• 제목/요약/키워드: modal strain-energy

검색결과 103건 처리시간 0.029초

점탄성 감쇠기를 설치한 강구조건물의 지진하중에 대한 거동 연구 (Seismic Behavior of Viscoelastically Damped Steel-Frame Structures)

  • 오순택
    • 전산구조공학
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    • 제6권1호
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    • pp.127-135
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    • 1993
  • 본 논문은 에너지 분산장치의 일종인 점탄성 감쇠기를 설치한 건물의 거동에 관한 연구이다. 평상온도에서 뿐만아니라 높은 주변온도 하에서도 점탄성 감쇠기를 설치한 건물은 이를 설치하지 않은 건물에 비해서 구조응답이 현저히 감소함을 나타낸다. 감쇠기에 대한 실험에서 얻은 결과를 회귀분석하여 감쇠기의 동적특성을 산정할 수 있는 실험식을 유도한다. 감쇠기를 설치한 건물의 구조감쇠는 모드 변형에너지법과 유도된 실험식을 이용하여 성공적으로 예측할 수 있다. 또한, 점탄성 감쇠된 건물의 지진하중에 의한 동적 구조응답을 예측하기 위하여 수치모형해석을 수행한다. 수치모형해석의 결과는 실험결과와 잘 일치하는 것으로 나타나 일반적인 모드해석방법에 의해 점탄성 감쇠기를 설치한 건물의 동적거동을 정확하게 예측할 수 있음을 보여준다. 이러한 결과를 토대로, 점탄성 감쇠기를 설치한 건물에 대한 설계방법을 제시한다. 이 설계방법은 일반적인 건물의 설계에 감쇠비라는 설계요소를 추가함으로서 가능해진다.

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점탄성 감쇠기를 설치한 2/5 축척 강구조물의 지진하중에 의한 거동연구 (Seismic Behavior of A 2/5-Scale Steel Structure with Added Viscoelastic Dampers)

  • Oh, Soon-Taek
    • 한국안전학회지
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    • 제8권1호
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    • pp.80-87
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    • 1993
  • 본 논문은 에너지 분산 장치의 일종인 점탄성 감쇠기를 설치한 건물의 거동에 관한 실험 및 해석적 연구를 다루고자 한다. 지진 모형 실험 장치를 이용하여 감쇠기를 설치한 건물의 구조응답을 구하고. 이를 감쇠기를 설치하지 않은 건물에 대하여 행해진 비탄성 해석 결과와 비교한다. 결론적으로 말하면. 점탄성 감쇠기는 강지진 하중에 의하여 건물에 발생한 과도한 진동을 감소시키는데 효과적이다 일반적으로 점탄성 감쇠기를 건물에 설치함으로써 감쇠비와 함께 강성도가 증가하여 지진 응답을 감소시키는데 기여하나, 대부분은 감쇠기의 역할에 의해 증가된 감쇠비의 영향인 것으로 밝혀졌다. 모드 변형에너지법을 이용하여 감쇠기에 의해 증가된 등가구조 감쇠를 성공적으로 예측할 수 있으며 따라서 점탄성 감쇠기를 설치한 건물의 지진 응답이 일반적인 모드 해석 기법을 이용한 수치모형해석에 의해 정확히 예측된다.

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이동질량과 크랙을 가진 단순지지 보의 동특성에 관한 연구 (A Study on the Dynamic Behavior of a Simply Supported Beam with Moving Masses and Cracks)

  • 윤한익;손인수;조정래
    • 한국해양공학회지
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    • 제17권6호
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    • pp.47-52
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    • 2003
  • To determine the effect of transverse open crack on the dynamic behavior of simply-supported Euler-Bernoulli beam with the moving masses, an iterative modal analysis approach is developed. The influence of depth and position of the crack in the beam, on the dynamic behavior of the simply supported beam system, have been studied by numerical method. The cracked section is represented by a local flexibility matrix, connecting two undamaged beam segments that is, the crack is modeled as a rotational spring. This flexibility matrix defines the relationship between the displacements and forces across the crack section, and is derived by applying a fundamental fracture mechanics theory. As the depth of the crack is increased, the mid-span deflection of the simply-supported beam, with the moving mass, is increased. The crack is positioned in the middle point of the pipe, and the mid-span defection of the simply-supported pipe represents maximum deflection.

교량의 건전성 모니터링을 위한 효율적인 접근방법 (Effective Approaches for Structural Health Monitoring of Bridges)

  • Jong-Jae, Lee;Chung-Bang, Yun
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2004년도 가을 학술발표회 논문집
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    • pp.135-142
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    • 2004
  • Two-step identification approach for effective bridge health monitoring is proposed to alleviate the issues associated with many unknown parameters faced in the real structures and to improve the accuracy in the estimate results. It is suitable for on-line monitoring scheme, since the damage assessment is not always needed to be carried out whereas the alarming for damages is to be continuously monitored. In the first step for screening potential damaged members, damage indicator method based on modal strain energy, probabilistic neural networks and the conventional neural networks using grouping technique are used and then the conventional neural network technique is utilized for damage assessment on the screened members in the second step. The proposed methods are verified through a field test on the northern-most span of old Hannam Grand Bridge.

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양팔 샌드위치보 시험법에 의한 EPDM고무의 동특성 평가 연구 (Evaluation of Dynamic Characteristics of Rubber Materials Using a Double Cantilever Sandwich Beam Method)

  • 김광우;최낙삼
    • 대한기계학회논문집A
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    • 제26권7호
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    • pp.1393-1400
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    • 2002
  • A double cantilever sandwich-beam method has been applied to the evaluation of the frequency dependence of dynamic elastic modulus and material loss factor of EPDM rubbers. The flexural vibration of a double cantilever sandwich-beam specimen with an inserted rubber layer was studied using a finite element simulation in combination with the sine-sweep test. Effects of the rubber layer length on the dynamic characteristics were also investigated: reliable values were measured when the length of the inserted rubber layer was larger than and equal to 50% of the effective specimen length. The values were compared with those obtained by the dynamic mechanical analysis and the simple resonant test. Relationships of the dynamic characteristics of rubbers with frequency could be determined using the least square error method.

Flexural Vibration Analysis of a Sandwich Beam Specimen with a Partially Inserted Viscoelastic Layer

  • Park, Jin-Tack;Park, Nak-Sam
    • Journal of Mechanical Science and Technology
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    • 제18권3호
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    • pp.347-356
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    • 2004
  • The flexural vibration characteristics of a sandwich beam system with a partially inserted viscoelastic layer were quantitatively studied using the finite element analysis in combination with the sine-sweep experiment. Asymmetric mode shapes of the flexural vibration were visualized by holographic interferometry, which agreed with those obtained by the finite element simulation. Effects of the length and the thickness of the partial viscoelastic layer on the system loss factor (η$\_$s/) and resonant frequency (f$\_$r/) were significantly large for both the symmetric and asymmetric modes of the beam system.

비구속형 점탄성 제진층을 갖는 보의 제진층 길이 최적화 (Length Optimization for Unconstrained Visco-elastic Damping Layer of Beams)

  • 이두호;황우석
    • 한국소음진동공학회논문집
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    • 제13권12호
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    • pp.938-946
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    • 2003
  • Length of an unconstrained viscoelastic damping layer on beams is determined to maximizeloss factor using a numerical search method. The fractional derivative model can describe damping characteristics of viscoelastic damping materials accurately, and is used to represent nonlinearity of complex modulus with frequencies and temperatures. Equivalent flexural rigidity of the unconstrained beam is obtained using Ross, Ungar, Kelvin[RUK] equation. The loss factors of partially covered unconstrained beam are calculated by a modal strain energy method. Optimal lengths of the unconstrained viscoelastic damping layer of beams are identified with ambient temperatures and thickness ratios of beam and damping layer by using a finite-difference-based steepest descent method.

비구속형 점탄성 제진층을 갖는 보의 제진층 길이 최적화 (Length Optimization for Unconstrained Visco-elastic Damping Layer of Beams)

  • 이두호;황우석
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2003년도 추계학술대회논문집
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    • pp.665-671
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    • 2003
  • Length of an unconstrained viscoelastic damping layer on beams is determined to maximize loss factor using a numerical search method. The fractional derivative model can describe damping characteristics of the viscoelastic damping material, and is used to represent nonlinearity of complex modulus with frequencies and temperatures. Equivalent flexural rigidity of the unconstrained beam is obtained using Ross, Ungar, Kerwin(RUK) equation. The loss factors of partially covered unconstrained beam are calculated by a modal strain energy method. Optimal lengths of the unconstrained viscoelastic damping layer of beams are obtained with respect to ambient temperatures and thickness ratios of beam and damping layer.

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구조합성법을 이용한 큰 구조물에서의 구조동특성변경법 (Structural Dynamics Modification for a Large Structure using Component Mode Synthesis Methods)

  • 이문석;박윤식;박영진
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2005년도 추계학술대회논문집
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    • pp.852-855
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    • 2005
  • Structural Dynamic Modification(SDM) is a technique to improve structure's dynamic characteristics by adding and removing substructures or changing material properties and shape of structures. This paper describes SDM techniques applied to a large structure with too many DOFs. The goal of this SDM technique is to modify a targe structure efficiently for its natural frequencies to avoid excitation frequencies. In this case, models reduced by Component Mode Synthesis(CMS) method that is a coupling technique are used to analyze a large structure efficiently. This paper considers a helicopter deck model with 55,000 DOFs as an application.

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등기하해석법을 이용한 자유진동 평면구조물의 위상최적화 (Topology Optimization of Plane Structures under Free Vibration with Isogeometric Analysis)

  • 이상진;배정은
    • 대한건축학회논문집:구조계
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    • 제34권6호
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    • pp.11-18
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    • 2018
  • Isogeometric concept is introduced to find out the optimum layout of plane structure under free vibration. Eigenvalue problem is formulated and numerically solved in order to obtain natural frequencies and mode shapes of plane structures. For the exact geometric expression of the structure, the Non-Uniform Rational B-spline Surface (NURBS) basis functions is employed and it is also used to define the material density functions. A node-wise design variables is adopted to deal with the updating of material density in topology optimization (TO). The definition of modal strain energy is employed to achieve the maximization of fundamental frequency through its minimization. The verification of the proposed TO technique is performed by a series of benchmark test for plane structures.