rise structure so as to decaying the excessive vibration. Firstly, a third-order differential equation for the free vibration of high-rise structure with CDCS is established, and its closed form solution is obtained by the root formulas of cubic equation (Shengjin's formulas). Secondly, the analytical solution is validated by a laboratory model experiment. Thirdly, parametric analysis is conducted to investigate how the parameters affect the vibration control performance. Finally, the dynamic responses of the high-rise structure with CDCS under harmonic and stochastic excitations are calculated and its vibration mitigation performance is further evaluated. The results show that the CDCS can provide a large equivalent additional damping ratio for the vibrating structures, thus suppressing the excessive vibration effectively. It is anticipated that the CDCS can be used as a good alternative energy dissipation system for vibration control of high-rise structures.

Enhancing the Seismic Performance of Multi-storey Buildings with a Modular Tied Braced Frame System with Added Energy Dissipating Devices

  • Tremblay, R.;Chen, L.;Tirca, L.
    • 국제초고층학회논문집
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    • 제3권1호
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    • pp.21-33
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    • 2014
  • The tied braced frame (TBF) system was developed to achieve uniform seismic inelastic demand along the height of multi-storey eccentrically braced steel frames. A modular tied braced frame (M-TBF) configuration has been recently proposed to reach the same objective while reducing the large axial force demand imposed on the vertical tie members connecting the link beams together in TBFs. M-TBFs may however experience variations in storey drifts at levels where the ties have been removed to form the modules. In this paper, the possibility of reducing the discontinuity in displacement response of a 16-storey M-TBF structure by introducing energy dissipating (ED) devices between the modules is examined. Two M-TBF configurations are investigated: an M-TBF with two 8-storey modules and an M-TBF with four 4-storey modules. Three types of ED devices are studied: friction dampers (FD), buckling restrained bracing (BRB) members and self-centering energy dissipative (SCED) members. The ED devices were sized such that no additional force demand was imposed on the discontinuous tie members. Nonlinear response history analysis showed that all three ED systems can be used to reduce discontinuities in storey drifts of M-TBFs. The BRB members experienced the smallest peak deformations whereas minimum residual deformations were obtained with the SCED devices.

다물체 요소이론을 이용한 예인줄 동역학의 모델링 및 시뮬레이션 (Dynamic Modeling and Simulation of a Towing Rope using Multiple Finite Element Method)

  • 윤현규;이홍석;박종규;김연규
    • 한국항해항만학회지
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    • 제36권5호
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    • pp.339-347
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    • 2012
  • 예인줄을 여러 개의 유한요소로 분할 한 뒤 각 요소들에 Newton의 운동 제 2법칙을 적용하고 각각에 작용하는 외력은 성분별로 장력, 항력, Coriolis 힘, 중력, 부력, 입수 충격력 등으로 구분하여 예선과 부선을 연결하는 예인줄의 동역학 모델을 정립하였다. 일반적으로 예인줄 요소의 병진 운동만을 고려하는 이전의 연구들과는 달리 본 논문에서는 예인줄 요소의 운동을 횡동요를 제외한 5자유도로 확장하고 외력 고려가 용이한 물체고정좌표계에서 기술하였다. 예인줄 요소들 간에는 연결점에서 인장만 되는 스프링과 감쇠기로 연결하고, 스프링의 강성계수는 실제 적용되는 예인줄의 강성계수와 등가가 되도록 설정하였다. 정립된 예인줄 모델의 검증을 위하여 예인줄의 공기중 및 수면 바로 위에서의 자유낙하, 예인선의 가속운동, 예인선의 조화운동 시나리오에 대하여 시뮬레이션을 수행하였다. 시뮬레이션 결과, 예인선, 부선, 예인줄 요소들의 운동 시계열 값들은 실제 예상치와 유사한 경향을 보이는 것을 확인하였다.