• 제목/요약/키워드: tension-only bracing

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케이블 트러스 지붕 시스템의 역학적 특성 (Mechanical Characteristics of Cable Truss Roof Systems)

  • 박강근;이동우
    • 한국공간구조학회논문집
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    • 제16권2호
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    • pp.89-96
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    • 2016
  • Cable structures are lightweight structures of flexible type, cable members have only axial stiffness related to tension, they can carry neither bending nor compression. This study is the analysis of cable truss systems are composed of upper and low cables by connecting bracing cables, the structural principle is based on a tensegrity system by using bracing tension members, discontinuous compression members and continuous tension members. A hanging roof of cable truss system is too flexible against vertical loads, most cable members are stabilized by connecting the prestressed upper and lower cable by bracing cables. A cable truss roof system is formed by adding a set of cables with reverse curvature to the suspension cables. With the sets of cables having opposite curvature to each other, cable truss is able to carry vertical load in both upward and downward direction with equal effectiveness, and then a cable truss acts as load bearing elements by the assemble of ridge cables, valley cables and bracing cables. This paper will be shown the geometric non-linear analysis result of cable truss systems with various sag ratio for deflections and tensile forces, the analytical results are compared with the results of other researchers.

Development of a self-centering tension-only brace for seismic protection of frame structures

  • Chi, Pei;Guo, Tong;Peng, Yang;Cao, Dafu;Dong, Jun
    • Steel and Composite Structures
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    • 제26권5호
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    • pp.573-582
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    • 2018
  • This study develops and numerically verifies an innovative seismically resilient bracing system. The proposed self-centering tension-only brace (SC-TOB) is composed of a tensioning system to provide a self-centering response, a frictional device for energy dissipation, and a high-strength steel cable as a bracing element. It is considered to be an improvement over the traditional self-centering braces in terms of lightness, high bearing capacity, load relief, and double-elongation capacity. In this paper, the mechanics of the system are first described. Governing equations deduced from the developed analytical model to predict the behavior of the system are then provided. The results from a finite element validation confirm that the SC-TOB performs as analytically predicted. Key parameters including the activation displacement and load, the self-centering parameter, and equivalent viscous damping are investigated, and their influences on the system behavior are discussed. Finally, a design procedure considering controlled softening behavior is developed and illustrated through a design example.

반복하중을 받는 강재 브레이싱의 거동에 관한 해석적 연구 (A Study on the Analysis of Steel Bracing Behaviour Subjected to Cyclic loads)

  • 구민세;김병석;김일곤
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1989년도 봄 학술발표회 논문집
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    • pp.44-49
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    • 1989
  • The primary purpose of using bracings is to improve tile lateral rigidity of main structural system, i.e., columns and beams, by reinforcing them with much smaller members. Conventional design methods consider bracings as tension-only mambers, since difficulties arise in the analysis to consider the P - effects and post-buckling behaviour of the bracing members. This is particulary true for X-bracings. Recently, however, both analytical and experimental studies have been conducted to investigate the more precise and real behaviour of bracing members, especially for the nonlinear un plastic behaviour under cyclic loads. In this study, an analytical model is proposed to investigate the nonlinear behavior of steel bracing members subjected to cyclic loads. Results of tile analysis were compared with previous experimental results, and good agreements were obtained between these results.

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Cable-pulley brace to improve story drift distribution of MRFs with large openings

  • Zahrai, Seyed Mehdi;Mousavi, Seyed Amin
    • Steel and Composite Structures
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    • 제21권4호
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    • pp.863-882
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    • 2016
  • This study aims to introduce a new bracing system by which even super-wide frames with large openings can be braced. The proposed system, hereafter called Cable-Pulley Brace (CPB), is a tension-only bracing system with a rectilinear configuration. In CPB, a wire rope passes through a rectilinear path around the opening(s) and connects the lower corner of the frame to its opposite upper one. CPB is a secondary load resisting system with a nonlinear-elastic hysteretic behavior due to its initial pre-tension load. As a result, the required energy dissipation would be provided by the MRF itself, and the main intention of using CPB is to contribute to the initial and post-yield stiffness of the whole system. Using a stiffness calibration technique, optimum placement of the CPBs is discussed to yield a uniform displacement demand along the height of the structure. A displacement-based design procedure is proposed by which the MRF with CPB can be designed to achieve a uniform distribution of inter-story drifts with predefined values. Obtained results indicated that CPB leads to significant reductions in maximum and residual deformations of the MRF at the expense of minor increase in the maximum base shear and developed axial force demands in the columns. In the case of a typical 5-story residential building, compared to SMRF system, CPB system reduces maximum amounts of inter-story and residual drifts by 35% and 70%, respectively. Moreover, openings of the frame are not interrupted by the CPB. This is the most appealing feature of the proposed bracing system from architectural point of view.

반복하중을 받는 강재 브레이싱의 거동에 관한 해석적 연구 (A Study on the Analysis of Steel Bracing Behaviour Subjected to Cyclic Loads)

  • 구민세;김병석;김일곤
    • 전산구조공학
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    • 제2권3호
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    • pp.69-75
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    • 1989
  • 브레이싱재를 사용하는 목적은 본 골조체계 즉 기둥과 보에 비해 단면(강성)이 작은 부재로 보강하여 횡력에 대한 강성효과를 크게 향상시키기 위함이다. 브레이싱재의 단면이 기둥과 보의 단면에 비해 월등히 작기 때문에 압축력에 의한 좌굴의 위험성과 휨량의 크기에 비례하여 부재 중앙에 발생되는 추가 모멘트(P-.DELTA. Effect)에 의한 불리한 영향 및 해석상의 어려움 때문에 브레이싱의 설계에 있어서 브레이싱재는 압축력을 받지 않는 것으로 간주하여 왔다. 그러나 최근 들어 구조물 해석에 정확도가 요구되어짐에 따라 브레이싱재의 정확한 거동에 대한 연구가 실험을 통해 활발히 진행되어 왔고, 특히 탄성한계를 지난 소성상태에서 반복하중에 의한 거동 규명이 큰 관심을 끌고 있다. 본 논문에서는 반복하중을 받는 강재 브레이싱재의 비선형 거동을 해석적 방법에 의해 규명했고, 그 결과를 실험결과와 비교하였다.

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Evaluation of seismic performance factors for tension-only braced frames

  • Shariati, Mahdi;Lagzian, Majid;Maleki, Shervin;Shariati, Ali;Trung, Nguyen Thoi
    • Steel and Composite Structures
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    • 제35권4호
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    • pp.599-609
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    • 2020
  • The tension-only braced frames (TOBFs) are widely used as a lateral force resisting system (LFRS) in low-rise steel buildings due to their simplicity and economic advantage. However, the system has poor seismic energy dissipation capacity and pinched hysteresis behavior caused by early buckling of slender bracing members. The main concern in utilizing the TOBF system is the determination of appropriate performance factors for seismic design. A formalized approach to quantify the seismic performance factor (SPF) based on determining an acceptable margin of safety against collapse is introduced by FEMA P695. The methodology is applied in this paper to assess the SPFs of the TOBF systems. For this purpose, a trial value of the R factor was first employed to design and model a set of TOBF archetype structures. Afterwards, the level of safety against collapse provided by the assumed R factor was investigated by using the non-linear analysis procedure of FEMA P695 comprising incremental dynamic analysis (IDA) under a set of prescribed ground motions. It was found that the R factor of 3.0 is appropriate for safe design of TOBFs. Also, the system overstrength factor (Ω0) was estimated as 2.0 by performing non-linear static analyses.

Out-of-plane buckling and bracing requirement in double-angle trusses

  • Chen, Shaofan;Su, Mingzhou
    • Steel and Composite Structures
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    • 제3권4호
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    • pp.261-275
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    • 2003
  • Truss members built-up with double angles back-to-back have monosymmetric cross-section and twisting always accompanies flexion upon the onset of buckling about the axis of symmetry. Approximate formulae for calculating the buckling capacity are presented in this paper for routine design purpose. For a member susceptible only to flexural buckling, its optimal cross-section should consist of slender plate elements so as to get larger radius of gyration. But, occurrence of twisting changes the situation owing to the weakness of thin plates in resisting torsion. Criteria for limiting the leg slenderness are discussed herein. Truss web members in compression are usually considered as hinged at both ends for out-of-plane buckling. In case one (or both) end of member is not supported laterally by bracing member, its adjoining members have to provide an elastic support of adequate stiffness in order not to underdesign the member. The stiffness provided by either compression or tension chords in different cases is analyzed, and the effect of initial crookedness of compression chord is taken into account. Formulae are presented to compute the required stiffness of chord member and to determine the effective length factor for inadequately constrained compressive diagonals.

Numerical verification of a dual system's seismic response

  • Phocas, Marios C.;Sophocleous, Tonia
    • Earthquakes and Structures
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    • 제3권5호
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    • pp.749-766
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    • 2012
  • Structural control through integration of passive damping devices within the building structure has been increasingly implemented internationally in the last years and has proven to be a most promising strategy for earthquake safety. In the present paper an alternative configuration of an innovative energy dissipation mechanism that consists of slender tension only bracing members with closed loop and a hysteretic damper is investigated in its dynamic behavior. The implementation of the adaptable dual control system, ADCS, in frame structures enables a dual function of the component members, leading to two practically uncoupled systems, i.e., the primary frame, responsible for the normal vertical and horizontal forces and the closed bracing-damper mechanism, for the earthquake forces and the necessary energy dissipation. Three representative international earthquake motions of differing frequency contents, duration and peak ground acceleration have been considered for the numerical verification of the effectiveness and properties of the SDOF systems with the proposed ADCS-configuration. The control mechanism may result in significant energy dissipation, when the geometrical and mechanical properties, i.e., stiffness and yield force of the integrated damper, are predefined. An optimum damper ratio, DR, defined as the ratio of the stiffness to the yield force of the hysteretic damper, is proposed to be used along with the stiffness factor of the damper's- to the primary frame's stiffness, in order for the control mechanism to achieve high energy dissipation and at the same time to prevent any increase of the system's maximum base shear and relative displacements. The results are summarized in a preliminary design methodology for ADCS.

진동대 실험을 통한 조립식 스틸 전단 패널의 비선형 동적 거동 (Nonlinear Dynamic Behavior of a Cold-Formed Steel Shear Panel by Shaketable Tests)

  • 김태완;이문성
    • 한국지진공학회논문집
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    • 제9권6호
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    • pp.31-39
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    • 2005
  • 본 연구의 목적은 인장으로만 저항하는 경사진 스트랩과 기둥으로 구성된 조립식 스틸 (CFS) 전단 패널의 지진하중에 대한 비선형 거동을 조사하는 것이며, 이를 위해 실제 크기의 2층 건물을 설계한 후 진동대 실험을 수행하였다. CFS 전단 패널은 연성이 큰 경사진 스트랩이 주 횡 저항 시스템으로 작용하며, 중력 저항 부재인 기둥은 'ㄷ'자 형태의 스터드를 용접한 것으로서 비콤펙트단면을 가지며 국부 좌굴로 인해 자신의 최대 모멘트 강도를 발휘하지 못한다. 진동대 실험을 통하여 스트랩이 대부분의 에너지를 인장측만으로 핀칭 형태를 가지며 소산하며, 기둥은 국부 좌굴로 인해 기둥은 자신의 최대 강도를 발휘하지 못하나 전체 에너지 소산에 공헌을 하고 있음을 보여주었다. 본 연구 결과, 비록 구조물이 단순할지라도 지진 시 실제 비선형 거동을 진동대 실험으로 조사하는 것은 매우 중요한 과정임을 확인하였다.

Tension Leg Platform의 동적응답에 관한 연구 (Dynamic Response of Tension Leg Platform)

  • 여운광;편종근
    • 대한토목학회논문집
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    • 제5권1호
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    • pp.21-30
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    • 1985
  • Tension Leg Platform (TLP)이란 평행위치로부터 일정 범위내에서 움직임으로 인하여 외 력의 효과를 완화시키는 compliant 구조물인 동시에, 기인장력을 받고 있는 연직 anchor cable 이 있으므로 부력이 자중을 초과하게 되는 안정한 platform 이다. 일반적으로 부체는 해상조건이 험할수록, 그리고 수심이 깊어질수록 동요가 심해지는데 TLP는 기인장 cable로 인하여 심해에서도 비교적 동요가 작아서 최근 대수심구조물의 총아로 각광받고 있다. 일찌기 Paulling 등이 TLP 거동의 예측을 위하여 수정된 Morison 방정식을 사용하는 선형동유체력합성방법을 발표하였다. 그러나 만일 TLP의 각 부재가 Morison 방정식의 가정이 성립할 수 없을 정도로 크다면 새로운 해석이 필요하다 하겠다. 일본의 Tanaka는 이런 경우에 McCamy-Fuchs 이론의 결과치를 이용하였으나, 완전한 해석이라기 보다는 일종의 간편법이라 하겠다. 본고에서는 큰 배수용적을 가진 연직부체가 있고, 이론적 해석의 결과를 검토해 볼 수 있는 수리모형 실험 결과가 있는 Deep Oil Technology (DOT) 회사의 TLP를 대상으로 하였다. 이 TLP는 부력을 전담하고 있는 연직축대칭 원통과 이들을 연결하고 있는 세부재로 이루어져 있어 축대칭부분에는 축대칭 Green 함수를 사용하여 동유체력을 구하고 세부재는 종래의 수정된 Morison 방정식의 항력항을 선형화하여 동유체력을 구하였다. 그리하여 부재의 각 미소부분에서 구한 힘들을 TLP의 중심에 원점을 둔 좌표계로 옮겨 동적응답을 구한 것이다. 본 해석에서 부재 상호간의 작용은 무시하였으며 단지 부재간의 거리효과만 고려하였다. 따라서 사용된 좌표계는 전체 (Global) 좌표계, 지점 (Local) 좌표계 및 파랑 (Wave) 좌표계 등이었고 각 좌표계간의 변환식이 필요하였다. 전체적인 해석정도는 선형이론으므로 케이블의 강성도 역시 선형적으로 구하였으며, 앞서 언급했다시피 Morison 방정식의 비선형항인 항력항은 Fourier 해석으로 선형화 하였다. 이러한 Fourier 해석은 잘 알려져 있는 Lorentz 원리와 같다고 볼 수 있다. 세부재의 경우 접선력은 무시하였고 수입자의 운동에 의한 부채에 대한 수직력만 고려하였다. 여기서 파랑좌표계에서 지점좌표계로의 좌표변환이 주의를 요하고 있다. 이제 이렇게 구한 각 힘들을 전체좌표 계에서 6개의 자유도별로 운동방정식에 대입하면 각 자유도별 동적응답이 구하여지는 것이다. DOT TLP의 Surge mode에 대한 동적응답을 실험치와 비교하여 본 결과, 세부재에 대한 고려를 뺄 수 없음을 알 수 있었다. 이는 연직축대칭 부체의 크기가 그리 크지 않으므로 인한 것이며, TLP의 원형의 경우에는 보다 더 관성력이 지배적일 것으로 사료된다.

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