• 제목/요약/키워드: Lateral Load System

검색결과 400건 처리시간 0.025초

고층 아파트 구조시스템에 따른 내진성능 분석 (Seismic Capacity according to Structural System of High-rise Apartment)

  • 이민희;조소훈;김종호;김형도
    • 한국전산구조공학회논문집
    • /
    • 제32권3호
    • /
    • pp.149-154
    • /
    • 2019
  • 국내 고층 아파트의 구조시스템은 크게 다수의 벽체가 분산적으로 배치되어 있는 내력벽 시스템과 중앙 코어벽 시스템으로 구분할 수 있다. 각각 시스템에 따른 횡방향 거동을 분석하기 위해 본 연구는 국내 고층 아파트 중 대표적인 평면을 갖는 대상 건물을 선정하고, 비선형 정적해석을 수행하여 붕괴메커니즘을 살펴보았다. 비선형 정적해석을 통해 도출된 힘-변위관계로부터 지진응답에 있어서 중요한 요소인 초과강도계수 및 연성도계수를 산정하여 반응수정계수를 평가하였다. 중앙 코어벽 시스템은 연성도는 작지만, 풍하중에 의해 지배되어 초과강도가 크게 산정돼 초과강도계수에 의해 반응수정계수가 산정되었고, 내력벽 시스템은 벽량이 많아 연성도가 크기 때문에 상당힌 큰 반응수정계수가 산정된다.

Two-level control system of toggle braces having pipe damper and rotational friction damper

  • Ata Abdollahpour;Seyed Mehdi Zahrai
    • Structural Engineering and Mechanics
    • /
    • 제86권6호
    • /
    • pp.739-750
    • /
    • 2023
  • This study examines the two-level behavior of the toggle brace damper within a steel frame having a yielding pipe damper and rotational friction damper. The proposed system has two kinds of fuse for energy dissipation in two stages. In this mechanism, rotational friction damper rather than hinged connection is used in toggle brace system, connected to a pipe damper with a limited gap. In order to create a gap, bolted connection with the slotted hole is used, such that first a specific movement of the rotational friction damper solely is engaged but with an increase in movement, the yielding damper is also involved. The performance of the system is such that at the beginning of loading the rotational friction damper, as the first fuse, absorbs energy and with increasing the input load and further movement of the frame, yielding damper as the second fuse, along with rotational friction damper would dissipate the input energy. The models created by ABAQUS are subjected to cyclic and seismic loading. Considering the results obtained, the flexibility of the hybrid two-level system is more comparable to the conventional toggle brace damper. Moreover, this system sustains longer lateral displacements. The energy dissipation of these two systems is modeled in multi-story frames in SAP2000 software and their performance is analyzed using time-history analysis. According to the results, permanent relocations of the roof in the two-level system, in comparison with toggle brace damper system in 2, 5, and 8-story building frames, in average, decrease by 15, 55, and 37% respectively. This amount in a 5-story building frame under the earthquakes with one-third scale decreases by 64%.

광점퍼코드 (OJC) 보호용 미소 직경 복합재료 스프링 개발 (A Development of Small-diameter Composite Helical Spring for Reinforcement of Optical Fiber Jumper Cord (OJC))

  • 윤영기;박성도;이연수;윤희석;이우일
    • Composites Research
    • /
    • 제15권4호
    • /
    • pp.17-22
    • /
    • 2002
  • 미세 직경을 갖는 복합재료 나선형 스프링 (CS)가 광점퍼코드 (OJC)를 보강하기위한 매체로써 개발되었다. 이 스프링의 외경은 약 2~3mm로써 광점퍼코드에 갑작스런 측면 하중으로 부터 광섬유의 손실을 막기위해 삽입 보강할 수 있도록 제작되었다. 섬유 형태 (Y-type)와 밴드 형태 (B-type)의 복합재료 스프링이 제작되어 그 효과를 비교하였다. 측면 하중에 대한 기계적 특성은 동일 직경의 금속 스프링 및 일반 광점퍼코드의 물성치와 비교하여 제시하였다. 실험 결과로부터 복합재료 스프링이 보강된 광점퍼코드의 경우 굽힘에 대한 높은 저항력을 지니고 있음에 따라 광섬유의 내부 손상에 의한 광 손실의 감소률이 낮음을 알 수 있었다 얻어진 주요 결과들은: (1) Y-type의 CS의 경우 B-type과 비교하여 높은 측압 저항력을 지님을 알 수 있었다 (2) 일반 OJC와 비교하여 CS-OJC의 경우 광 손실이 현격이 낮음을 알 수 있었다. (3) 일반 스프링의 측압 하중시의 응력 분포 형태를 제시하였으며. 실험으로부터 얻어진 결과로부터 복합재료 스프링이 보강된 광점퍼 코드의 경우 매우 높은 구조적 안정성을 보임을 알 수 있었다.

Static impedance functions for monopiles supporting offshore wind turbines in nonhomogeneous soils-emphasis on soil/monopile interface characteristics

  • Abed, Younes;Bouzid, Djillali Amar;Bhattacharya, Subhamoy;Aissa, Mohammed H.
    • Earthquakes and Structures
    • /
    • 제10권5호
    • /
    • pp.1143-1179
    • /
    • 2016
  • Offshore wind turbines are considered as a fundamental part to develop substantial, alternative energy sources. In this highly flexible structures, monopiles are usually used as support foundations. Since the monopiles are large diameter (3.5 to 7 m) deep foundations, they result in extremely stiff short monopiles where the slenderness (length to diameter) may range between 5 and 10. Consequently, their elastic deformation patterns under lateral loading differ from those of small diameter monopiles usually employed for supporting structures in offshore oil and gas industry. For this reason, design recommendations (API and DNV) are not appropriate for designing foundations for offshore wind turbine structures as they have been established on the basis of full-scale load tests on long, slender and flexible piles. Furthermore, as these facilities are very sensitive to rotations and dynamic changes in the soil-pile system, the accurate prediction of monopile head displacement and rotation constitutes a design criterion of paramount importance. In this paper, the Fourier Series Aided Finite Element Method (FSAFEM) is employed for the determination of static impedance functions of monopiles for OWT subjected to horizontal force and/or to an overturning moment, where a non-homogeneous soil profile has been considered. On the basis of an extensive parametric study, and in order to address the problem of head stiffness of short monopiles, approximate analytical formulae are obtained for lateral stiffness $K_L$, rotational stiffness $K_R$ and cross coupling stiffness $K_{LR}$ for both rough and smooth interfaces. Theses expressions which depend only on the values of the monopile slenderness $L/D_p$ rather than the relative soil/monopile rigidity $E_p/E_s$ usually found in the offshore platforms designing codes (DNV code for example) have been incorporated in the expressions of the OWT natural frequency of four wind farm sites. Excellent agreement has been found between the computed and the measured natural frequencies.

반복 횡하중을 받는 유공 PC 기둥 접합부의 구조성능 평가 (Evaluation of Structural Performance the Hollow PC Column Joint Subjected to Cyclic Lateral Load)

  • 서수연;윤승조;이우진
    • 콘크리트학회논문집
    • /
    • 제20권3호
    • /
    • pp.335-343
    • /
    • 2008
  • 본 연구는 프리캐스트 콘크리트 모멘트 골조 시스템의 시공 성능 향상과 접합부 내진성능 향상을 위하여 새로운 개념의 PC 기둥 부재와 시공 공정을 개발하였다. 이 PC 기둥은 원심력으로 제조되어 내부에 공간이 비워있는 중공관 PC 부재로서, 이 기둥을 활용할 경우, 중공관을 통하여 현장타설 콘크리트와 동일한 일체성을 확보할 수 있다. 본 연구는 제안된 PC 기둥 접합부의 내진성능을 평가하기 위하여 반복가력 시험을 수행하였다. 실험체는 기둥 주철근의 연속성을 확보하기 위하여 기계적 이음과 겹침이음을 활용한 2가지 이음 방법을 적용하였으며, PC 기둥의 띠철근 배근 형태를 고려하여 실물 크기의 4개 실험체를 계획 실험하였다. 반복 횡력 시험 결과, 제안된 HPCC 기둥을 활용할 경우, 현장타설 RC 시스템의 접합부 내진성능을 충분히 확보할 수 있는 것으로 나타났다.

축소 모델 실험장치를 이용한 철도 스킬소음의 특성에 대한 실험적 연구 (An Experimental Study of Squeal Noise Characteristics for Railway Using a Scale Model Test Rig)

  • 김지용;황동현;이준헌;김관주;김재철
    • 한국소음진동공학회논문집
    • /
    • 제25권5호
    • /
    • pp.352-360
    • /
    • 2015
  • Squeal noise is a harsh, high-pitched sound that occurs when railways are running at sharp curve tracks. The cause of squeal noise is known to be the transient lateral traction force between wheel and rail. Field measurements are too difficult to control the parameters. Thus, the scaled test rig should have been made in order to investigate the generating mechanism of squeal noise. The unique feature of our test rig, HSTR(Hongik Squeal Testing Rig), is that DOFs of its wheelset are as close to as those of the real railway. The attack angle and running speed of the rail roller are controlled in real time for simulating a transient characteristic of driving curve. The environment conditions, such as given axle load, running speed, and wheel's yaw angle have been identified for generating squeal noise and the squeal noise itself has been measured. The relation between wheel creepage and creep force in lateral direction and the criteria for squeal noise have been investigated, which results has been verified by finite element method.

Numerical study on the structural performance of corrugated low yield point steel plate shear walls with circular openings

  • Shariati, Mahdi;Faegh, Shervin Safaei;Mehrabi, Peyman;Bahavarnia, Seyedmasoud;Zandi, Yousef;Masoom, Davood Rezaee;Toghroli, Ali;Trung, Nguyen-Thoi;Salih, Musab NA
    • Steel and Composite Structures
    • /
    • 제33권4호
    • /
    • pp.569-581
    • /
    • 2019
  • Corrugated steel plate shear wall (CSPSW) as an innovative lateral load resisting system provides various advantages in comparison with the flat steel plate shear wall, including remarkable in-plane and out-of-plane stiffnesses and stability, greater elastic shear buckling stress, increasing the amount of cumulative dissipated energy and maintaining efficiency even in large story drifts. Employment of low yield point (LYP) steel web plate in steel shear walls can dramatically improve their structural performance and prevent early stage instability of the panels. This paper presents a comprehensive structural performance assessment of corrugated low yield point steel plate shear walls having circular openings located in different positions. Accordingly, following experimental verification of CSPSW finite element models, several trapezoidally horizontal CSPSW (H-CSPSW) models having LYP steel web plates as well as circular openings (for ducts) perforated in various locations have been developed to explore their hysteresis behavior, cumulative dissipated energy, lateral stiffness, and ultimate strength under cyclic loading. Obtained results reveal that the rehabilitation of damaged steel shear walls using corrugated LYP steel web plate can enhance their structural performance. Furthermore, choosing a suitable location for the circular opening regarding the design purpose paves the way for the achievement of the shear wall's optimal performance.

Ultimate strength estimation of composite plates under combined in-plane and lateral pressure loads using two different numerical methods

  • Ghannadpour, S.A.M.;Shakeri, M.;Barvaj, A. Kurkaani
    • Steel and Composite Structures
    • /
    • 제29권6호
    • /
    • pp.785-802
    • /
    • 2018
  • In this paper, two different computational methods, called Rayleigh-Ritz and collocation are developed to estimate the ultimate strength of composite plates. Progressive damage behavior of moderately thick composite laminated plates is studied under in-plane compressive load and uniform lateral pressure. The formulations of both methods are based on the concept of the principle of minimum potential energy. First order shear deformation theory and the assumption of large deflections are used to develop the equilibrium equations of laminated plates. Therefore, Newton-Raphson technique will be used to solve the obtained system of nonlinear algebraic equations. In Rayleigh-Ritz method, two degradation models called complete and region degradation models are used to estimate the degradation zone around the failure location. In the second method, a new energy based collocation technique is introduced in which the domain of the plate is discretized into the Legendre-Gauss-Lobatto points. In this new method, in addition to the two previous models, the new model named node degradation model will also be used in which the material properties of the area just around the failed node are reduced. To predict the failure location, Hashin failure criteria have been used and the corresponding material properties of the failed zone are reduced instantaneously. Approximation of the displacement fields is performed by suitable harmonic functions in the Rayleigh-Ritz method and by Legendre basis functions (LBFs) in the second method. Finally, the results will be calculated and discussions will be conducted on the methods.

선박 판부재의 개선된 좌굴평가 시스템의 개발 (The Development of Advanced Buckling Strength Estimation System)

  • 함주혁;김을년
    • 대한조선학회논문집
    • /
    • 제34권3호
    • /
    • pp.53-60
    • /
    • 1997
  • 일반적으로 선박 판부재의 좌굴강도에 대한 안전성 평가는 선체구조 설계단계에서 반드시 거쳐야 할 단계로 한 척의 배는 수많은 판부재로 구성되어 선박구조 전체에 대한 이론적이며 체계적인 시스템을 이용한 좌골강도평가의 정확도 및 효율성이 강조되고 있다. 그러나 현재의 판부재 좌굴강도를 평가하는 각 선급의 규정치가 많은 영향인자를 고려치 않고 있거나 함축척으로 고려하고 있기 때문에 경우에 따라서는 좌굴강도가 상당한 안전측의 값을 제시하는 등 실제 선급규정치의 사용에 제약을 주기도 한다. 따라서 본 연구에서는 면내인장력의 영향등 선급들의 좌굴 규정치뿐만이 아니라 면내인장력의 효과, 경계조건, 횡하중 및 잔류응력등을 고려하면서 손쉽게 좌굴평가를 수행할 수 있는 선진 좌굴평가시스템을 개발하였다. 이들 선진 좌굴평가시스템을 이용하면 선박판부재의 보다 정도 높고 효율적인 평가가 가능하리라 생각되며 앞으로 대중적인 사용을 위해 워크스테이션 외에도 개인용 컴퓨터에서의 시스템 구축을 계획하고 있다.

  • PDF

고효율 복합형 진공펌프의 로터다이나믹 해석 (A Rotordynamics Analysis of High Efficiency and Hybrid Type Vacuum Pump)

  • 김병옥;이안성;노명근
    • 한국소음진동공학회논문집
    • /
    • 제17권10호
    • /
    • pp.967-975
    • /
    • 2007
  • A rotordynamic analysis was performed with a dry vacuum pump, which is a major equipment in modern semiconductor and LCD manufacturing processes. The system is composed of screw rotors, lobes picking air, helical gears, driving motor, and support rolling element bearings of rotors and motor. The driving motor-screw rotor system has a rated speed of 6,300 rpm, and was modeled utilizing a rotordynamic FE method for analysis, which was verified through 3-D FE analysis and experimental modal analysis. As loadings on the bearings due to the gear action were significant in the system considered, each resultant bearing load was calculated by considering the generalized forces of the gear action as well as the rotor itself. Each resultant bearing loading was used in calculating each stiffness of rolling element bearings. Design goals are to achieve wide separation margins of lateral and torsional critical speeds, and favorable unbalance responses of the rotor in the operating range. Then, a complex rotordynamic analysis of the system was carried out to evaluate its forward synchronous critical speeds, whirl natural frequencies and mode shapes, unbalance responses under various unbalance locations, and torsional interference diagram. Results show that the entire system is well designed in the operating range. In addition, the procedure of rotordynamic analysis for dry vacuum pump rotor-bearing system was proposed and established.