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    Risk Action Plans’ Cost Optimization by Considering Risks’ Interdependency

    , M.Sc. Thesis Sharif University of Technology Roshan, Razieh (Author) ; Shadrokh, Shahram (Supervisor)
    Abstract
    Risk management, one of the knowledge areas in project management, plays a key role in the success of projects in today’s unstable situation. The massive cost reduction achieved by risk management can manifest its importance even more in huge construction projects in gas and oil industry such as developments of power plants and petrochemical complexes. In this research, the effect of considering the correlation between risks and consequently the effect of risk action plans on other risks in their execution cost reductions has been demonstrated. A questionnaire has been designed, many experts have been interviewed, and using statistical methods, the risks’ interdependencies have been... 

    Developing New Methods for Determining the Compressive Strength of Concrete

    , M.Sc. Thesis Sharif University of Technology Roshan, Parvin (Author) ; Khonsari, Vahid (Supervisor)
    Abstract
    Believing that the strength obtained from the standard 150300 mm2 cylindrical specimens, introduced by the ACI, cannot be a proper representative of what concrete experiences as part of a structure under loading, in this project an attempt was made to develop new methods for testing concrete specimens to find their strength. In order to avoid making new molds and to use standard 150300 mm2 molds, various innovative measures, proposed by the supervisor of this project, were used to work out the strength of tested concretes. While the results obtained from limited number of tests carried out in this work did not show much difference between the results of the standard ACI test with those of... 

    Fuzzy Fractional Order PID Design

    , M.Sc. Thesis Sharif University of Technology Mohammadian Roshan, Yaser (Author) ; Sadati, Naser (Supervisor)
    Abstract
    In this thesis a novel Fuzzy Fractional Order Controller (FFOPID) is presented. This controller is designed by the means of the combination of a fuzzy system and a fractional order PID. Fractional controllers, especially fractional PIDs, shows their performance in control systems after the advent of fractional calculus. Fractional PID has better flexibility according to the classic PID. As the real control systems are nonlinear actually, so solving the control problem needs a nonlinear controller. Therefore, a fuzzy system is used in this thesis, in order to adapt the controller parameters with different operating points of the system. Fuzzy system design needs the optimal values for... 

    Modelling the temperature rise effect through high-pressure torsion

    , Article Materials Science and Technology (United Kingdom) ; Volume 32, Issue 12 , 2016 , Pages 1218-1222 ; 02670836 (ISSN) Parvin, H ; Kazeminezhad, M ; Sharif University of Technology
    Taylor and Francis Ltd  2016
    Abstract
    An approach composed of the thermodynamics-based dislocation model and the Taylor theory is used to investigate the evolution of microstructure and flow stress during high-pressure torsion (HPT). The incremental temperature rise is considered through the modelling of HPT. The temperature can affect the annihilation of dislocations and thus the dislocation density. The model predicts the dislocation density, sub-grain size and flow stress during HPT. The modelling results are compared with the experimental data and the modelling results without considering the incremental temperature rise. A remarkable agreement is observed between the modelling results with considering the temperature rise... 

    Two-internal variable thermodynamics modelling of severe plastic deformation: Dislocation and flow stress evolutions

    , Article Materials Science and Technology (United Kingdom) ; Volume 31, Issue 14 , Jan , 2015 , Pages 1788-1793 ; 02670836 (ISSN) Parvin, H ; Kazeminezhad, M ; Sharif University of Technology
    Maney Publishing  2015
    Abstract
    Two-internal variable thermodynamics model is presented to investigate the evolution of microstructure and flow stress during severe plastic deformation. Previous studies have shown that due to heterogeneous distribution of dislocations during severe plastic deformation, the use of multivariable models is needed. In this regard, a two-internal variable model is presented. In the present paper, the dislocation densities in the subgrain boundaries and interiors are considered as internal variables. The model uses general laws of thermodynamics and describes the evolution of the dislocation densities on the basis of parameters such as the self-diffusion activation energy and the stacking fault... 

    Dependency modeling of steady state grain size on the stacking fault energy through severe plastic deformation

    , Article Materials Letters ; Volume 159 , November , 2015 , Pages 410-412 ; 0167577X (ISSN) Parvin, H ; Kazeminezhad, M ; Sharif University of Technology
    Elsevier  2015
    Abstract
    Recent investigations have shown that the steady state grain size of severely deformed materials is dependent on the stacking fault energy. In this paper, a model is presented to investigate such a dependency which uses thermodynamics based calculations. The present model shows that the relationship between the steady state grain size and the stacking fault energy of material is in power law form, directly. Furthermore, the model shows that the steady state grain size has an exponential relationship with the self-diffusion activation energy and a decrease in the self-diffusion activation energy increases the steady state grain size. The model predictions are in good agreement with the... 

    Limiting grain size through high-pressure torsion of different materials

    , Article Materials Science and Technology (United Kingdom) ; Volume 36, Issue 2 , 2020 , Pages 245-250 Parvin, H ; Kazeminezhad, M ; Sharif University of Technology
    Taylor and Francis Ltd  2020
    Abstract
    The main goal of high-pressure torsion (HPT) process is to reduce the grain size. Experiments have shown that this aim is achievable, but there is a limit in reducing the grain size. The present paper investigates this limit through a thermodynamics-based model. However, this was investigated by other researches through dislocation density-based model. At first, the validity of the model in description of the limiting grain size obtainable by HPT of different materials is examined. Then, the influence of inherent material parameters is investigated. Finally, the present results are compared with those obtained by equal channel angular pressing. © 2019, © 2019 Institute of Materials, Minerals... 

    Strength evolution during accumulative roll bonding of the metal matrix composite

    , Article Journal of Materials Research and Technology ; Volume 24 , 2023 , Pages 1513-1523 ; 22387854 (ISSN) Parvin, H ; Kazeminezhad, M ; Sharif University of Technology
    Elsevier Editora Ltda  2023
    Abstract
    The strength evolution during the processing/cycling of the metal matrix composite through accumulative roll bonding (ARB) as a severe plastic deformation method is studied by performing a twofold model. It is shown that the strength evolution during cycling consists of two parts: monolithic-like behavior and composite-like behavior. The contribution of each behavior is obtained. The particle effectiveness is at the lowest value at the beginning of the cycling and reaches its highest during the final cycles. It is shown that there is a critical strain at which monolithic-like behavior initiates to decline. The process also shows a minimum strain at which composite-like behavior dominates. ©... 

    Production of Copper-Graphene Nanocomposites Via Molecular Level Mixing, Evaluation of the Effect of Some Processing Parameters on Micro-Structure and Physical-Mechanical Properties

    , M.Sc. Thesis Sharif University of Technology Fahimi, Negar (Author) ; Abachi, Parvin (Supervisor)
    Abstract
    This research aimed at production of Cu-rGO via the combination of Molecular-Level-Mixing (MLM) method and powder metallurgy route (PM). First, Cu-GO composite powder was produced via MLM method. Subsequently, the resultant powder was mixed with electrolytic copper powder.Synthesis process included adjustment of the solution containing copper sulfate and 2Na.EDTA using NaOH solution. In the next step, GO suspension was added to the aforementioned solution. Finally, reduction of copper powder and formation of nanocomposite powder completed via the addition of Sodium Borohydrate. Nanocomposite powder was washed and dried in vacuum oven in 70˚C. GO reduction process took place using a tube... 

    Simulation, Control and Dynamic Process Intensification of Heat Integrated Binary Distillation Columns

    , M.Sc. Thesis Sharif University of Technology Parvin, Mahan (Author) ; Vafa, Ehsan (Supervisor)
    Abstract
    In light of rising energy costs and restricted access to energy resources, enhancing energy efficiency in process industries has become increasingly important. One effective method for reducing energy consumption in chemical industries is the use of thermal integration in distillation columns. This study examines the thermal integration of a benzene-toluene distillation column with the aim of analyzing and improving energy performance from a dynamic intensification perspective. Initially, the internal thermal integration of the distillation column was modeled. Subsequently, a mathematical analysis of the model was conducted to identify conditions of multiplicity. Following this, steady-state... 

    Modeling the effect of Mg addition on microstructure and strength of aluminum during severe plastic deformation

    , Article Journal of Materials Research and Technology ; Volume 28 , 2024 , Pages 3013-3024 ; 22387854 (ISSN) Parvin, H ; Kazeminezhad, M ; Sharif University of Technology
    2024
    Abstract
    Although Al–Mg alloys have various desirable properties, to broaden the applications, it is needed to increase the strength of these alloys. Severe plastic deformation (SPD) is a candidate method for this purpose. In this paper, a model is presented for the strength and microstructure evolution during severe plastic deformation. The model is applied to 5 Al–Mg alloys with different solute contents of 1, 2, 3, 4, and 5 wt% Mg. The model is also employed for pure Al for the sake of comparison. The model evaluates the effectiveness of Mg addition, quantitatively. It is shown that the combining of solute addition and severe plastic deformation can provide a considerable increase in the strength... 

    RANS simulations of the stepped duct effect on the performance of ducted wind turbine

    , Article Journal of Wind Engineering and Industrial Aerodynamics ; Volume 145 , October , 2015 , Pages 270-279 ; 01676105 (ISSN) Zabihzade Roshan, S ; Alimirzazadeh, S ; Rad, M ; Sharif University of Technology
    Elsevier  2015
    Abstract
    With the rise in oil price and population growth, renewable energies are assumed to be the main source of energies for the next generation. Wind as a natural, eco-friendly and renewable source of energy has been at the center of concentration for decades. Recently there has been some ideas regarding the self-regulating urban wind turbines. Researchers have shown that a proper enclosure increases the wind velocity and therefore more torques can be exerted on the rotors, therefore more power can be generated. These enclosures are light and cheap, therefore they are applicable and effective. In the present study, an enclosure was modified to increase the exerted torque with implementing a step... 

    Recognition and the Nature of Self-consciousness in Fichte and Hegel

    , M.Sc. Thesis Sharif University of Technology Shokrollahnia Roshan, Majid (Author) ; Abazari, Arash (Supervisor)
    Abstract
    For both Fichte and Hegel, self-consciousness is an intersubjective concept; that is, for them, self-consciousness is necessarily constituted between, at least, two subjects. In Foundations of Natural Right, Fichte introduces summons and recognition as necessary conditions of self-consciousness, without which, i.e. an other who is calling upon the subject, the subject cannot be conscious at all. Hegel, in Phenomenology of Spirit, also says self-consciousness is desire which is satisfied only in another (self-) consciousness. Based on these ideas, I try to show that self-consciousness can be defined as having the both in view; the self (I) and the other (not-I), at the same time. In this... 

    Design, Manufacture and Flight Dynamics Analysis of A Handlaunched Solar UAV

    , M.Sc. Thesis Sharif University of Technology Khanipour Roshan, Alireza (Author) ; Banazadeh, Afshin (Supervisor)
    Abstract
    Hand-launched UAVs are type of unmanned aerial vehicles that due to transportability and geometric specification, are operationally valuable and worthy. reconnaissance & surveillance (aerial mapping, aerial filming, inspection, border protection); health care (blood transport, body organ transport, medicine delivery); agriculture (farm monitoring, fertilization, cloud seeding); payload delivery (envelopes posting); network covering (internet supply, telecommunication relay); crisis management (remote area medical) are some of typical applications and missions of this type of aircrafts. These UAVs have almost low altitude short endurance (below 5000 ft. and less than 2 hrs.). To extend their... 

    Modeling the Effect of Stacking Fault Energy on Severe Plastic Deformation of Metals

    , M.Sc. Thesis Sharif University of Technology Parvin, Hooman (Author) ; Kazeminezhad, Mohsen (Supervisor)
    Abstract
    Nowadays, modeling the deformation behavior of materials is an indispensable tool to describe the evolutions of microstructure and mechanical properties of materials during deformation. As previous investigations have shown, the dislocation density is the most appropriate parameter for investigating the deformation behaviour of materials. In present research, considering the effect of stacking fault energy (SFE), the deformation behavior is investigated. In this regard, at first a thermodynamics based modeling of deformation is presented. Previous studies have shown that due to heterogeneous distribution of dislocations during severe plastic deformation, it is needed to use multi-variable... 

    Developing Dislocation Density Based Model for Severe Plastic Deformation Considering Strengthening Mechanism

    , Ph.D. Dissertation Sharif University of Technology Parvin, Hooman (Author) ; Kazeminezhad, Mohsen (Supervisor)
    Abstract
    In recent years, severe plastic deformation has received significant attention as a technique for improving the mechanical properties of materials. In this regard, modeling the deformation behavior of materials during severe plastic deformation is of importance. As previous investigations have shown, dislocation density is one of the most applicable parameters for the mentioned purpose. On the other hand, strengthening mechanisms and the presence of strengthening agents in the material are important metallurgical phenomena that can play a significant role during severe plastic deformation. In this regard, the present research investigates the development of a dislocation density-based model... 

    Unsteady RANS simulation of a surface piercing propeller in oblique flow

    , Article Applied Ocean Research ; Volume 56 , 2016 , Pages 79-91 ; 01411187 (ISSN) Alimirzazadeh, S ; Zabihzade Roshan, S ; Seif, M. S ; Sharif University of Technology
    Elsevier Ltd  2016
    Abstract
    Conventional propellers might undergo severe cavitation at high speeds and this phenomenon not only affects the efficiency of the propeller, but also may result in serious damages in propulsion system. Due to their special geometries, surface piercing propellers (SPPs) overcome this problem and achieve high efficiencies in high speeds. Therefore, SPPs are one of the popular propulsors for high-speed crafts. The present research is aimed to pursue SPP's performance in the off-design conditions. URANS method was used to study the performance of the 841-SPP (case with some available experimental results; Olofsson, 1996) in several immersion ratios (= 33%, 50%, 75% and 100%) and maneuvering... 

    Discovering and Improving the Processes of an Iranian Psychiatric Hospital Using Process Mining

    , M.Sc. Thesis Sharif University of Technology Roshan, Mohammad Amin (Author) ; Hassan Nayebi, Erfan (Supervisor)
    Abstract
    Providing quality hospital services depends on the efficient and correct implementation of processes. Therapeutic care processes are a set of activities that are carried out with the aim of diagnosing, treating and preventing any disease in order to improve and promote the patient's health. The purpose of this study is to use process mining techniques to discover and improve healthcare processes. The case study of this research is a psychiatric hospital in Shiraz. The approach implemented in this research consists of three main stages including data pre-processing, model discovery phase, and analysis phase. Three algorithms including Heuristic Miner, Inductive Miner, and ILP Miner were used... 

    Pressure dependence of the small-signal gain and saturation intensity of a copper vapor laser

    , Article Applied Optics ; Volume 42, Issue 6 , 2003 , Pages 1013-1018 ; 1559128X (ISSN) Behrouzinia, S ; Sadighi, R ; Parvin, P ; Sharif University of Technology
    2003
    Abstract
    The small-signal gain coefficient and the saturation intensity of a copper vapor laser have been measured for both 510.6- and 578.2-nm transitions through the implementation of a discharge driven oscillatoramplifier configuration. Pressure dependence of the gain and saturation property of the laser has been investigated. © 2003 Optical Society of America  

    Crystallization of hydroxyapatite during hydrothermal treatment on amorphous calcium phosphate layer coated by PEO technique

    , Article Ceramics International ; Volume 39, Issue 2 , 2013 , Pages 1793-1798 ; 02728842 (ISSN) Faghihi Sani, M. A ; Arbabi, A ; Mehdinezhad Roshan, A ; Sharif University of Technology
    2013
    Abstract
    Surface modification of titanium implants is recently considered by several researchers. In this study, PEO was performed over commercially Ti-6Al-4V alloy pellets in an aqueous electrolyte containing calcium acetate (C.A.) and calcium glycerphosphate (Ca-GP) with a Ca/P molar ratio of 6.8, and applying current density of 0.212 A/cm2, frequency of 100 Hz and duty ratio of 60% for 4 min. In the next step, hydrothermal treatments were carried out for various durations and at different temperatures inside an autoclave chamber containing a NaOH solution with pH of 11.5. XRD and SEM results confirmed formation of needle-shaped HAp after all hydrothermal conditions. Maximum intensity of HAp peaks...