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    System Identification of Soil-Structure Systems through Seismic Signal Processing

    , Ph.D. Dissertation Sharif University of Technology Ghahhari, Farid (Author) ; Ghannad, Mohammad Ali (Supervisor)
    Abstract
    Dynamic characteristics of structures—viz., natural frequencies, damping ratios, and mode shapes—are central to earthquake resistant design (model validation) and health monitoring. For civil structures like buildings and bridges, these characteristics can be highly influenced by surrounding soil in addition to the super-structure’s properties and cannot be correctly estimated using numerical modeling. For example, soil’s flexibility decreases the natural frequencies of the system; and in most cases, soil provides additional damping due to material hysteresis and radiation. On account of this fact, system identification techniques must be applied to extract such information from field data,... 

    Risk-Based Seismic Design of Buildings in the Context of Cities,with Rigorous Uncertainty Modeling, and Proposing Efficient Computational Methods

    , Ph.D. Dissertation Sharif University of Technology Ghods, Babak (Author) ; Rahimzadeh Rofooei, Fayaz (Supervisor)
    Abstract
    The main goal of the current building design codes is to protect life safety, and generally, they do not directly address other societal, economic, etc., concerns regarding earthquakes. However, recent earthquakes around the world have shown that the effects of earthquakes' damages and losses can go beyond life-safety concerns. This observation has led many renowned scholars, organizations, and agencies to state the need to change the current design codes. In this regard, this thesis investigates the basis of setting the seismic design requirements and suggests a method in this respect. The study consists of two main parts. Part I (theory and design methodology) discusses some theoretical... 

    Nonlinear seismic assessment of steel moment frames using time-history, incremental dynamic, and endurance time analysis methods

    , Article Scientia Iranica ; Volume 20, Issue 3 , 2013 , Pages 431-444 ; 10263098 (ISSN) Hariri Ardebili, M. A ; Zarringhalam, Y ; Estekanchi, H. E ; Yahyai, M ; Sharif University of Technology
    2013
    Abstract
    A recent method in the seismic assessment of structures is Endurance Time Analysis (ETA). ETA is a time-history-based dynamic pushover procedure, in which structures are subjected to gradually intensifying acceleration functions called Endurance Time Acceleration Functions (ETAFs), and their performances are evaluated based on the equivalent intensity level that they can endure while satisfying required performance goals. In this paper, the accuracy of the ETA in the seismic assessment of steel moment resisting frames is compared with the Time History Analysis (THA) and Incremental Dynamic Analysis (IDA) methods. For this purpose, a set of mid-rise and high-rise frames were selected as a... 

    Alternative solution for kinematic interaction problem of soil-structure systems with embedded foundation

    , Article Structural Design of Tall and Special Buildings ; Volume 22, Issue 3 , 2013 , Pages 251-266 ; 15417794 (ISSN) Jahankhah, H ; Ghannad, M. A ; Rahmani, M. T ; Sharif University of Technology
    2013
    Abstract
    An effective procedure to incorporate kinematic interaction (KI) aspects in seismic analysis of soil-structures systems was presented. In this regard, first, the effect of KI on the structural response was investigated with special focus on the role of rocking component of foundation input motion (FIM). This was performed parametrically for a wide range of selected nondimensional parameters, which well define the introduced simplified soil-structure model. It was observed that ignoring the effect of rocking input motion may introduce errors, which can be on the unsafe side especially for slender structures with large embedment ratios. On the other hand, it was known that introducing the... 

    Pulvino and peripheral joint effects on static and seismic safety of concrete arch dams

    , Article Scientia Iranica ; Volume 20, Issue 6 , 2013 , Pages 1579-1594 ; 10263098 (ISSN) Hariri-Ardebili, M. A ; Mirzabozorg, H ; Ghaemian, M ; Sharif University of Technology
    Sharif University of Technology  2013
    Abstract
    One of the methods in limiting tensile stresses in arch dams and removing stress concentrations at the dam-foundation interface is setting the dam body on a concrete saddle called a Pulvino. In the present study, the effects of Pulvino and peripheral joints on the static behavior and seismic performance of arch dams are investigated. Dez Dam with a height of 203 m was selected as a case study and all contraction joints of the dam body were modeled using the discrete crack approach based on as-built drawings. Also, the surrounding rock was modeled as a mass-less medium tied to Pulvino. The dam-reservoirfoundation system was analyzed under static loads accounting for stage construction... 

    Equivalent linearization of non-linear soil-structure systems

    , Article Earthquake Engineering and Structural Dynamics ; Volume 41, Issue 13 , 2012 , Pages 1775-1792 ; 00988847 (ISSN) Esmaeilzadeh Seylabi, E ; Jahankhah, H ; Ghannad, M. A ; Sharif University of Technology
    Wiley  2012
    Abstract
    The concept of equivalent linearization, in which the actual nonlinear structure is replaced by an equivalent linear single-degree-of-freedom (SDOF) system, is extended for soil-structure systems in order to consider the simultaneous effects of soil-structure interaction (SSI) and inelastic behavior of the structure on equivalent linear parameters (ELP). This is carried out by searching over a two-dimensional equivalent period-equivalent damping space for the best pair, which can predict the earthquake response of the inelastic soil-structure system with sufficient accuracy. The super-structure is modeled as an elasto-plastic SDOF system whereas the soil beneath the structure is considered... 

    Seismic analysis of steel liquid storage tanks by Endurance Time method

    , Article Thin-Walled Structures ; Volume 50, Issue 1 , January , 2012 , Pages 14-23 ; 02638231 (ISSN) Estekanchi, H. E ; Alembagheri, M ; Sharif University of Technology
    Abstract
    Endurance Time (ET) method is a time history based method for seismic evaluation of structures using intensifying dynamic excitation as the loading function. In this paper, application of this method in the analysis of steel tanks has been investigated. A methodology for practical application of ET method in seismic assessment of storage tanks has been presented. This methodology has been applied in three-dimensional nonlinear analysis of a particular anchored steel tank using Finite Element method, and results are compared with conventional codified design procedures. Results of the analyses indicate reasonable accuracy of the proposed method in estimation of seismic responses of steel... 

    Seismic assessment of unanchored steel storage tanks by endurance time method

    , Article Earthquake Engineering and Engineering Vibration ; Volume 10, Issue 4 , 2011 , Pages 591-603 ; 16713664 (ISSN) Alembagheri, M ; Estekanchi, H. E ; Sharif University of Technology
    Abstract
    Liquid storage tanks are essential structures that are often located in residential and industrial areas; thus an assessment of their seismic performance is an important engineering issue. In this paper, the seismic response of unanchored steel liquid storage tanks is investigated using the endurance time (ET) dynamic analysis procedure and compared to responses obtained for anchored tanks under actual ground motions and intensifying ET records. In most cases, the results from ground motions are properly obtained with negligible differences using ET records. It is observed that uplifting of the tank base, which is closely related to the tank aspect ratio, has the greatest significance in the... 

    A study on seismic behavior of buried steel pipelines crossing active faults

    , Article Pipelines 2010: Climbing New Peaks to Infrastructure Reliability - Renew, Rehab, and Reinvest - Proc. of the Pipelines 2010 Conference ; Volume 386 , 2010 , Pages 1-12 ; 9780784411384 (ISBN) Bolvardi, V ; Bakhshi, A ; Sharif University of Technology
    2010
    Abstract
    Some known phenomena which cause a buried steel pipeline to fail are large ground motion and landside. Thus, many researchers have studied pipelines behavior against those phenomena with simplified assumptions in which effects of interaction between soil and pipe are not considered as well. In this study, the behavior of a pipe through Normal and Strike slip faults and contact between them are simulated close to reality with the powerful software of ABAQUS. The results from a parametric analysis on effects of those faults on buried steel pipelines show that increasing the angle between the pipe axis and fault plane (up to 90°), as well as the pipe thickness, and decreasing the burial depth... 

    Seismic assessment of steel frames with the endurance time method

    , Article Journal of Constructional Steel Research ; Volume 66, Issue 6 , 2010 , Pages 780-792 ; 0143974X (ISSN) Riahi, H. T ; Estekanchi, H. E ; Sharif University of Technology
    2010
    Abstract
    In the endurance time (ET) method, structures are subjected to a specially designed intensifying ground acceleration function and their performance is judged based on their response at various excitation levels. A range of equivalent intensities can be covered in a single numerical or experimental simulation, thus significantly reducing the computational demand as compared to full nonlinear response-history analyses. The applied excitation intensity at various times has been correlated with those of the scaled ground motions. Response spectra of seven ground motions on stiff soil were used to produce intensifying acceleration functions that at each time window produce a response spectrum... 

    Application of rigid-perfectly plastic spectra in improved seismic response assessment by endurance time method

    , Article Engineering Structures ; Volume 111 , 2016 , Pages 24-35 ; 01410296 (ISSN) Foyouzat, M. A ; Estekanchi, H. E ; Sharif University of Technology
    Elsevier Ltd 
    Abstract
    The Endurance Time (ET) method is a dynamic analysis procedure in which structures are subjected to predesigned accelerograms that increase their intensity in time. The main advantage of the ET method over the standard time-history analysis, which uses ground motions as excitation, is its reduced computational effort. In this paper, the nonlinear rigid-perfectly plastic (RPP) spectra, instead of linear elastic spectra, are used to correlate the seismic hazard return period and the time in the ET analysis. Several elastic-perfectly plastic SDOF systems as well as two three-story steel frames-namely a moment-resisting frame and a frame equipped with friction dampers-are analyzed. The response... 

    Topology optimization of wave barriers for mitigation of vertical component of seismic ground motions

    , Article Journal of Earthquake Engineering ; 2017 , Pages 1-25 ; 13632469 (ISSN) Dolatshahi, K. M ; Rezaie, A ; Rafiee Dehkharghani, R ; Sharif University of Technology
    Abstract
    Vertical vibration of structures due to strong near-field earthquakes could culminate in catastrophic consequences. In this article, the optimum patterns of two types of wave barriers with different geometry configurations, buried in the soil domain, are obtained in order to reduce the vertical acceleration of the top of a circular foundation placed on the soil surface. In order to look into the influence of various soil deposits, six soil deposits with diverse material properties and bedrock depths are examined. The topology optimization procedure for finding the optimum position of the wave barriers has been conducted using coupled finite element-genetic algorithm methodology. First, the... 

    On the evolutionary characteristics of the acceleration records generated from linear time-variant systems

    , Article Scientia Iranica ; Volume 24, Issue 6 , 2017 , Pages 2817-2831 ; 10263098 (ISSN) Waezi, Z ; Rofooei, F. R ; Sharif University of Technology
    Abstract
    This paper discusses the time-varying characteristics of the output signals resulted from Linear Time Variant (LTV) systems using level-crossing properties. These systems, used for generating synthetic records based on a target record, contain two identification processes: 1) amplitude modulating function; and 2) time-varying Impulse Response Function (IRF) parameters. To track the IRF parameters efficiently, the zerocrossing and positive minima/negative maxima cumulative curves are usually utilized as the measures of the instantaneous spectral power. Using spectral moments, analytic relations for zero-crossing and positive minima/negative maxima cumulative count are developed with respect... 

    Assessment of collapse modes in reinforced concrete frames considering record-to-record and modeling uncertainties

    , Article Scientia Iranica ; Volume 24, Issue 5 , 2017 , Pages 2213-2226 ; 10263098 (ISSN) Tafakori, E ; Pourzeynali, S ; Estekanchi, H. E ; Sharif University of Technology
    Abstract
    Dominant Collapse Mechanisms (DCMs) have been reported to play an important role in collapse capacity of structural systems and the seismic losses consequent to it. Therefore, DCMs of Reinforced Concrete (RC) frames have been studied, in this article, considering Record-To-Record (RTR) and modeling uncertainties. Two sets of RC frames have been designed, in this regard, that share the design assumptions but contain different levels of over-strength. Each set contains 26, 4- to 20-story nonlinearly modeled frames. Initially, Incremental Dynamic Analysis (IDA) was used to identify frames' DCMs. Then, the RTR variability reflected through IDA was combined with spectral shape and pulse effects... 

    Performance-based assessment of an innovative braced tube system for tall buildings

    , Article Bulletin of Earthquake Engineering ; Volume 16, Issue 2 , February , 2018 , Pages 731-752 ; 1570761X (ISSN) Mohammadi, H ; Toufigh, V ; Golafshani, A. A ; Arzeytoon, A ; Sharif University of Technology
    Springer Netherlands  2018
    Abstract
    In this paper, an innovative seismic lateral force resisting system for tall buildings is introduced. In this system, a novel supplemental part, ribbed bracing system (RBSyst), is attached to Braced Tube System, creating a modified BTS. RBSyst is a supplemental part which is attached to the conventional bracing members to eliminate buckling problem. The behavior of RBSyst under tensile force is similar to that of the conventional braces. However, in compression, it prevents the braces from buckling by length reduction. In order to evaluate the efficiency of this new BTS system by performance- based assessment, two typical 40-story tall buildings with different story modules equipped with... 

    Shaking table test of a 1: 2.35 scale 4-story building constructed with a 3D panel system

    , Article Scientia Iranica ; Volume 16, Issue 3 , 2009 , Pages 199-215 ; 10263098 (ISSN) Rezaifar, O ; Zaman Kabir, M ; Bakhshi, A ; Sharif University of Technology
    2009
    Abstract
    The seismic behaviour of a 4-story building is investigated under horizontal excitation of simulated earthquakes. The model has been constructed with a 3D sandwich panel system without any conventional frame system in four storeys on a shaking table. The building has been modelled before construction. Due to the table limit, the scale factor of the model is chosen as 1: 2.35 of a prototype. The shaking table test of the scaled model of the building is carried out under several ground motions to verify the safety of the system. The simulated motions were applied to the model in two-perpendicular directions, simultaneously. The failure mechanism and dynamic behaviour of the model, as a... 

    Displacement ratios for structures with material degradation and foundation uplift

    , Article Bulletin of Earthquake Engineering ; Volume 17, Issue 9 , 2019 , Pages 5133-5157 ; 1570761X (ISSN) Dolatshahi, K. M ; Vafaei, A ; Kildashti, K ; Hamidia, M ; Sharif University of Technology
    Springer Netherlands  2019
    Abstract
    In this paper, combined effects of material degradation, p-delta, and foundation uplift are incorporated in a soil-structure-interaction (SSI) framework to assess seismic response of a single-degree-of-freedom system. The considered phenomenological systems represent a column with a lumped mass on top is placed on a rigid foundation. The foundation is mounted on Winkler springs and dashpots to take account of soil-foundation compliance and material/radiation damping. The springs are tensionless to guarantee that uplift is properly modelled. The model is verified for two specific limit cases with the code and literature to make sure that the model is capable of capturing SSI and foundation... 

    Empirical predictive model for generating synthetic non-stationary stochastic accelerogram of the Iranian plateau: including far- and near-field effects as well as mainshock and aftershock categorization

    , Article Bulletin of Earthquake Engineering ; Volume 17, Issue 7 , 2019 , Pages 3681-3708 ; 1570761X (ISSN) Khansefid, A ; Bakhshi, A ; Ansari, A ; Sharif University of Technology
    Springer Netherlands  2019
    Abstract
    This work proposes comprehensive empirical predictive equations for generating stochastic synthetic 3-dimensional accelerograms for the Iranian plateau based on the existing database. First, the databank of Iranian accelerograms is collected, sorted, processed, declustered and categorized into the pulse-like and non-pulse-like data. To simulate the artificial accelerograms, a stochastic model capable of handling both the temporal and spectral non-stationarity of accelerograms is adopted. By implementing nonlinear curve fitting, parameters of the stochastic model are estimated. Then, the recorded events are categorized into eight distinct groups based on the existence of pulse-like... 

    Topology optimization of wave barriers for mitigation of vertical component of seismic ground motions

    , Article Journal of Earthquake Engineering ; Volume 24, Issue 1 , 2020 , Pages 84-108 Mohtasham Dolatshahi, K ; Rezaie, A ; Rafiee Dehkharghani, R ; Sharif University of Technology
    Taylor and Francis Ltd  2020
    Abstract
    Vertical vibration of structures due to strong near-field earthquakes could culminate in catastrophic consequences. In this article, the optimum patterns of two types of wave barriers with different geometry configurations, buried in the soil domain, are obtained in order to reduce the vertical acceleration of the top of a circular foundation placed on the soil surface. In order to look into the influence of various soil deposits, six soil deposits with diverse material properties and bedrock depths are examined. The topology optimization procedure for finding the optimum position of the wave barriers has been conducted using coupled finite element-genetic algorithm methodology. First, the... 

    Effect of damped outriggers arrangement on the seismic response of high-rise steel structures

    , Article Scientia Iranica ; Volume 27, Issue 3 A , 2020 , Pages 1075-1090 Asadi Ghoozhdi, H ; Mofid, M ; Sharif University of Technology
    Sharif University of Technology  2020
    Abstract
    Recently, a novel structural system, which is defined as a damped outrigger system, has been proposed to control the dynamic vibration of tall buildings. This paper examines the seismic performance of tall buildings involving multiple outriggers equipped with viscous dampers. In this respect, a dual structural system (braced moment frame) is selected as a bare structure. In addition, the number and position of outriggers are assumed to be variable along the structure height. Nonlinear Response History Analysis (RHA) is performed to evaluate the efficiency of the damped-outrigger system under eight-scaled ground motions. The results are presented based on the average of all ground motions....