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    Seismic performance evaluation of deficient steel moment-resisting frames retrofitted by vertical link elements

    , Article Structures ; Volume 26 , August , 2020 , Pages 724-736 Mohsenian, V ; Filizadeh, R ; Ozdemir, Z ; Hajirasouliha, I ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    In many earthquake prone regions in developing countries, substandard steel moment resisting frame (SMRF) systems pose a profound danger to people and economy in the case of a strong seismic event. Eccentric bracing systems with replaceable vertical links can be utilized as an efficient and practical seismic retrofitting technique to reduce future earthquake damages to such structures. This paper aims, for the first time, to demonstrate the efficiency of eccentric bracing systems with vertical links as a seismic retrofitting technique for the SMRF structures with WCSB and to develop fragility curves for such structures. To achieve this aim, first, the effect of the vertical links on the... 

    VM link element for consideration of shear-flexural interaction

    , Article 10th East Asia-Pacific Conference on Structural Engineering and Construction, EASEC 2010, Bangkok, 3 August 2006 through 5 August 2006 ; Volume 2 , 2006 , Pages 149-154 Erfani, S ; Kazemi, M. T ; Sharif University of Technology
    2006
    Abstract
    A mixed shear-flexural beam element, which is called VM link element, is introduced. Dissimilar multi-surfaces in the shear-flexural space and non zero off diagonal components in flexibility matrixes are used for more realistic modeling of inelastic shear-flexural interaction. For preventing of intersecting among the yield surfaces, a new non-associated flow rule and a new kinematic hardening rule are developed. Capability of this element is examined for shear links used in eccentrically braced frames analysis for cyclic loading. It is shown that, the proposed link element is in a good agreement with the existing test results  

    On the optimal shape of new ductile knee bracing

    , Article Second International Conference on High Performance Structures and Materials: HIGH PERFORMANCE STRUCTURES AND MATERIALS II, Ancona, 31 May 2004 through 2 June 2004 ; Volume 7 , 2004 , Pages 599-608 ; 14690071 (ISSN) Mofid, M ; Lotfollahi, M ; Sharif University of Technology
    2004
    Abstract
    In this paper a particular structural bracing system, called the Chevron Knee Bracing (CKB), is introduced. In this framing system, a special form of diagonal braces that are connected to knee elements instead of beam-column joints is investigated. The braces provide required stiffness during moderate earthquakes, while the knee elements yield in flexure or shear to dissipate energy during a severe earthquake, whereby buckling of the braces or yielding of the main structure is prevented. First, elastic analysis is applied to the new system and a suitable shape and angle for the knee and the brace elements is proposed, using new and practical parameters. Then, by developing a nonlinear... 

    Performance of BRBF System and Comparing it with the OCBF System

    , M.Sc. Thesis Sharif University of Technology Talebi, Elnaz (Author) ; Kazemi, Mohammad Taghi (Supervisor)
    Abstract
    Buckling-Restrained Braced Frame system (BRBFs) are a new type of steel seismic-load-resisting system that has found use in several countries because of its efficiency and its promise of seismic performance far superior to that of conventional braced frames. The system is addressed in the 2005 edition of the AISC Seismic Provisions for Structural Steel Buildings, also a set of design provisions has been developed by NEHRP. This thesis illustrates the seismic design of buckling-restrained braced frames and compares its seismic performance with the performance of ordinary bracing systems. This work investigates the advantage and disadvantages of this new type of seismic resisting. By having... 

    Investigating the Behaviour of A Type of Energy Absorbing Bracing System

    , M.Sc. Thesis Sharif University of Technology Farahani, Hossein (Author) ; Khonsari, Vahid (Supervisor)

    On the plastic analysis of concentrically braced frames with shear panel, obtaining predetermined collapse mechanism

    , Article Structural Design of Tall and Special Buildings ; Volume 24, Issue 5 , 2015 , Pages 366-395 ; 15417794 (ISSN) Akbari Hamed, A ; Mofid, M ; Sharif University of Technology
    Abstract
    Summary Conventional design methods do not ensure that the desired collapse mechanism is developed at target displacement. In this paper, a case study is presented to analyze concentrically braced frames with steel shear panel (CBFSP). Also, extensive investigation in the failure modes are made, to have the global yielding mode at the final state. For this purpose, each of one-story, three-story, six-story and nine-story CBFSP models were decomposed into three parts where the members' closed-form equations of internal forces were identified and superimposed. On the basis of the kinematic theorem of plastic collapse, the possible mechanisms and the related energy equations were defined to... 

    Nonlinear seismic behavior of RC frames with RC braces

    , Article Asian Journal of Civil Engineering ; Volume 9, Issue 6 , 2008 , Pages 577-592 ; 15630854 (ISSN) Khaloo, A. R ; Mohseni, M. M ; Sharif University of Technology
    2008
    Abstract
    Braced frames, besides other structural systems, such as moment resisting frames or shear walls, have been an effective and valuable method to enhance structures against lateral loads. In wind or seismic excitations, inclined elements react as truss web elements which would bear compression or tension stresses. This axial reaction results in less moments and therefore smaller sizes in beam and column sections with respect to members in similar moment resisting frame. However, low tensile strength of concrete material, made it a challenge to use in inclined members. In practice, there have been various methods to consider this defect such as disengagement of brace elements in tension or... 

    Rehabilitation of Reinforced Concrete Frames using Ductile Bracing Systems

    , M.Sc. Thesis Sharif University of Technology Hadei, Mehdi (Author) ; Kazemi, Mohammad Taghi (Supervisor)
    Abstract
    In this thesis, the nonlinear seismic behavior of typical Iranian building is evaluated. The evaluation results indicated that these building, which were designed, based on first edition of 2800 standard and before, due to ductility and stiffness deficiency, don’t satisfy the 3th edition of 2800 standard and FEMA356 requirements, then retrofit of the most old structures is recommended. Selected samples include ordinary moment resistant concrete frames. The effectiveness of three retrofit schemes, concentric steel bracing (CBF), Eccentric steel bracing (EBF) and buckling restrained bracing, are studied and compared. The results of investigation indicated that although CBF retrofit scheme is... 

    Seismic Performance Assessment of Concentrically Braced Frames

    , M.Sc. Thesis Sharif University of Technology Yasha, Saman (Author) ; Kazemi, Mohammad Taghi (Supervisor)
    Abstract
    This thesis investigates the performance of concentrically braced frames through numerical simulation approaches. During a moderate to severe earthquake, the bracing members and their connections are expected to undergo significant inelastic deformations into the post-buckling range. Recently, provisions for special concentrically braced frames (SCBFs) were developed to exhibit stable and ductile behavior in the event of a major earthquake. Special Concentrically Braced Frames (SCBFs) are distinguished from Ordinary Braced Frames in that they possess improved post-buckling capacity. Performance based evaluation of SCBF system as well as ordinary concentrically braced frame (OCBF) system... 

    Investigating the Effects of the Length of Yielding Area In Buckling-Restrained Braces

    , M.Sc. Thesis Sharif University of Technology Khademi, Ziba (Author) ; Mofid, Masood (Supervisor)
    Abstract
    Structures having buckling restrained braces (BRB) as earthquake resisting system, have the qualities of high lateral stiffness and the ability to damp the energy coming from earthquake, at the same time.In addition to new structures, these braces can also be used in rehabilitating old steel or concrete buildings. By using this kind of resisting system, smaller sections are needed in design of buildings and also the cost of repair after earthquake can be highly reduced.The most important advantage of buckling restrained braces is their equal behavior and capacity in both tention and compression, that causes high energy absorption as a result of symmetric and stable cyclic behavior. All these... 

    Progressive Collapse Due to Sudden Column Removal in Steel Moment and Eccentric Braced Frames

    , M.Sc. Thesis Sharif University of Technology Moosadoost, Ali Asghar (Author) ; Khaloo, Alireza (Supervisor) ; Kazemi, Mohammad Taghi (Co-Supervisor)
    Abstract
    With increasing population and lack of habitable spaces, the building heights increased in cities around the world. Placing components of a structure in tandem may cause a permanent failure of the members due to strength reduction. During recent years, this kind of failure occurred in different places of the world, and is called progressive collapse. There are some various samples of the progressive collapse which all are good samples of failures such as building failure in Ronan Point in the UK, Twin Towers or the world trade center in NY, and Pentagon building. According to these issues, different institutions codified guidelines and codes in this field such as Department of Defense as DoD... 

    The effect of gusset plate in moment-rotation behavior of double-web angle connection in braced frames

    , Article Scientia Iranica ; Volume 24, Issue 6 , 2017 , Pages 2712-2725 ; 10263098 (ISSN) Mofid, M ; Wayghan, A. R. T ; Sharif University of Technology
    Abstract
    Double-web angle connection is one of the most rudimentary connections in simple structural systems such as braced frame system. It is essentially presumed in conventional designs that double-web angle connection behaves as a hinge connection. However, in braced frames, due to existence of braces in some bays, in specified locations where gusset plates of brace are placed with beam-to-column connection in one joint, this assumption may not be accurate. This is due to the restraining of the beam from rotation by gusset plates that are placed either on the top and bottom of the beam or only on one side. In such cases, the simple beam-to-column connection may be transformed into a semi-hinge or... 

    Application of aluminium alloys in a structural joint with great shear deformation capacity

    , Article 25TH International Conference on Offshore Mechanics and Arctic Engineering, OMAE 2006, Hamburg, 4 June 2006 through 9 June 2006 ; Volume 2006 , 2006 ; 0791837777 (ISBN); 9780791837771 (ISBN) Khonsari, S. V ; England, G. L ; Ghahramaninejhad Gharehlar, M ; Sharif University of Technology
    2006
    Abstract
    A new structural connection, already discussed in previous papers, with very special and, in some respects, unique, features, such as having very high rotational capacity in bending, and high shear deformation capacity under shear, hence high energy-dissipation capacity under either type of loading, was developed. Specimens of either variant of this joint, fabricated with steel components, were already tested under bending and shear in a mainly separate manner. However, due to the particular shape of the connection, and its ability to be extruded in aluminium, in the most recent work the behaviour of its aluminium specimens under shear loading was studied. A series of specimens fabricated... 

    An investigation on the accuracy of pushover analysis for estimating the seismic deformation of braced steel frames

    , Article Journal of Constructional Steel Research ; Volume 62, Issue 4 , 2006 , Pages 343-351 ; 0143974X (ISSN) Moghaddam, H ; Hajirasouliha, I ; Sharif University of Technology
    Elsevier BV  2006
    Abstract
    This paper investigates the potentialities of the pushover analysis to estimate the seismic deformation demands of concentrically braced steel frames. Reliability of the pushover analysis has been verified by conducting nonlinear dynamic analysis on 5, 10 and 15 story frames subjected to 15 synthetic earthquake records representing a design spectrum. It is shown that pushover analysis with predetermined lateral load pattern provides questionable estimates of inter-story drift. To overcome this inadequacy, a simplified analytical model for seismic response prediction of concentrically braced frames is proposed. In this approach, a multistory frame is reduced to an equivalent shear-building... 

    Improving the performance of concentrically braced frame utilizing an innovative shear damper

    , Article Journal of Constructional Steel Research ; Volume 182 , 2021 ; 0143974X (ISSN) Bakhshayesh, Y ; Shayanfar, M ; Ghamari, A ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    Concentrically braced structures are one of the most common resistant systems in steel structures due to their high stiffness and lateral strength. However, when these structures are subjected to moderate and severe earthquakes, their compression member begins to buckle. Also, buckling of compression members in Concentrically Braced Frames (CBFs) decreases ductility and degradation of the hysteresis curve. Numerous studies have been performed to improve the behavior of CBFs. Using steel dampers is considered one of the appropriate ways to improve the behavior of CBFs. Although steel dampers improve the hysteretic behavior of the CBFs, they impose additional costs on structures. Therefore, in... 

    Optimum seismic design of concentrically braced steel frames: Concepts and design procedures

    , Article Journal of Constructional Steel Research ; Volume 61, Issue 2 , 2005 , Pages 151-166 ; 0143974X (ISSN) Moghaddam, H ; Hajirasouliha, I ; Doostan, A ; Sharif University of Technology
    Elsevier BV  2005
    Abstract
    A methodology is presented for optimization of the dynamic response of concentrically braced steel frames subjected to seismic excitation, based on the concept of uniform distribution of deformation. In order to obtain the optimum distribution of structural properties, an iterative optimization procedure has been adopted. In this approach, the structural properties are modified so that inefficient material is gradually shifted from strong to weak areas of a structure. This process is continued until a state of uniform deformation is achieved. It is shown that the seismic performance of such a structure is optimal, and behaves generally better than those designed by conventional methods. In... 

    Development of fragility curves for existing residential steel buildings with concentrically braced frames

    , Article Scientia Iranica ; Volume 26, Issue 4A , 2019 , Pages 2212-2228 ; 10263098 (ISSN) Bakhshi, A ; Soltanieh, H ; Sharif University of Technology
    Sharif University of Technology  2019
    Abstract
    The objective of this study is to develop analytical fragility curves for an ensemble of existing 3-to 6-story residential steel buildings with concentrically braced frames in 2 directions, designed during 2010 to 2015 in Qazvin, Iran. The buildings were modeled three-dimensionally in OpenSees considering braces buckling behavior. Maximum Inter-story Drift Ratio (.MIDR) and spectral acceleration at. fundamental period of the structure with 5% viscous damping (Sa(7,5%)) were considered as Damage Index (DI) and Intensity Measure (/M), respectively. Limit states were specified as discussed in FEMA 356. Ground motion record selection and uncertainties assessment were carried out based on FEMA... 

    Development of fragility curves for existing residential steel buildings with concentrically braced frames

    , Article Scientia Iranica ; Volume 26, Issue 4A , 2019 , Pages 2212-2228 ; 10263098 (ISSN) Bakhshi, A ; Soltanieh, H ; Sharif University of Technology
    Sharif University of Technology  2019
    Abstract
    The objective of this study is to develop analytical fragility curves for an ensemble of existing 3-to 6-story residential steel buildings with concentrically braced frames in 2 directions, designed during 2010 to 2015 in Qazvin, Iran. The buildings were modeled three-dimensionally in OpenSees considering braces buckling behavior. Maximum Inter-story Drift Ratio (.MIDR) and spectral acceleration at. fundamental period of the structure with 5% viscous damping (Sa(7,5%)) were considered as Damage Index (DI) and Intensity Measure (/M), respectively. Limit states were specified as discussed in FEMA 356. Ground motion record selection and uncertainties assessment were carried out based on FEMA... 

    Optimization of Performance of the RBS Semi-Active Brace in Steel Frame with Case Study on the Soft Story

    , M.Sc. Thesis Sharif University of Technology Haeri, Amir Hossein (Author) ; Golafshani, Ali Akbar (Supervisor)
    Abstract
    One of the most common failure modes of structures in earthquakes is soft story failure which causes by discontinuity of lateral force resisting elements like braces. so the ground floor acts as a soft floor. In this case columns are imposed to large deformation and plastic hinges are formed at top and bottom of the columns. This case is named as story mechanism (severe drift of the story). In most of this case building collapsed or going to collapse. To resolve this problem, different solutions are presented. One of the strategies under section (2-10) 2800 code is increase of designed load in columns of the soft floor. This measure cause to Significant increases in the sections of the... 

    Investigating the Seismic Behaviour of Split-Level Building Structures

    , M.Sc. Thesis Sharif University of Technology Abdoli, Masoud (Author) ; Khonsari, Vahid (Supervisor)
    Abstract
    Observations made after previous earthquakes have shown the crucial role of irregularities in initiating damage in buildings with irregularity, either in Plan or in Elevation. Since in existing Building Codes, there is no provision for the distribution of the Equivalent Static Loads for such buildings, designers have no option but to resort to Dynamic Analysis. In this work, the seismic behaviour of a group of two-dimensional steel building structures with irregularity in elevation, namely Split-Level buildings, was studied. The studied structures consist of a series of 5- and 15-storey frames having two parts with splitting distance of 150 cm. Both, moment-resisting and braced frames were...