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Analysis and design recommendations for diagonally stiffened steel plate shear walls
, Article Thin-Walled Structures ; Volume 103 , 2016 , Pages 72-80 ; 02638231 (ISSN) ; Joghataie, A ; K. A. Attari, N ; Sharif University of Technology
Elsevier Ltd
2016
Abstract
This paper presents a comparison of analytical and experimental results of an investigation on the diagonally stiffened steel plate shear walls (SPWs). Experimental studies were carried out on three 1/3-scaled, one story single bay shear walls. The first specimen was a control specimen which was unstiffened and the other two specimens were diagonally stiffened using different stiffener configurations. Finite-element models of full SPWs are developed using finite element model. The results are compared with experimental results to investigate the influence of stiffeners on the behavior of the specimens. Good agreement between analytical and experimental models is found in point of failure...
Modal spectra combination method for pushover analysis of special steel moment resisting frames
, Article International Journal of Civil Engineering ; Volume 10, Issue 4 , 2012 , Pages 245-252 ; 17350522 (ISSN) ; Mirjalili, M. R ; Attari, N. K. A ; Sharif University of Technology
2012
Abstract
The nonlinear static procedures (NSPs) proposed by design codes do not lead to reliable results especially for tall buildings. They generally provide inconsistent estimates of inelastic seismic demands, especially for the top floors due to their inabilities in considering the higher modes effects. In this paper, a new enhanced pushover procedure is proposed which is based on the envelope of the structural responses resulting from two separate pushover analyses as a combination rule. Also, the suggested pushover analyses are performed using a newly proposed modal load pattern, i.e., the Modal Spectra Combination (MSC), and the ASCE41-06 required first mode load pattern. The MSC load pattern...
Cyclic behaviour of interior reinforced concrete beam-column connection with self-consolidating concrete
, Article Structural Concrete ; Volume 17, Issue 4 , 2016 , Pages 618-629 ; 14644177 (ISSN) ; Kazemi, M. T ; Attari, N. K. A ; Sharif University of Technology
Wiley-Blackwell
2016
Abstract
A significant amount of research on self-consolidating concrete (SCC) technology has been devoted to evaluating the suitability of the material for its use in structural applications. However, more research is required to confirm the adequacy of SCC structural members for resisting gravity and seismic loads. This study focuses on the experimental investigation of the seismic performance of interior reinforced concrete beam-column connections with SCC. Four beam-column connection specimens, three with SCC and one with normally vibrated concrete (NC), were designed for this experimental study. Factors such as concrete type (SCC or NC) and axial load ratio (0, 7.5 and 15 % of column section...
Using the fluid/structure interaction to mitigate the seismic response of structures equiped with cylindrical liquid tanks subjected to near field earthquakes
, Article 11th East Asia-Pacific Conference on Structural Engineering and Construction, EASEC-11, Taipei, 19 November 2008 through 21 November 2008 ; 2008 ; Rofooei, F. R ; Sharif University of Technology
2008
Abstract
Seismic response of a Single Degree of Freedom (SDOF) system containing a rigid circular cylindrical liquid tank under the earthquake excitations is considered in the presence of fluid/structure interaction. The governing differential equations of the system is derived considering the first three liquid sloshing modes (1, 1), (0, 1) and (2, 1) under different strong ground motions. The dynamic response of the system is investigated in the neighborhood of 1:1 and 1:2 internal resonances between the SDOF system and the liquid sloshing modes. These internal resonances take place by tuning the frequency of the first asymmetric sloshing mode of the liquid to the fundamental frequency of the SDOF...
Experimental comparison of cyclic behavior of RC columns strengthened with TRC and FRP
, Article Bulletin of Earthquake Engineering ; Volume 19, Issue 7 , 2021 , Pages 2941-2970 ; 1570761X (ISSN) ; Zargaran, M ; Rahimzadeh Rofooei, F ; Attari, N. K. A ; Sharif University of Technology
Springer Science and Business Media B.V
2021
Abstract
Seven half-scale reinforced concrete (RC) columns with supporting beam were experimentally studied under combined axial and lateral cyclic loading. The specimens were categorized in two groups based on reinforcement ratios. Three specimens were strengthened with carbon fiber reinforced polymer (CFRP) and glass fiber reinforced polymer (GFRP) sheets. Other specimens were strengthened using a high strength mortar reinforced with textile mesh (textile reinforced concrete (TRC)). Strengthening of specimens were carried out using a vertical layer and a horizontal layer of FRP sheet or two vertical and two horizontal layers of textile meshes for TRC specimens. Since the weight of each layer of...
Investigation of CFS shear walls with one and two-sided steel sheeting
, Article Journal of Constructional Steel Research ; Volume 122 , 2016 , Pages 292-307 ; 0143974X (ISSN) ; Alizadeh, S ; Hadidi, S ; Sharif University of Technology
Elsevier Ltd
2016
Abstract
In this study six Cold-Formed Steel shear wall (CFS) with one and two side steel sheeting are tested under reversed cyclic loading. Besides, thirteen numerical models are simulated, using nonlinear finite element method, and analyzed under monotonic pushover loading. The studied parameters are the comparison of one and two side steel sheeting, the nominal thickness of steel sheet and boundary elements, and height to width aspect ratios of the wall. The performance of tested specimens is investigated in terms of lateral load-story drift response, failure modes and ultimate strength of shear walls. Based on AISI S213 the available strength of two-sided steel-sheathed walls is cumulative but...
Embedded SI partial transmit sequence with improved bit error rate
, Article 2nd International Conference on Electrical Engineering, ICEE, Lahore, 25 March 2008 through 26 March 2008 ; 2008 ; 9781424422937 (ISBN) ; Ahmadian Attari, M ; Reisi, N
2008
Abstract
OFDM is a multicarrier modulation scheme with high bandwidth efficiency and robustness to multipath environment used in high data rate transmission. However, a drawback of this system is the large Peak-to-Average-Power Ratio (PAR) of the transmit signal which makes its straightforward implementation quite costly. PAR in an OFDM based system can be reduced significantly by PTS method for which data recovery requires side information (SI) about the phases used at transmitter. Sending SI, not only reduces the rate, but also increases BER, for any error in SI detection can damage a large amount of transmitted information. By introducing a new phase set, we propose a PTS based method for MPSK...
Application of the transmission line matrix method to the shielding effectiveness analysis of metallic enclosures
, Article Scientia Iranica ; Volume 9, Issue 4 , 2002 , Pages 364-370 ; 10263098 (ISSN) ; Barkeshli, K ; Ndagijimana, F ; Dansou, J ; Sharif University of Technology
Sharif University of Technology
2002
Abstract
In this paper, the Transmission Line Matrix (TLM) method is used for the electromagnetic characterization of the Shielding Effectiveness (SE) of rectangular enclosures with apertures of arbitrary shape. Applying suitable Hanning windows in the time domain drastically reduces the number of time steps required to model the coupling behavior of resonant enclosures. Comparison of the numerical results with available measured data shows that the method is an efficient and accurate technique to evaluate the shielding effectiveness of metallic shields in the time domain and over a wide frequency range. The proposed method can be used as an intermediate design tool for the evaluation of the effects...
An efficient analysis of high frequency interference phenomena using a new implementation of the transmission line matrix method
, Article IEEE Antennas and Propagation Society, AP-S International Symposium (Digest) ; Volume 3 , 2002 , Pages 306-309 ; 15223965 (ISSN) ; Dansout, J ; Attari, A. R ; Barkeshli, K ; Sharif University of Technology
2002
Abstract
An efficient hybrid method for the analysis of the interference phenomenon in high frequency communication circuits is presented. This method is based on the Transmission Line Matrix (TLM) method augmented with a time-domain integral equation formulation to account for the radiation of equivalent sources on boundary surfaces. As such, wide band effects are easily and accurately modeled since its formulation is in the time domain
Application of the transmission line matrix method to the calculation of the shielding effectiveness for metallic enclosures
, Article IEEE Antennas and Propagation Society, AP-S International Symposium (Digest) ; Volume 3 , 2002 , Pages 302-305 ; 15223965 (ISSN) ; Barkeshli, K ; Ndagijimana, F ; Dansou, J ; Sharif University of Technology
2002
Abstract
An efficient method for the analysis fo the shielding effectiveness in high frequency communication circuits based on the Transmission Line Matrix (TLM) method is presented. Since the formulation is in the time domain, wide band effects are easily and accurately modeled. Through comparisons, results obtained from that proposed numerical method with those obtained from measurement show that the TLM method gives more accurate results than other methods reported
Adaptive pushover analysis
, Article 10th East Asia-Pacific Conference on Structural Engineering and Construction, EASEC 2010, Bangkok, 3 August 2006 through 5 August 2006 ; Volume 3 , 2006 , Pages 453-458 ; 9748257231 (ISBN); 9789748257235 (ISBN) ; Rasekh, A ; Shodja, A. H ; Khajeh Ahmad Attari, N ; Sharif University of Technology
2006
Abstract
Nonlinear static methods are simplified procedures in which the problem of evaluating the maximum expected response of a MDOF system for a specified level of earthquake motion is replaced by response evaluation of its equivalent SDOF system. The common features of these procedures are the use of pushover analysis to characterize the structural system. In pushover analysis both the force distribution and the target displacement are based on the assumptions that the response is controlled by the fundamental mode and that the mode shape remains unchanged after the structure yields. Therefore the invariant force distributions does not account for the change of load patterns caused by the plastic...
Hydrothermal synthesis of TiO2 nanorod for using as an electron transport material in perovskite solar cells
, Article 6th International Biennial Conference on UltraFine Grained and Nanostructured Materials, UFGNSM 2017, 12 November 2017 through 13 November 2017 ; Volume 1920 , 2018 ; 0094243X (ISSN); 9780735416123 (ISBN) ; Nemati, A ; Attari Navab, A ; Abad, H. M. M ; Sharif University of Technology
American Institute of Physics Inc
2018
Abstract
Now days titanium dioxide is used in different applications because of its good electrical properties, optical stability and cost savings. According to their different nanoscale TiO2 structures, it has been determined that 1D structures such as nanorods, nanotubes and nanowires has better properties than the other structures, including enhancing electron transport and create an offered directional way of transporting of the electrons. However, the grain boundaries in polycrystalline TiO2 nanowires or nanotubes cause electron scattering or trapping, which limit their application in optoelectronics. From these TiO2 structures, TiO2 nanorods have special importance because of less defects...
Static and dynamic pushover analysis of steel moment resisting frames
, Article 10th East Asia-Pacific Conference on Structural Engineering and Construction, EASEC 2010, Bangkok, 3 August 2006 through 5 August 2006 ; Volume 3 , 2006 , Pages 459-464 ; 9748257231 (ISBN); 9789748257235 (ISBN) ; Rahimzadeh Rofooei, F ; Khajeh Ahmad Attari, N ; Shodja, A. H ; Sharif University of Technology
2006
Abstract
Pushover analysis is a simplified nonlinear analysis technique that can be used to estimate the dynamic demands imposed on a structure under earthquake excitations. One of the first steps taken in this approximate solution is to assess the maximum roof displacement, known as target displacement, using the base shear versus roof displacement diagram. That could be done by the socalled dynamic pushover analysis, i.e. a dynamic time history analysis of an equivalent single degree of freedom model of the original system, as well as other available approximate static methods. In this paper, a number of load patterns, including a new approach, are considered to construct the related pushover...
A hybrid implementation of the TLM method for the analysis of high frequency interference
, Article 2003 Asia-Pacific Conference on Applied Electromagnetics, APACE 2003, 12 August 2003 through 14 August 2003 ; 2003 , Pages 124-127 ; 0780381297 (ISBN); 9780780381292 (ISBN) ; Barkeshli, K ; Ndagijimana, F ; Dansou, J ; Sharif University of Technology
Institute of Electrical and Electronics Engineers Inc
2003
Abstract
An efficient hybrid method is presented for the analysis of the interference phenomenon in high frequency communication circuits. The method is based on the transmission line matrix (TLM) method, augmented with a time domain integral formulation using the free space Green's function to account for the radiation of equivalent sources on boundary surfaces. The method is highly effective in reducing the dispersion effects in the TLM method and drastically reduces its computational intensity. © 2003 IEEE
Vibration control through the robust nonlinear absorber with negative stiffness and internal resonance creation
, Article JVC/Journal of Vibration and Control ; 2022 ; 10775463 (ISSN) ; Khajeh Ahmad Attari, N ; Rahimzadeh Rofooei, F ; Sharif University of Technology
SAGE Publications Inc
2022
Abstract
In this study, a nonlinear absorber that works with a negative stiffness mechanism is suggested to mitigate vibration, and its effect on the reduction of vibration is investigated. The negative stiffness, which is inherently nonlinear, creates internal resonance; therefore, the vibration energy can be transmitted from low-frequency to high-frequency vibrating modes, causing vibration suppression. The nonlinear absorber is added to the primary nonlinear system, and when the main system is subjected to external resonance due to harmonic excitation, the negative stiffness parameter of absorber is so adjusted that autoparametric resonance occurs and vibration is reduced. First, the mathematical...
Vibration control through the robust nonlinear absorber with negative stiffness and internal resonance creation
, Article JVC/Journal of Vibration and Control ; Volume 29, Issue 5-6 , 2023 , Pages 1254-1267 ; 10775463 (ISSN) ; Khajeh Ahmad Attari, N ; Rahimzadeh Rofooei, F ; Sharif University of Technology
SAGE Publications Inc
2023
Abstract
In this study, a nonlinear absorber that works with a negative stiffness mechanism is suggested to mitigate vibration, and its effect on the reduction of vibration is investigated. The negative stiffness, which is inherently nonlinear, creates internal resonance; therefore, the vibration energy can be transmitted from low-frequency to high-frequency vibrating modes, causing vibration suppression. The nonlinear absorber is added to the primary nonlinear system, and when the main system is subjected to external resonance due to harmonic excitation, the negative stiffness parameter of absorber is so adjusted that autoparametric resonance occurs and vibration is reduced. First, the mathematical...
Buckling behavior of the anchored steel tanks under horizontal and vertical ground motions using static pushover and incremental dynamic analyses
, Article Thin-Walled Structures ; Volume 112 , 2017 , Pages 173-183 ; 02638231 (ISSN) ; Rahimzadeh Rofooei, F ; Khajeh Ahmad Attari, N ; Sharif University of Technology
Elsevier Ltd
2017
Abstract
This paper investigates the static and dynamic buckling of an anchored cylindrical steel tank subjected to horizontal and vertical ground acceleration. The buckling capacity of the tank is estimated using static pushover (SPO) and incremental dynamic analyses (IDA). Appropriate load patterns due to the horizontal and vertical components of ground excitations are utilized for SPO analyses. The buckling capacity curves and critical buckling loads computed using SPO analyses are compared to those obtained from IDA. A proper vertical to horizontal acceleration ratio (av/ah) for SPO analysis is proposed that leads to good agreement between SPO and IDA results. © 2017
Performance of buried gas distribution pipelines subjected to reverse fault movement
, Article Journal of Earthquake Engineering ; Volume 22, Issue 6 , 2018 , Pages 1068-1091 ; 13632469 (ISSN) ; Rahimzadeh Rofooei, F ; Khajeh Ahmad Attari, N ; Sharif University of Technology
Taylor and Francis Ltd
2018
Abstract
In the current work, the results of full-scale laboratory testing of 114.3 and 168.3 mm in diameter steel gas distribution pipes buried at different depths and in two different soil types under a reverse fault offset of 0.6 m are presented and discussed in terms of longitudinal strain distribution, pipe deformation, and cross-section distortion. Results show that the pipe deformation and accordingly its failure mode, and soil failure planes change with increasing burial depth. It was also found that severe cross-section distortion occurs at about 2.3 times the strain limit for onset of wrinkling suggested by various guidelines. © 2018, © 2018 Taylor & Francis Group, LLC
Performance of buried gas distribution pipelines subjected to reverse fault movement
, Article Journal of Earthquake Engineering ; 2017 , Pages 1-24 ; 13632469 (ISSN) ; Rahimzadeh Rofooei, F ; Khajeh Ahmad Attari, N ; Sharif University of Technology
2017
Abstract
In the current work, the results of full-scale laboratory testing of 114.3 and 168.3 mm in diameter steel gas distribution pipes buried at different depths and in two different soil types under a reverse fault offset of 0.6 m are presented and discussed in terms of longitudinal strain distribution, pipe deformation, and cross-section distortion. Results show that the pipe deformation and accordingly its failure mode, and soil failure planes change with increasing burial depth. It was also found that severe cross-section distortion occurs at about 2.3 times the strain limit for onset of wrinkling suggested by various guidelines. © 2017 Taylor & Francis Group, LLC
Coreless self-centering braces as retrofitting devices in steel structures
, Article Journal of Constructional Steel Research ; Volume 133 , 2017 , Pages 485-498 ; 0143974X (ISSN) ; Dolatshahi, K. M ; Mofid, M ; Sadeghi Eshkevari, S ; Sharif University of Technology
Elsevier Ltd
2017
Abstract
Conventional lateral resisting systems can provide sufficient strength and ductility for design based earthquakes, although the considerable residual deformation remaining in the plasticized regions undermines the resiliency of the structures. In order to resolve this problem, various self-centering systems have been proposed and tested in recent years, most of which are specified for new buildings and are not simply suitable for retrofitting applications. Moreover, the available self-centering systems are costly and complex to assemble, which can be considered as a serious barrier for practical application. To address these drawbacks, an innovative Core-Less Self-Centering (CLSC) brace is...