• 제목/요약/키워드: Bending-moment

검색결과 1,342건 처리시간 0.024초

평판에서 방사되는 소음의 능동구조소음제어를 위한 변환기의 위치결정 (The Determination of Transducer Locations for Active Structural Acoustic Control of the Radiated Sound from Vibrating Plate)

  • 김흥섭;홍진석;이충휘;오재응
    • 한국소음진동공학회논문집
    • /
    • 제12권9호
    • /
    • pp.694-701
    • /
    • 2002
  • In this paper, through the study on locations of structural transducers for active control of the radiated sound from the vibrating plate, the active structural acoustic control (ASAC) system is proposed. And, for the evaluation of the proposed location, the experiment of the active structural acoustic control is implemented using the multi-channel filtered-x LMS algorithm and an additional filter (Acoustic Prediction Filter) to estimate the radiated sound using the acceleration signals of the plate. The structural transducers are piezoceramic actuator (PZT) and accelerometer. PZT is used as an actuator to reduce the vibration and the radiated sound. To maximize the control performance, each PZT actuator is located at the position that has the largest control sensitivity of the plate bending moment in the direction of x and y coordinates and the optimal PZT location is validated experimentally. Also, to find the acoustic prediction filter accurately, two accelerometers are located at the positions that have the largest radiation efficiencies of the plate, and the proposed locations are validated by simulation using the Rayleigh integral. The multi-channel filtered-x LMS algorithm is introduced to control a complex 2-D structural vibration mode. Finding the locations of structural transducers for active structural acoustic control of the radiated sound, the active structural acoustic control (ASAC) system can be presented and validated by experiments using a real time control system.

Nonlinear response of the pile group foundation for lateral loads using pushover analysis

  • Zhang, Yongliang;Chen, Xingchong;Zhang, Xiyin;Ding, Mingbo;Wang, Yi;Liu, Zhengnan
    • Earthquakes and Structures
    • /
    • 제19권4호
    • /
    • pp.273-286
    • /
    • 2020
  • The pile group foundation is widely used for gravity pier of high-speed railway bridges in China. If a moderate or strong earthquake occurs, the pile-surrounding soil will exhibit obvious nonlinearity and significant pile group effect. In this study, an improved pushover analysis model for the pile group foundation with consideration of pile group effect is presented and validated by the quasi-static test. The improved model uses simplified springs to simulate the soil lateral resistance, side friction and tip resistance. PM (axial load-bending moment) plastic hinge model is introduced to simulate the impact of the axial force changing of pile group on their elastic-plastic characteristics. The pile group effect is considered in stress-stain relations of the lateral soil resistance with a reduction factor. The influence factors on nonlinear characteristics and plastic hinge distribution of the pile group foundation are discussed, including the pier height, longitudinal reinforcement ratio and stirrup ratio of the pile, and soil mechanical parameters. Furthermore, the displacement ductility factor, resistance increase factor and yielding stiffness ratio are provided to evaluate the seismic performance of soil-pile system. A case study for the pile group foundation of a railway simply supported beam bridge with a 32 m-span is conducted by numerical analysis. It is shown that the ultimate lateral force of pile group is not determined by the yielding force of the single one in these piles. Therefore, the pile group effect is essential for the seismic performance evaluation of the railway bridge with pile group foundation.

간접기법을 이용한 한국형 기동헬기 블레이드 플래핑 각도 예측 (Prediction of the Blade Flapping Angle for Korean Utility Helicopter by Applying Indirect Method)

  • 김영진;이상기;이승재;장인기;심대성
    • 한국항공우주학회지
    • /
    • 제43권10호
    • /
    • pp.888-895
    • /
    • 2015
  • 본 논문에서는 한국형 기동헬기의 안전영역 검증을 위해 블레이드 플래핑 각을 산출할 수 있는 근사식을 제시하였다. 블레이드의 플래핑 운동은 항공기 동체와의 충돌을 일으킬 수 있기 때문에 안전성 측면에서 검증되어야 하지만 비행 중의 플래핑 각을 정확하게 예측하거나 측정하는 것은 어려움이 있다. 이에 따라 공력이론을 활용한 코닝 각 예측 식과 개발해석결과를 활용한 동적 플래핑 각 예측 식을 도출하였다. 이 후 항공기 모사시험을 실시하여 식을 이용한 플래핑 각과 실측된 플래핑 각을 비교하여 산출식의 적절성을 확인하였다. 최종적으로 산출된 식을 이용하여 AC29 및 FAR29를 바탕으로 안전성 측면에서 검증이 요구되는 기동의 플래핑 각을 산출하여 개발에서 설정된 항공기 안전영역의 적절성을 확인하였다.

스터럿-타이 모델에 의한 강절점 영역설계에 관한 연구 (Design of Rigid Joints Using Strut-Tie Model)

  • 원대연
    • 한국구조물진단유지관리공학회 논문집
    • /
    • 제18권1호
    • /
    • pp.31-39
    • /
    • 2014
  • 뼈대구조물의 강절점영역을 설계하기 위해서는 휨모멘트의 작용방향에 따른 절점영역 내부의 응력변화를 정확히 예측하는 것이 매우 중요하다. 본 연구에서는 다양한 형태의 헌치를 갖는 강절점영역의 설계에 있어서 현행의 도로교설계기준이 유용한지에 대해 검토하였다. 또한 선형탄성유한요소해석을 통해 휨모멘트의 작용시의 헌치를 갖는 절점영역내부의 응력상태를 파악한 다음, 이를 바탕으로 스터럿-타이 모델을 제안하였다. 본 연구를 통해 제안한 스터럿-타이 모델은 선형탄성유한요소와 동등수준의 정확도를 가지는 것을 확인하였고, 다양한 형태의 헌치를 갖는 강절점 영역의 보강철근 설계에 유용할 것으로 사료된다.

액상화 가능한 지반에 근입된 지반-말뚝-구조물 동적 상호작용의 수치 모델링 (Numerical Simulation of Dynamic Soil-pile-structure Interaction in Liquefiable Sand)

  • 권선용;유민택;김석중
    • 한국지반공학회논문집
    • /
    • 제34권7호
    • /
    • pp.29-38
    • /
    • 2018
  • 액상화 시 지반-말뚝 시스템의 동적 거동을 정확히 예측하기 위해 상용 유한 차분 프로그램인 FLAC3D를 이용하여 시간영역에서 3차원 수치 모델링을 수행하였다. 지반의 전단변형에 따른 간극수압의 발달을 직접적으로 모사하기 위해 유효응력 해석법을 이용한 액상화 모델인 Finn model을 적용하였으며 Mohr-Coulomb 탄소성 모델에 접목되어 해석이 수행되었다. 이력감쇠모델을 적용하여 지반 비선형 거동을 고려하였으며 지반과 말뚝 간의 분리현상, 미끄러짐 현상을 모사하는 인터페이스 모델을 적용하였다. 경계조건으로써 단순화 연속체 모델링 기법을 도입하여 반사파의 생성을 막고 해석 효율을 증가시켰으며 적절한 최대지반탄성계수와 항복 깊이의 설정으로 비선형 거동을 정확히 모사하고자 하였다. Wilson(1998)이 수행한 원심모형시험 케이스 중 상부지반 상대밀도가 55%인 모델을 이용하여 제안된 모델링 기법의 캘리브레이션을 수행한 결과, 수치해석으로부터 도출된 깊이 별 과잉간극수압 비-시간 이력, 휨모멘트-시간이력, 말뚝 두부 변위-시간이력이 실험 결과를 잘 모사하였다. 상부지반 상대밀도가 30%인 모델의 결과를 이용하여 제안된 모델링 기법의 적용성 평가를 수행한 결과, 수치해석으로부터 도출된 지반 및 말뚝 응답이 실험 결과를 잘 모사하였으며 제안된 모델링 기법이 지반-말뚝 시스템의 액상화 거동을 적절히 모사한다고 판단되었다.

교각세굴을 고려한 말뚝기초의 해석 (Analysis of Piled Piers Considering Riverbed Scouring)

  • Jeong, Sang-Seom;Suh, Jung-Ju;Won, Jin-Oh
    • 한국지반공학회논문집
    • /
    • 제18권3호
    • /
    • pp.43-50
    • /
    • 2002
  • 본 연구에서는 지반말뚝, 말뚝-말뚝캡, 그리고 말뚝-유체간의 상호작용 해석을 수행하여 교각세굴을 고려한 말뚝기초의 거동을 해석하였다. 지반-말뚝의 상호작용은 비선형 하중전이곡선(p-y, t-z, 그리고 q-z 곡선)을, 말뚝-말뚝캡의 상호작용에서는 군말뚝의 배열과 말뚝-말뚝캡 사이의 구속조건을 고려하였다. 말뚝유체의 상호작용은 세굴에 의한 지반의 강성 저하를 고려하여 지반-말뚝의 상호작용에 포함하여 해석하였다. 그 결과 세굴심이 깊어질수록 말뚝에 발생하는 최대 휨모멘트의 값이 증가함을 알 수 있었으며, 이를 바탕으로 세굴에 따른 군말뚝의 안정성 평가에서는 지반-말뚝 및 말뚝-말뚝캡의 상호작용을 고려한 해석을 수행하는 것이 바람직함을 알 수 있었다.

호장법을 이용한 평면 트러스 구조의 비탄성 비선형 해석 (Inelastic Nonlinear Analysis of Plane Truss Structures Using Arc-Length Method)

  • 김광중;백기열;이재홍
    • 한국공간구조학회논문집
    • /
    • 제8권1호
    • /
    • pp.41-48
    • /
    • 2008
  • 대공간 구조물은 3차원적인 힘의 흐름과 면내력에 의해 외부하중에 대한 저항 능력을 극대화 시킨 형태 저항 구조로서, 일반적인 골조와는 달리 부재에 대한 유한 변형을 동반 하므로 정적, 동적 해석에 관계없이 비선형 해석이 요구 된다. 대공간 구조물의 정확한 구조 해석을 수행하기 위해서는 기하학적 비선형 및 재료적 비선형 뿐 아니라 두 효과를 함께 고려한 비선형 해석이 필요하다. 기하학적 비선형 문제가 구조재료의 특성 및 위치에 따른 비선형을 고려하지 못하고, 구조재료의 비선형 문제가 기하학적 형상에 따른 비선형을 고려하지 못한다는 상호간의 단점을 해결하기 위하여, 본 논문에서는 유한요소법으로 기하학적 비선형을 고려한 비선형 평형방정식을 적용하고, 부재의 응력-변형률 관계를 이용하여 재료적 비선형성도 함께 고려하였다. 사용된 수치해석 기법은 불안정 경로의 해를 찾아갈 수 있는 호장법을 적용하여 하중-변위 곡선을 추적하였다. 본 연구의 수치 해석결과 제시한 평면 트러스의 비탄성 비선형 거동을 정확하고 효율적으로 예측 가능한 것으로 나타났다.

  • PDF

Multi-dimensional wind vibration coefficients under suction for ultra-large cooling towers considering ventilation rates of louvers

  • Ke, S.T.;Du, L.Y.;Ge, Y.J.;Tamura, Y.
    • Structural Engineering and Mechanics
    • /
    • 제66권2호
    • /
    • pp.273-283
    • /
    • 2018
  • Currently, the dynamic amplification effect of suction is described using the wind vibration coefficient (WVC) of external loads. In other words, it is proposed that the fluctuating characteristics of suction are equivalent to external loads. This is, however, not generally valid. Meanwhile, the effects of the ventilation rate of louver on suction and its WV are considered. To systematically analyze the effects of the ventilation rate of louver on the multi-dimensional WVC of ultra-large cooling towers under suctions, the 210 m ultra-large cooling tower under construction was studied. First, simultaneous rigid pressure measurement wind tunnel tests were executed to obtain the time history of fluctuating wind loads on the external surface and the internal surface of the cooling tower at different ventilation rates (0%, 15%, 30%, and 100%). Based on that, the average values and distributions of fluctuating wind pressures on external and internal surfaces were obtained and compared with each other; a tower/pillar/circular foundation integrated simulation model was developed using the finite element method and complete transient time domain dynamics of external loads and four different suctions of this cooling tower were calculated. Moreover, 1D, 2D, and 3D distributions of WVCs under external loads and suctions at different ventilation rates were obtained and compared with each other. The WVCs of the cooling tower corresponding to four typical response targets (i.e., radial displacement, meridional force, Von Mises stress, and circumferential bending moment) were discussed. Value determination and 2D evaluation of the WVCs of external loads and suctions of this large cooling tower at different ventilation rates were proposed. This study provides references to precise prediction and value determination of WVC of ultra-large cooling towers.

Design and calibration of a semi-active control logic to mitigate structural vibrations in wind turbines

  • Caterino, Nicola;Georgakis, Christos T.;Spizzuoco, Mariacristina;Occhiuzzi, Antonio
    • Smart Structures and Systems
    • /
    • 제18권1호
    • /
    • pp.75-92
    • /
    • 2016
  • The design of a semi-active (SA) control system addressed to mitigate wind induced structural demand to high wind turbine towers is discussed herein. Actually, the remarkable growth in height of wind turbines in the last decades, for a higher production of electricity, makes this issue pressing than ever. The main objective is limiting bending moment demand by relaxing the base restraint, without increasing the top displacement, so reducing the incidence of harmful "p-delta" effects. A variable restraint at the base, able to modify in real time its mechanical properties according to the instantaneous response of the tower, is proposed. It is made of a smooth hinge with additional elastic stiffness and variable damping respectively given by springs and SA magnetorheological (MR) dampers installed in parallel. The idea has been physically realized at the Denmark Technical University where a 1/20 scale model of a real, one hundred meters tall wind turbine has been assumed as case study for shaking table tests. A special control algorithm has been purposely designed to drive MR dampers. Starting from the results of preliminary laboratory tests, a finite element model of such structure has been calibrated so as to develop several numerical simulations addressed to calibrate the controller, i.e., to achieve as much as possible different, even conflicting, structural goals. The results are definitely encouraging, since the best configuration of the controller leaded to about 80% of reduction of base stress, as well as to about 30% of reduction of top displacement in respect to the fixed base case.

On the second order effect of the springing response of large blunt ship

  • Kim, Yooil;Park, Sung-Gun
    • International Journal of Naval Architecture and Ocean Engineering
    • /
    • 제7권5호
    • /
    • pp.873-887
    • /
    • 2015
  • The springing response of a large blunt ship was considered to be influenced by a second order interaction between the incoming irregular wave and the blunt geometry of the forebody of the ship. Little efforts have been made to simulate this complicated fluid-structure interaction phenomenon under irregular waves considering the second order effect; hence, the above mentioned premise still remains unproven. In this paper, efforts were made to quantify the second order effect between the wave and vibrating flexible ship structure by analyzing the experimental data obtained through the model basin test of the scaled-segmented model of a large blunt ship. To achieve this goal, the measured vertical bending moment and the wave elevation time history were analyzed using a higher order spectral analysis technique, where the quadratic interaction between the excitation and response was captured by the cross bispectrum of two randomly oscillating variables. The nonlinear response of the vibrating hull was expressed in terms of a quadratic Volterra series assuming that the wave excitation is Gaussian. The Volterra series was then orthogonalized using Barrett's procedure to remove the interference between the kernels of different orders. Both the linear and quadratic transfer functions of the given system were then derived based on a Fourier transform of the orthogonalized Volterra series. Finally, the response was decomposed into a linear and quadratic part to determine the contribution of the second order effect using the obtained linear and quadratic transfer functions of the system, combined with the given wave spectrum used in the experiment. The contribution of the second order effect on the springing response of the analyzed ship was almost comparable to the linear one in terms of its peak power near the resonance frequency.