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    Flux Pinning Energy in Nd1-x Smx Ba2Cu3 O7-δ

    , M.Sc. Thesis Sharif University of Technology Mokhtari, Parisa (Author) ; Akhavan Farshchi, Mohammad (Supervisor)
    Abstract
    Physical properties of $Re_1 Ba_2 Cu_3 O_{7-\delta} (Re123)$ high-temperature cuprate superconductors attract many of physicists due to their high transition temperature (above Nitrogen boiling point), relatively simple synthesizing and high critical current density. Among this family, Nd123 and Sm123 single-crystal compounds have the highest transition temperature and critical current density in the magnetic fields less than 2 Tesla. In addition, due to the near ionic radius of Nd and Sm elements, it is possible to synthesize $Nd_{1-x} Sm_x Ba_2 Cu_3 O_{7-\delta} (0 \leq x \leq 1)$ compounds with no significant dislocation. In order to investigate the effects of such doping on electrical... 

    Supplementary Effects of Fluorine Doping and Pressure on Electronic Structure of LaO1-xFxFeAs Superconductor

    , M.Sc. Thesis Sharif University of Technology Ebrahimi, Mohammad Reza (Author) ; Khosroabadi, Hossein (Supervisor) ; Akhavan Farshchi, Mohammad (Co-Advisor)
    Abstract
    Iron based superconductors that are studied more in recent years, have the same and different features with copper oxide high temperature superconductors which they can help in solving problems related to high temperature superconductors. In addition, these compounds have attractive physical characteristics such as superconductivity despite of presence of magnetic Iron element or other magnetic elements like nickel and cobalt (In other superconductivity groups, low doping of magnetic elements destroys superconductivity) and also concurrent presence of magnetic and superconductivity phases. The most reported transition temperature in these compounds is 56.3K in Gd0.8Th 0.2FeAsO compound.... 

    Ab-initio Calculations of Electronic and Phonon Structures of Ba1-xKxFe2As2 (x = 0,0.5,1) Superconductor

    , M.Sc. Thesis Sharif University of Technology Sandoghchi, Mohammad (Author) ; Khosroabadi, Hossien (Supervisor) ; Akhavan Farshchi, Mohammad (Supervisor)
    Abstract
    After discovery of superconductivity in 1911 people try to find superconductors with higher Tc. High Tc superconductivity in cuprates and iron based superconductors was discovered in 1986 and 2008 respectively. However, there is not any unit theory for high Tc superconductivity in cuprates or iron based superconductors. Study of electronic and phonon structures of high Tc superconductor compounds can lead to find theory of high Tc superconductivity.
    In this dissertation electronic structure of Ba1-xKxFe2As2, which belongs to class of 122 of iron based superconductor, under potassium doping x=0,0.5,1 has been studied. To this end ab-initio method and Density functional theory have been... 

    Preparation and Characterization of BaFe2As2 Superconductor by Solid State Reaction

    , M.Sc. Thesis Sharif University of Technology khezripour, Ramin (Author) ; Khosroabadi, Hossien (Supervisor) ; Akhavan Farshchi, Mohammad (Co-Advisor)
    Abstract
    The discovery of Iron-based superconductors with maximum transition temperature of 56 Kelvin and High critical magnetic field of the order of 50T at temperature 20K has created evolution in different fields of superconductivity including practical issues. BaFe2As2 family is one of the most important compounds of Iron-based superconductors and with different doping elements for instanse elements of the first column like Potassium inters superconducting state with critical temperature of 36K.
    The purpose of this thesis is to localize the technology of making this compound in Iran which no project has been done in this field in the country before. In this thesis manufacturing, Optimization... 

    Flux dynamics in Y358 and Gd358 superconductors

    , Article Journal of Superconductivity and Novel Magnetism ; Vol. 27, issue. 3 , 2014 , pp. 741-748 ; ISSN: 15571939 Aliabadi, A ; Akhavan-Farshchi, Y ; Akhavan, M ; Sharif University of Technology
    2014
    Abstract
    We have studied the thermally activated flux creep in the newly fabricated superconductors Y3Ba5Cu8O18+δ and Gd3Ba5Cu8O18+δ with transition temperature above 100 K. The thermally activated flux creep model explains the electron share in the magnetoresistivity of the samples in the vicinity of transition temperature T c . The activation energy U in a magnetic field below 15 kOe has been calculated by the corrected thermally activated flux creep model; and the pinning energy is exponentially related to the magnetic field  

    A new Y-based HTSC with Tc above 100 K

    , Article Physica C: Superconductivity and its Applications ; Volume 469, Issue 22 , 2009 , Pages 2012-2014 ; 09214534 (ISSN) Aliabadi, A ; Akhavan Farshchi, Y ; Akhavan, M ; Sharif University of Technology
    2009
    Abstract
    In search of finding the dominant mechanism in high temperature superconductivity phenomena, the Y3Ba5Cu8O18 compound was synthesized through the standard solid-state reaction technique. Characteristic XRD experiment was performed on the samples and was analyzed by the MAUD software refinement program. The analysis results indicate a 358 phase structure with the initial nominal stoichiometry. The electrical resistivity and its behavior under different magnetic field were measured. The electrical resistivity indicates the transition temperature Tc onset = 102 K with transition width ΔTc = 2.4 K. This is the first observation of such a high transition temperature in the Y-based compound.... 

    Numerical Analysis of An Annular Gas Turbine Combustor

    , M.Sc. Thesis Sharif University of Technology Gandomi, Mohammad Hossein (Author) ; Farshchi, Mohammad (Supervisor)
    Abstract
    The goal of this research is the simulation of the annular combustion chamber of the turbine engine utilized by liquid fuel. The achievement to this goal will lead to create numerical tools for parametric study, analysis and combustion chamber designing.For this reason simple geometry has been considered. This simplicity of geometry causes to facilitate in parametric study and decrease in saving time for modeling and meshing. This combustion chamber is a simplified model of engine CF6. In recent study, the k – ε realizable model has been used for turbulence modeling. For non-adiabatic condition, chemical reaction is dissolved by utilizing probability density function along with laminar... 

    Large Eddy Simulation of Supercritical Swirling Flow of Injector in a Combustion Chamber

    , Ph.D. Dissertation Sharif University of Technology (Author) ; Farshchi, Mohammad (Supervisor)
    Abstract
    In the present thesis, the extensive study of reactive and non-reactive supercritical and transcritical flows has been discussed in shear-axial and swirling forms. Considering the need for combustion models with the application of detailed chemistry for accurate simulation of the field, the Laminar Flamelet Models (LFM) are suitable in order to reduce computational expensive. For this purpose, it is necessary to produce thermodynamic tables specific to real gas conditions for the flamelet model. The tables related to the flamelet model in real gas conditions are extracted from the open source software Cantra. The difference point in the Flamelet tables of real gas and ideal gas is for... 

    Study of Cryogenic LOX/Kerosene Ignition and Flame Characteristics in a Single injector Combustion Chamber

    , M.Sc. Thesis Sharif University of Technology Eskandari, Mohammad Amin (Author) ; Farshchi, Mohammad (Supervisor)
    Abstract
    This thesis discusses design and, simulation procedure of a mono-injector combustion chamber, in order to study and, analyze the ignition and, stable combustion characteristics, for Kerosene and, liquid Oxygen cryogenic propellants. Accordingly, the design and, simulation for the combustion chamber, for Kerosene and, liquid Oxygen propellants is performed. Also, effective parameters on the flame taking place are studied, and finally an algorithm for design and, properties study of cryogenic propellant ignition is presented  

    Dynamic behavior Analysis of a Swirl Burner using Recurrence Plotting Method

    , M.Sc. Thesis Sharif University of Technology Talebi, Mohammad Sadegh (Author) ; Farshchi, Mohammad (Supervisor)
    Abstract
    In this dissertation, based on the method of recurrence plot and its application in dynamic system analysis we examine the behavior and dynamic analysis of a swirl burner. Though retrospective studies on thermoacoustic instability have been performed on single-blown premixed cone shape flames and several combustion systems but so far this method has not been considered for a real combustion system. There have also been more work on phenomena known as the flame separation from the burner (blowout) and its propagation into the burner (flashback), which is almost conscious of their process. In fact, selecting a single flame has been to eliminate the flame-flame interactions in the... 

    Numerical Investigation of Laminar Premixed Flame Response to Acoustic Excitation

    , M.Sc. Thesis Sharif University of Technology Behzadi, Milad (Author) ; Farshchi, Mohammad (Supervisor)
    Abstract
    Flame Response to acoustic excitation which plays an important role in combustion chamber stability state may be found through numerical simulation. A finite volume code of higher order accuracy developed for compressible flows was adopted. Species equations along with a single-step irreversible reaction model were added to this non-reacting program. Changes were also made to the energy equation. Premixed methane/air flame in tubes was studied and the same problem was solved with FLUENT software. It was found that whether the Lewis number is considered constant or temperature dependent has a strong effect on flame structure and shape and that using mean values for gas properties yields out... 

    Unsteady Analysis of a Slinger Combustion Chamber by the Chemical Reactor Network Model

    , M.Sc. Thesis Sharif University of Technology Soroush, Fariborz (Author) ; Farshchi, Mohammad (Supervisor)
    Abstract
    Up to early seventies, Gas turbine combustor design was very time consuming and costly process including trial and errors through test rigs. Over the time analytical-experimental relationships take place as one of the key rules in the design processes. With the increasing power of computer calculations, computational fluid dynamics find its way in the procedure. Obtaining a deeper understanding of flow conditions and geometry inside the chamber, a great reduction in production time and cost of revisions to rigs and samples were achieved. Finding a precise prediction of polluting elements like NOx (less than 10 ppm) after many run hours and enormous computing resources, CFD methods must... 

    Experimental Study of Low Swirl Burners Interferences

    , M.Sc. Thesis Sharif University of Technology Shahsavari, Mohammad (Author) ; Farshchi, Mohammad (Supervisor)
    Abstract
    One of the problems associated with lean premixed combustion is their stability. Low swirl flame is a modern technology for reducing NOx emissions and increasing stability.In this thesis, first, the effect of geometric parameters on the flame stability was investigated. This study was carried out in high fuel and oxidizer mixture flow rate. Having find, the most stable burner, two other burners with the same geometrical parameters were built. Stability of these three burners were analyzed. Second, they were located in a ring together in three different relative positions. In each configuration stability and NOx emissions of the burners were determined.The study shows that NOx and CO... 

    Numerical Study of Accelerating Flame and Flame-Sound Interaction in Tubes

    , M.Sc. Thesis Sharif University of Technology Jafari, Samira (Author) ; Farshchi, Mohammad (Supervisor)
    Abstract
    Numerical study of the interaction mechanism of the premixed flame and the acoustic field is performed in this work. The geometry similar to those used in experiments, is a two-dimensional tube in which flame travels form open end towards the closed end. The numerical study is done using PPM method. Results show that the shape and speed of laminar flame is strongly affected by the induced acoustic field. Stronger interaction is observed in the closed-end tube with no slip boundary conditions. The effect of the Lewis number on the interaction mechanism is also investigated. Premixed flame- accelerated flame – interaction of flame and acoustic field  

    Experimental Study of Flame Stability on a Reheat System

    , M.Sc. Thesis Sharif University of Technology Nozari, Hadi (Author) ; Farshchi, Mohammad (Supervisor)
    Abstract
    In conventional afterburning systems, the burnt products of the primary combustion enter the afterburning zone, where the fuel is injected and the mixture is ignited to form a flame which is stabilized by a flameholder.
    The present experimental study focuses on concepts of afterburning and flame stability in a reheat system. For this purpose an afterburner setup is designed and manufactured. The setup comprises of two main regions; the preheating region and the reheat zone. Fuel used in preheater is LPG while jet fuel is injected in reheat zone. Through the tests the key parameters which are adjusted to be in similar ranges as the conventional afterburners are the oxygen amount of the... 

    Investigations on Stability of Premixed Flames in Turbine Engines

    , Ph.D. Dissertation Sharif University of Technology Riazi, Rouzbeh (Author) ; Farshchi, Mohammad (Supervisor)
    Abstract
    This thesis is a complementary experimental and theoretical investigation on stability of premixed flames and a study of combustion instability and combustion dynamics in a swirl-stabilized combustor, aiming to understand the fundamental mechanisms responsible for combustion oscillations in gas turbine combustors. Theoretical investigations on acoustic modeling of a simple combustor and a study on kinematic response of premixed flames to flow perturbations have been discussed in the first part of this work. In another part of thesis, experimental studies on the response of premixed flames to acoustic perturbations have been performed. In addition, experimental investigations on combustion... 

    Numerical Analysis of an Afterburner Combustion Stability

    , M.Sc. Thesis Sharif University of Technology Rezaei, Vahid (Author) ; Farshchi, Mohammad (Supervisor)
    Abstract
    Inlet flow of afterburners comes from the burnt products of the primary combustion chamber. The fuel is injected and the mixture is ignited to form a flame which is stabilized behind a flameholder in the afterburner. Flame stability stems from wake (recirculation zone) of flameholder. With the aid of high residence time of flow behind the flameholder reactants get the time to catch activation energy. Some parameters like oxygen content, mass flow rate, inlet temperature, and nozzle area ratio play an important role in afterburner combustion efficiency and flame stability. In this study we focused on afterburner combustion stability in GE J85-21 engine. This engine will be in service through... 

    Numerical Simulation of A Vortex Cooled Combustion Chamber

    , M.Sc. Thesis Sharif University of Technology Azardar, Milad (Author) ; Farshchi, Mohammad (Supervisor)
    Abstract
    The aim of the present research is to investigate the combustion chamber cooling with vortex method in presence of kerosene and liquid oxygen as propellants. For this purpose, a part of oxidizer is entered into the cylindrical combustion chamber tangentially (from bottem of the chamber), and creates a vortex flow (outer vortex). With motion of created outer vortex along the wall and eventually hit its top wall (the head of the chamber), secondary vortex (inner vortex) occurs along the center line, with a downward direction (opposite to the primary vortex). The fuel and other part of the oxidizer injection is also carried in the head of chamber, so by mixing the fuel and oxidizer that happens... 

    Large Eddy Simulation of Excited Jet Flow

    , Ph.D. Dissertation Sharif University of Technology Ghadimi, Masoud (Author) ; Farshchi, Mohammad (Supervisor)
    Abstract
    Excited jet flow has many physical and industrial applications, e.g. in aeroacoustics and the combustion instability. Analysis of this type of flow needs an accurate simulation of flow dynamics. This work presents the large eddy simulation of this type of flow. The numerical method used in the large eddy simulation must have low numerical dissipation and high order of accuracy. Compact methods which satisfy these requirements and have high resolution of frequency, are favorable ones for the large eddy simulation. A fourth-order compact finite volume method which had been developed in the MSc thesis of the author is extended and completed in the present work. This extension includes the... 

    Numerical Simulation of Cellular Structure of Detonation Wave and Evaluation of Linear Instability Analysis

    , Ph.D. Dissertation Sharif University of Technology Barkhordari, Alireza (Author) ; Farshchi, Mohammad (Supervisor)
    Abstract
    Experimental studies of regular cell structure of a weak detonation wave in a gaseous mixture of hydrogen and oxygen diluted with argon have shown that for a constant initial thermodynamic condition, the final cell size differs by repeating the tests. The question is that if these different final cell sizes for a constant initial condition are because of test errors, or the experiments would lead to a domain of solution in the form of different final cell sizes? Therefore, the aim of this study is to investigate, numerically, the evolution process and domain of variation of cellular structure of a weak detonation, and their dependency to unstable wavelengths obtained from linear instability...