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    A comparison between modal damping ratios identified by NExT-ERA and frequency domain impact test

    , Article Journal of Computational and Applied Research in Mechanical Engineering ; Volume 8, Issue 1 , 2018 , Pages 15-24 ; 22287922 (ISSN) Nouri, A ; Hajirezayi, S ; Sharif University of Technology
    Shahid Rajaee Teacher Tarining University (SRTTU)  2018
    Abstract
    In this research, the modal parameters of a beam in free-free condition are extracted by performing different experiments in the laboratory. For this purpose, two different techniques are employed. The first methodology is considered as a time domain method in Operational Modal Analysis. The other one is frequency domain impact hammer test which is categorized as an Experimental Modal Analysis method and can be regarded as the most common method in modal analysis. Checking the results obtained by the two methods, one can notice a distinct inconsistency in modal damping ratios extracted by each method. However, based on recent publications on the subject, it can be inferred that the time... 

    Evaluation of dynamic properties of cement-admixed clay using neural network and dynamic triaxial test results

    , Article Annual Conference of the Canadian Society for Civil Engineering 2007: Where the Road Ends, Ingenuity Begins, Yellowknife, NT, 6 June 2007 through 9 June 2007 ; Volume 1 , 2007 , Pages 215-223 Bahador, M ; Reinforced Earth Company Ltd.; First Air; Dillon Consulting; FSC Architects and Engineers; DIAVIK Diamond Mines; et al ; Sharif University of Technology
    2007
    Abstract
    In this paper dynamic property of Cement-Admixed clay under a wide range of strains were studied considering the effect of different mixing ratio and the change of confining pressures through dynamic triaxial test. Triaxial tests were conducted on untreated and cement treated soils and the results were then analyzed to study the variations in dynamic elastic modulus (Ed) and the damping ratio (D) of soil specimens at different cement ratio. Increasing cement ratio has a significant effect on Ed of the treated soils, and increases it. In contrast, increasing cement ratio decreases D; however, the rate of decreasing D with increasing cement ratio is not considerable. The feed-forward... 

    Impact of Changes in Matric Suction on Dynamic Properties of Unsaturated Silty Soil from Small to Large Strain During Drying Path

    , M.Sc. Thesis Sharif University of Technology Banar, Shaya (Author) ; Haeri, Mohsen (Supervisor) ; Khosravi, Ali (Supervisor)
    Abstract
    Shear modulus and damping ratio are of the most important parameters for geotechnical structures during dynamic and seismic loading. Secant shear modulus is the slope of hysteresis shear stress-shear strain loop, and damping ratio is indicative of dissipation of waves energy during propagation in the soil. These parameters mainly depend on void ratio, stress state, and shear strain of the soil. Climate changes cause some drying and wetting process which changes the soil state from saturated to unsaturated form. Previous researches indicated that the shear modulus and damping ratio change with the amount of matric suction. During the drying process, the matric suction increases,therefore,... 

    Dynamic parameters of dry sand using one dimensional shaking table tests

    , Article 6th International Conference on Physical Modelling in Geotechnics, ICPMG'06, Hong Kong, 4 August 2006 through 6 August 2006 ; Volume 1-2 , 2006 , Pages 279-283 ; 041541587X (ISBN); 9780415415873 (ISBN) Jafarzadeh, F ; Torghabeh, E. A ; Farahi Jahromi, H ; Sharif University of Technology
    2006
    Abstract
    In this paper the dynamic properties of Babolsar dry sand was investigated through one dimensional shaking table tests. 8 models of Babolsar loose dry sand under low confining pressures, were subjected to different harmonic and irregular dynamic loadings. The container was a laminar shear box having 24 layers each moving on the lower one. The dynamic properties including shear wave velocity, maximum shear modulus and damping ratio of the samples were addressed in this project. © 2006 Taylor & Francis Group, London  

    Fundamentals of optimum performance-based design for dynamic excitations

    , Article Scientia Iranica ; Volume 12, Issue 4 , 2005 , Pages 368-378 ; 10263098 (ISSN) Moghaddam, H ; Hajirasouliha, I ; Sharif University of Technology
    Sharif University of Technology  2005
    Abstract
    This paper presents a new method for optimization of the dynamic response of structures subjected to seismic excitation. This method is 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, in general, for a MDOF structure, there exists a specific pattern for distribution of structural properties that results in an optimum... 

    Passive control of vibration of elastically supported beams subjected to moving loads

    , Article DETC2005: ASME International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, Long Beach, CA, 24 September 2005 through 28 September 2005 ; Volume 1 A , 2005 , Pages 153-158 ; 0791847381 (ISBN); 9780791847381 (ISBN) Younesian, D ; Esmailzadeh, E ; Kargarnovin, M. H ; Sharif University of Technology
    American Society of Mechanical Engineers  2005
    Abstract
    Vibration suppression of elastically supported beams subjected to moving loads is investigated in this work. For a Timoshenko beam with an arbitrary number of elastic supports, subjected to a constant axial compressive force, and having a tuned mass damper (TMD) installed at the mid-span, the equations of motion are derived and using the Galerkin approach the solution is sought. The optimum values of the frequency and damping ratio are determined both analytically and numerically and presented as some design curves directly applicable in the TMD design for bridge structures. To show the efficiency of the designed TMD, computer simulation for two real bridges, subjected to a S.K. S Japanese... 

    Design, validation, and application of a hybrid shape memory alloy-magnetorheological fluid-based core bracing system under tension and compression

    , Article Structures ; Volume 35 , 2022 , Pages 1151-1161 ; 23520124 (ISSN) Zareie, S ; Hamidia, M ; Zabihollah, A ; Ahmad, R ; Dolatshahi, K. M ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    Civil infrastructures are vulnerable to catastrophic failures when exceeding the limit loading, requiring a reliable structural control mechanism, such as bracing systems, to enhance the integrity and stability of the structure. Bracing systems improve the performance of the structures by increasing the stiffness/strength of structures, the damping coefficient, and/or the energy absorption capacity. However, the functionality of these bracing systems is not controllable and may be altered after strong seismic events. Recently, the smart bracing systems based on multifunctional materials, particularly the shape memory alloy (SMA) and the magnetorheological fluid (MRF) have been developed. The... 

    Studying the Dynamics Behavior of the Partially Saturated Sand under Different Hydro-mechanical Loading with Resonant Column- torsional Shear and Bender Elements Apparatuses

    , M.Sc. Thesis Sharif University of Technology Toomani, Pooria (Author) ; Khosravi, Ali (Supervisor)
    Abstract
    Considering the importance of studying dynamic characteristics of soils in the analysis of wave propagation and the design of earth constructions or soil-related structures, as well as the role of Resonant Column-Torsional Shear in determining the dynamic parameters, including shear modulus, damping ratio and wave velocity in soil, this device was designed and developed in this research. The apparatus developed is able to conduct both resonant column and torsional shear tests and also measure dynamic parameters in large ranges of strain. The unsaturated pressure panel built alongside this device and the especial design of the device components have made the above-mentioned experiments... 

    Evaluation of the Effects of Principal Stress Direction on Dynamic Properties of Unsaturated Sand by Hollow Cylinder Apparatus

    , M.Sc. Thesis Sharif University of Technology Ahmadi Givi, Farid (Author) ; Jafarzadeh, Fardin (Supervisor)
    Abstract
    Soils have an anisotropic response, and mechanical and dynamic properties of this material are greatly dependent on the direction and magnitude of principal stresses. A reliable assessment of the soil behavior and a good estimation of the soil parameters need to perform tests in similar condition with in-situ. From all the devices used for studying anisotropy of soils, hollow cylinder apparatus is the only apparatus that enables an independent control of both the direction and magnitude of the principal stresses. Moreover, one of the most controversial topics in the unsaturated soil dynamics is determining the shear modulus and damping ratio which are used for assessing many geotechnical... 

    Development of a Basic Method for the Preliminary Design of Seismically Isolated Structures

    , M.Sc. Thesis Sharif University of Technology Salehi, Ahmad Ali (Author) ; Moghaddam, Hassan (Supervisor)
    Abstract
    For the preliminary design of isolated structures, it is necessary to select the appropriate damping ratios in each mode. The inherent modal damping in this type of structures is small. On the contrary, a significant value of damping is induced by dampers in isolator system into structural modes. The purpose of this study is to determine the Modal damping ratios in isolated structures. In this regard, shear structures of 2 to 10 floors with linear behavior in both superstructure and isolation level have been analyzed. The Structures have been modeled taking advantage of OpenSees. Samples are analyzed under sinusoidal loading applied to each floor. In order to achieve modal damping, an... 

    Experimental Identification of Repeated Modes for a Plate Under Ambient Loading Using Time Domain Methods of Operational Modal Analysis

    , M.Sc. Thesis Sharif University of Technology Hajirezayi, Sajjad (Author) ; Hosseini Kordkhili, Ali (Supervisor)
    Abstract
    In this research, the reliability of time domain modal identification methods is studied. First three different MIMO time domain method are studied which are EITD, PRCE and ERA. The effectiveness and accuracy of the methods are evaluated for simulated mass-spring system and numerical cantilever beam in EMA (using time history data of impulse response directly) and OMA (using correlation function of random response of the structure) cases. Based on the results achived in this section, the most qualified method is identified (which was ERA) to continue the research. In order to evaluate the reliability of time domain OMA technique in case of repeated modes, first a numerical plate is studied... 

    Equivalent Period and Damping of Soil-Structure Systems with Embedded Foundations in Layered Soil

    , M.Sc. Thesis Sharif University of Technology Keshavarz, Mohammad Reza (Author) ; Ghannad, Mohammad Ali (Supervisor)
    Abstract
    The main purpose of this study is to estimate the natural frequency and damping ratio for soil-structure systems with embedded foundation with sufficient accuracy. The results are then compared to guidelines in current seismic codes. This is done through an extensive parametric study using a set of non-dimensional parameters, which define the soil-structure systems. For this purpose a simplified soil-structure model is used. Although more rigorous models and numerical solutions are available, they are time consuming and not suitable for parametric study. Existing formula for seismic provisions for the equivalent period and damping ratio of soil-structure systems are based on studies on... 

    Evaluation Of The Effects Of Degree Of Saturation And Suction On Dynamic Properties Of Sand: Experimental Study On Babolsar Sand

    , Ph.D. Dissertation Sharif University of Technology Ahmadinezhad, Adel (Author) ; Jafarzadeh, Fardin (Supervisor)
    Abstract
    The ground experiences various hydraulic conditions under climate and groundwater level changes, and it becomes dry or wet frequently. The states of pore-water within the geomaterial, being signified in terms of suction and saturation degree, change during these variations, and consequently affect the soil behavior. In the course of isotropic or anisotropic dynamic loading on soil deposits, the altered hydraulic conditions can lead to different responses. Systematic investigation of these effects with element laboratory tests on a poorly graded sand is the main objective of the current study. Therefore, the dynamic response of sand in terms of dynamic properties (i.e. shear modulus, damping... 

    Experimental Study of the Effects of Compaction Water Content on Dynamic Properties of Babolsar Sand under Anisotropic Loading

    , M.Sc. Thesis Sharif University of Technology Khorami, Shahriar (Author) ; Jafarzadeh, Fardin (Supervisor)
    Abstract
    In many of the geotechnical engineering projects, such as construction of embankments and roads, soil is compacted with different water contents. Difference in compaction water content leads to different dynamic behaviors under cyclic loadings like earthquake and traffic. On the other hand, the magnitude and the direction of principal stresses on soil element, affect the dynamic response of the soil. The main objective of this research is to study the effects of compaction water content on dynamic properties of soil in anisotropic loading conditions. Therefore, the dynamic parameters of Babolsar sand, including shear strain amplitude, shear modulus and damping ratio under induced anisotropic... 

    Determination of Strain Dependent Dynamic Parameters of Unsaturated a Silty Soil During Drying path using Resonant Column-Torsional Shear Device

    , M.Sc. Thesis Sharif University of Technology Zahed Kameh Olya, Vahid (Author) ; Haeri, Mohsen (Supervisor)
    Abstract
    Shear modulus and damping ratio are the most important parameters for evaluating the performance of geotechnical systems under seismic and dynamic loads. According to the definition, secant shear modulus is the slope of the hysteresis shear stress-shear strain loop and damping ratio indicates the dissipation of wave energy during propagation in the soil. These parameters depend on stress state, shear strain and void ratio of the soil. Shear strain amplitude has an important effect on the behavior of shear modulus and damping ratio and it is necessary to study the behavior of these parameters in the range of small to large strains. In addition to dynamic loading, climate change and wet and... 

    An engineered infilled frame: Behavior and calibration

    , Article Journal of Constructional Steel Research ; Volume 66, Issue 6 , June , 2010 , Pages 842-849 ; 0143974X (ISSN) Mohammadi, M ; Akrami, V ; Sharif University of Technology
    2010
    Abstract
    The results of an experimental investigation on some engineered infilled frames with high ductility and adjustable strength are presented in this paper. To achieve an engineered infilled frame, an element is added to the infill, called Frictional Sliding Fuses (FSFs). The fuse acts before infill corner crushing and controls the infill so that it is not overloaded. Consequently, it increases the deformation capacity and decreases the strength deterioration. An FSF has a frictional nature, based on which the infill has more appropriate hysteresis cycles, leading to more structural energy damping during earthquakes. The results show that the engineered infilled frames have adjustable strength,... 

    Experimental and numerical evaluation of proposed precast concrete connections

    , Article Structural Concrete ; Volume 17, Issue 6 , 2016 , Pages 959-971 ; 14644177 (ISSN) Yekrangnia, M ; Taheri, A ; Zahrai, S. M ; Sharif University of Technology
    Wiley-Blackwell 
    Abstract
    In this article, the cyclic performance of an innovative precast beam-to-column connection is evaluated experimentally and numerically. Two full-scale beam-column cross-shape interior connection specimens named PF-1 and PF-2 are tested. By adding extra nuts to the connecting bolts, specimen PF-2 behaves in a more shear-dominant pattern and shows less pinching. Comparison of performance of these specimens with the numerical monolithic model in terms of stiffness, strength, ductility and energy dissipation capacity indicates the proposed system can provide conditions close to the monolithic connection. However, to reduce the pinching drawback, a minor modification was made leading to... 

    Equivalent linear model for existing soil-structure systems

    , Article International Journal of Structural Stability and Dynamics ; Volume 16, Issue 2 , 2016 ; 02194554 (ISSN) Sameti, A. R ; Ghannad, M. A ; Sharif University of Technology
    World Scientific Publishing Co. Pte Ltd 
    Abstract
    The concept of equivalent linearization is extended for the soil-structure systems, in which the strength ratio (defined as the ratio of the yielding strength to the elastic strength demand) is known rather than the ductility ratio. The nonlinear soil-structure system is replaced by a linear single-degree-of-freedom (SDOF) system, which can capture the response of the actual system with sufficient accuracy. The dynamic characteristics of the equivalent linear SDOF system are determined through a statistical approach. The super-structure is modeled by an inelastic SDOF system with bilinear behavior, and the homogeneous half space beneath the structure by a discrete model, following the Cone... 

    Evaluation of the vertical distribution of base shear force in base-isolated structures

    , Article Scientia Iranica ; Volume 14, Issue 1 , 2007 , Pages 11-22 ; 10263098 (ISSN) Rofooei, F. R ; Ebrahimi, M ; Sharif University of Technology
    Sharif University of Technology  2007
    Abstract
    Application of the base-isolation systems, as a means to limit the seismic-induced response of structures, has attracted the attention of many engineers and researchers. Due to their importance, the Uniform Building Code (UBC) has incorporated a special section for the seismic analysis and design of base-isolated structures since its 1991 edition. The present work investigates the vertical distribution of the lateral seismic force for base-isolated structures provided by the 1997 edition of UBC (UBC97). Different 6 and 8-story, 3-D base-isolated structural models with LRB isolators are considered, having a variety of effective periods and effective damping ratios. The UBC97 analysis... 

    The Effect of Induced Anisotropy on the Dynamic Properties of Unsaturated Sand at Constant Suction by Hollow Cylinder Apparatus

    , M.Sc. Thesis Sharif University of Technology Adineh, Kianoush (Author) ; Jafarzadeh, Fardin (Supervisor)
    Abstract
    Soils have an anisotropic response, and mechanical and dynamic properties of this material are greatly dependent on the direction and magnitude of principal stresses. A reliable assessment of the soil behavior and a good estimation of the soil parameters need to perform tests in similar condition with in-situ. From all the devices used for studying anisotropy of soils, hollow cylinder apparatus is the only apparatus that enables an independent control of both the direction and magnitude of the principal stresses. Moreover, one of the most controversial topics in the unsaturated soil dynamics is determining the shear modulus and damping ratio which are used for assessing many geotechnical...