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    Study of Injection Process from Bi-Swirl Injector in Supercritical Condition

    , M.Sc. Thesis Sharif University of Technology Dorosti, Ehsan (Author) ; Farshchi, Mohammad (Supervisor) ; Mardani, Amir (Co-Advisor)
    Abstract
    Presently, a wide range of devices operate at supercritical condition. In fact, supercritical condition refers to a condition in which both temperature and pressure of injected fluid exceed the critical point. In the case of modern internal combustion engine, the temperature and pressure of combustion chamber is high enough that can be considered as supercritical condition, whilst the fuel injected may be subcritical or transcritical.It has been widely accepted that in supercritical state, vaporization enthalpy is vanished and there is no distinction between gas and liquid. Hence, only a single state will remain which is neither liquid nor gas and referred to as fluid. Moreover, many... 

    Effect of the Blast Furnace Slag on Microstructural and Transport Properties of the Fly Ash-based Geopolymers

    , M.Sc. Thesis Sharif University of Technology Azimi, Zahir (Author) ; Toufigh, Vahab (Supervisor)
    Abstract
    Alkali-activated fly ash-slag (AAFS) is a new type of sustainable construction material widely studied in recent years for its desirable mechanical properties and low environmental impacts. In this study, the effects of the slag incorporation from 10 to 30% of fly ash are investigated on the strength, pore structure, and transport properties of the AAFS with various levels of fly ash replacements with slag. The unconfined compression and ultrasonic pulse velocity tests were performed to evaluate the mechanical properties of the AAFS concrete. Microstructural and mineralogical changes were studied by porosity, N2-adsorption/desorption, and SEM/EDX tests. Additionally, transport properties... 

    Numerical Modeling of Porous Burner

    , M.Sc. Thesis Sharif University of Technology Saediamiri, Meghdad (Author) ; Saeedi, Mohammad Saeed (Supervisor) ; Saeedi, Mohammad Hassan (Supervisor)
    Abstract
    Porous burner technology has many advantages in comparison with conventional burners such as higher burner thermal performance, lower pollutants emission, high power ranges, fuel flexibility, compact geometry and higher turn down ratios. These kinds of burners are made of preheated porous combustion zone and combustion porous zone that have different thermophysical and geometrical properties. In this work, the transient one-dimensional multi-step premixed laminar reacting flows in a two-stage porous media burner have been investigated. The combustible mixture is considered H2-Air (9 species and 19 reactions) and CH4-Air (22 species and 49 reactions). In porous media, without lateral wall... 

    An Investigation into Entanglement in Electrical Transport in a One-dimensional Model Using Transfer Matrix Method

    , M.Sc. Thesis Sharif University of Technology Safari, Maryam (Author) ; Rezakhani, Ali (Supervisor) ; Shokri, Ali Asghar (Co-Supervisor)
    Abstract
    This thesis analyzes the scattering of a propagating electron from a single bound electron .The study demonstrates how the scattering of the propagating electron from the bound electron causes entanglement between two electrons. The study then considers the impact of spin-dependent scattering in the presence of Hartree and exchange potentials. In the first step, only an exchange potential is studied. Transmission coefficients are calculated for spin-flip and non-spin-flip states by solving the Hamiltonian equation in different regions, applying the continuity boundary conditions for the wave function and its derivative in each region, and using the transfer matrix method. Transmission... 

    The Effect of Pressure on the Coexistence of Superconductivity and Magnetism in RuSr2GdCu2O8 and RuSr2Gd1.4Ce0.6Cu2O10-δ

    , Ph.D. Dissertation Sharif University of Technology Fallahi, Saeed (Author) ; Akhavan, Mohammad (Supervisor)
    Abstract
    The coexistence of long-range magnetic order and superconductivity in the ruthenocuprate families, Ru1212 and Ru1222 has been studied both theoretically and experimentally. Historically these two different phases are incompatible with each other and in the most previous research reported on the coexistence of these phases, there have been observed separated magnetic and superconducting phases. However in the ruthenocuprate families, there is a single phase with both magnetic and superconducting phase which coexist with each other. It has been determined that superconductivity arises in CuO2 planes, and magnetic orders occur in RuO2. From experimental point of view, we have investigated the... 

    Structural and Electric Transport Properties of Lanthanum Based Manganites and Barium Based Ruthenates

    , Ph.D. Dissertation Sharif University of Technology Mazaheri, Mojtaba (Author) ; Akhavan, Mohammad (Supervisor)
    Abstract
    The goal of this thesis is to understand the physical properties of lanthanum based manganites and barium based ruthenates. In order to obtain negative colossal magnetoresistance in manganites and fabrication of barium ruthenate in ordinary condition, the effects of variables such as ionic radii, chemical composition, temperature, magnetic field and processing in manganites and ruthenates systems are investigated. In the first part, the effects of potassium doping on structure, metalinsulator transition and magnetoresistance in )La1-yKy)0.7 Ca0.3 MnO3 and)La1-yKy)0.7 Ba0.3 MnO3 manganites systems are studied. Polycrystalline samples of manganites are synthesized by the sol‐gel method. In the... 

    Calculation of Transport Properties of Dense Fluids Using Modified Enskog Theory (MET) and Appropriate Equation of State (EoS)

    , M.Sc. Thesis Sharif University of Technology Ansari, Parisa (Author) ; Parsafar, Gholam Abbas (Supervisor)
    Abstract
    In this research, a method based on the modified Enskog theory (MET) and some equations of state has been used to calculate the transport properties of some dense fluids. The main limitation to using the MET is the lack of experimental data for the co-volume, b0, that are substituted from the hard sphere (HS) theory, and the zero density transport properties that are substituted from the kinetic theory of gases for the HS in the MET expression, because of the fact that dense fluids behave more and less like a HS fluid. So a quadratic expression for both ηY/(√T ρ) and λY/(ρ√T) (C_(V,m)+ (9/4)R) in terms of Y at high densities (ρ > ρc) for each isotherm is expected, where Y = (T (∂p/∂T))/ρRT... 

    Modification of Repulsive and Attraction Branches of the Potential Models to Calculate the Equilibrium and Transport Properties of Liquids

    , M.Sc. Thesis Sharif University of Technology Razavi Majarashin, Asghar (Author) ; Parsafar, GHolamabbas (Supervisor)
    Abstract
    Several potential models such as Sutherland (ST) and square-well (SW) potential models are used for studying the equilibrium and transport properties. Near and above the inversion temperature these potential models fail to predict the second virial coefficient, so they are not applicable at high temperatures. ST and SW potential models have two different branches; one branch is related to the attraction forces and the other to the repulsive forces. Each branch has its own unique parameters, for example parameters of attraction branch are ε/k (the depth of the potential model) and λ (the width of the potential model). Repulsive branch has only one parameter, σ (the molecular diameter).... 

    Extreme light absorption in a necking-free monolayer of resonant-size nanoparticles for photoelectrochemical cells

    , Article Journal of Optics (United Kingdom) ; Vol. 16, issue. 7 , 2014 ; ISSN: 20408978 Dabirian, A ; Sharif University of Technology
    Abstract
    Semiconductor photoelectrodes for water oxidation that absorb visible light usually have poor electronic transport properties and small optical absorption coefficients near their absorption edge. Therefore, innovative designs that lead to significant optical absorption in relatively thin layers of these compounds are highly desirable. Here, using full-field electromagnetic optical simulations, we demonstrate that a monolayer of resonant-size BiVO4 spheres can provide enhancement up to a factor of two in solar light absorption relative to dense planar layers. In this monolayer, BiVO4 spheres do not need to be interconnected; therefore, such monolayers are flexible and their fabrication... 

    Role of 3D-paired pentagon-heptagon defects in electronic and transport properties of zigzag graphene nanoribbons

    , Article Applied Physics A: Materials Science and Processing ; Volume 116, Issue 1 , July , 2014 , Pages 295-301 ; ISSN: 09478396 Fotoohi, S ; Moravvej Farshi, M. K ; Faez, R ; Sharif University of Technology
    Abstract
    Electronic and transport properties of 11 zigzag graphene nanoribbons (11-z-GNRs) with two types of 3D-paired pentagon-heptagon defects (3D-PPHDs) are studied using density functional theory combined with non-equilibrium Green's function method. The C ad-dimers that have been introduced to z-GNRs to form these 3D-PPHDs have induced local strains forcing the C-bonds in the ad-dimers to hybridize in sp3-like rather than sp2-like orbitals. Such transformations that cause extra electrons to accumulate around the 3D-PPHDs are responsible for the variations in the electronic and transport properties of the defected z-GNRs. Density of states (DOS) for 11-z-GNRs containing either type of 3D-PPHDs,... 

    Electronic and transport properties of monolayer graphene defected by one and two carbon ad-dimers

    , Article Applied Physics A: Materials Science and Processing ; Vol. 116, issue. 4 , 2014 , p. 2057-2063 Fotoohi, S ; Moravvej-Farshi, M. K ; Faez, R ; Sharif University of Technology
    Abstract
    Using density functional theory combined with non-equilibrium Green's function method, we have investigated the electronic and transport properties of graphenes defected by one and two carbon ad-dimers (CADs), placed parallel to the graphene lattice. Addition of these CADs to graphenes creates 3D paired pentagon-heptagon defects (3D-PPHDs). The band structure, density of states (DOS), quantum conductance, projected DOS, as well as the current-voltage characteristic per graphene super-cells containing each type of 3D-PPHD are calculated. The local strain introduced to graphene by 3D-PPHDs forces the C-bonds in the dimers to hybridize in sp 3-like rather than sp 2-like orbitals, creating... 

    Thermal transport characteristics pertinent to electrokinetic flow of power-law fluids in rectangular microchannels

    , Article International Journal of Thermal Sciences ; Vol. 79, issue , 2014 , p. 76-89 Vakili, M. A ; Saidi, M. H ; Sadeghi, A ; Sharif University of Technology
    Abstract
    In the present study, the thermal characteristics of electroosmotic flow of power-law fluids in rectangular microchannels in the presence of pressure gradient are investigated. The governing equations for fully developed flow under H1 thermal boundary conditions are first made dimensionless and subsequently solved through a finite difference procedure for a non-uniform grid. The influence of the major parameters on thermal features of the flow such as the temperature distribution and Nusselt number is discussed by a complete parametric study. The results reveal that the channel aspect ratio and the non-Newtonian characteristic of the fluid can affect the thermal behavior of the flow. It is... 

    Reacting turbulent flow simulation to improve the mixing process in an oil refinery incinerator

    , Article American Society of Mechanical Engineers, Fluids Engineering Division (Publication) FEDSM ; Vol. 1C, issue , August , 2014 ; ISBN: 9780791846230 Darbandi, M ; Abrar, B ; Barezban, M. B ; Faridvand, A ; Schneider, G. E ; Sharif University of Technology
    Abstract
    Combustion emission is one of the most important issues in the design of industries. Todays' strict environmental standards have limited the productions of CO, NOx, SOx, and other hazardous pollutants from the related industries. In this work, we study a typical oil refinery incinerator, which is used to burn waste gases residue produced during bitumen production process. The waste gas mainly includes a mixture including N2, H2O-vapor, and O2 species. Additionally, there are significant amounts of CO species and CxHy droplets in the waste gas composition. The measurements show that the CO emission becomes so crucial in high flow rate of feeding waste gas to the incinerator. Here, we... 

    Theoretical-experimental investigation of Co emission from an oil refinery incinerator

    , Article American Society of Mechanical Engineers, Fluids Engineering Division (Publication) FEDSM ; Vol. 1C, issue , 2014 Darbandi, M ; Abrar, B ; Yazdi, M. K ; Zeinali, M ; Schneider, G. E ; Sharif University of Technology
    Abstract
    In this paper, we investigate the CO emission from an oil refinery gas incinerator both theoretically and experimentally. At the beginning of this research, our collected data from this incinerator showed that the CO contamination would be far exceeding the permissible environmental standards at the stack exhaust. Therefore, we decided to perform a combined theoretical-experimental study to find a reasonable solution to reduce the CO pollution suitably. Our theoretical study showed that a reliable solution would be to increase the incinerator operating temperature. However, we needed to collect some data from this incinerator to examine if our achieved analytical solution would work... 

    Peculiar transport properties in Z-shaped graphene nanoribbons: A nanoscale NOR gate

    , Article Thin Solid Films ; Volume 548 , 2013 , Pages 443-448 ; 00406090 (ISSN) Khoeini, F ; Khoeini, F ; Shokri, A ; Sharif University of Technology
    2013
    Abstract
    A nanoscale logic NOR gate has been theoretically designed by magnetic flux inputs in a Z-shaped graphene nanoribbon composed of an armchair ribbon device sandwiched between two semi-infinite metallic zigzag ribbon leads. The calculations are based on the tight-binding model and iterative Green's function method, in which the conductance as well as current-voltage characteristics of the nanosystem are calculated, numerically. We show that the current and conductance are highly sensitive to both the magnetic fluxes subject to the device and the size of the system. Our results may have important applications for building blocks in the nanoelectronic devices based on graphene nanoribbons  

    Effect of stone-wales defects on electronic properties of armchair graphene nanoribbons

    , Article 2013 21st Iranian Conference on Electrical Engineering, ICEE 2013 ; 2013 , 14-16 May ; 9781467356343 (ISBN) Samadi, M ; Faez, R ; Sharif University of Technology
    2013
    Abstract
    In this paper, the effects of Stone-Wales (SW) defect on transport properties of armchair graphene nanoribbons (AGNRs) are studied using tight binding calculations combined with nonequilibrium Green's function (NEGF). We evaluate transmission and density of states (DOS) in two cases, pristine and defective AGNR, and we compare the results. Our results indicate that in the latter case, a larger bandgap is made due to symmetry breaking in GNR layer  

    Controlling electron injection and electron transport of dye-sensitized solar cells aided by incorporating CNTs into a Cr-doped TiO2 photoanode

    , Article Electrochimica Acta ; Volume 111 , 2013 , Pages 921-929 ; 00134686 (ISSN) Massihi, N ; Mohammadi, M. R ; Bakhshayesh, A. M ; Abdi Jalebi, M ; Sharif University of Technology
    2013
    Abstract
    In the present work, we focused on simultaneously control electron injection and electron transport, in dye-sensitized solar cells (DSSCs), aided by introducing Cr3+ and CNTs into a TiO2 photoanode, respectively. X-ray photoelectron spectroscopy (XPS) revealed that, Cr 3+ and CNTs were successfully incorporated into the TiO2 lattice without forming secondary phases. X-ray diffraction (XRD) analysis showed that Cr introduction has perfectly balanced the amount of anatase and rutile phases in order to accomplish a more efficient cell. Field emission scanning electron microscope (FE-SEM) images showed deposited films to have a porous morphology composed of nanoparticles and TiO2 nanoparticles... 

    Theoretical investigation on antioxidant activity of bromophenols from the marine red alga Rhodomela confervoides: H-atom vs electron transfer mechanism

    , Article Journal of Agricultural and Food Chemistry ; Volume 61, Issue 7 , 2013 , Pages 1534-1541 ; 00218561 (ISSN) Javan, A. J ; Javan, M. J ; Tehrani, Z. A ; Sharif University of Technology
    2013
    Abstract
    Bromophenols are known as antioxidant radical scavengers for some biomolecules such as those in marine red alga. Full understanding of the role played by bromophenols requires detailed knowledge of the radical scavenging activities in probable pathways, a focus of ongoing research. To gain detailed insight into two suggested pathways, H-atom transfer and electron transfer, theoretical studies employing first principle quantum mechanical calculations have been carried out on selected bromophenols. Detailed investigation of the aforementioned routes revealed that upon H-atom abstraction or the electron transfer process, bromophenols cause an increase in radical species in which the unpaired... 

    Optoelectronic properties of cauliflower like ZnO-ZnO nanorod/p-Si heterostructure

    , Article Solid-State Electronics ; Volume 80 , 2013 , Pages 33-37 ; 00381101 (ISSN) Rajabi, M ; Dariani, R. S ; Iraji Zad, A ; Zahedi, F ; Sharif University of Technology
    2013
    Abstract
    The cauliflower like ZnO nanostructures are grown on ZnO nanorods using spray pyrolysis method. First, ZnO nanorod arrays are grown on p-type silicon substrate without catalyst by chemical vapor transport and condensation method in a horizontal tube furnace. Afterwards, the cauliflower like ZnO nanostructures is deposited on top of the ZnO nanorod array. The PL spectra of cauliflower like ZnO nanostructures consist of UV emission bands around 387 nm and a visible emission at ∼440 nm. The current-voltage (I-V) measurement under dark and UV illumination condition are performed to study photodetection of the cauliflower like ZnO-ZnO nanorod/p-Si heterostructure. The experimental data of dark... 

    Electrokinetically driven fluidic transport of power-law fluids in rectangular microchannels

    , Article Colloids and Surfaces A: Physicochemical and Engineering Aspects ; Volume 414 , 2012 , Pages 440-456 ; 09277757 (ISSN) Vakili, M. A ; Sadeghi, A ; Saidi, M. H ; Mozafari, A. A ; Sharif University of Technology
    2012
    Abstract
    Electroosmosis is the predominant mechanism for flow generation in lab-on-chip devices. Since most biofluids encountered in these devices are considered to be non-Newtonian, it is vital to study the flow characteristics of common non-Newtonian models under electroosmotic body force. In this paper, the hydrodynamically fully developed electroosmotic flow of power-law fluids in rectangular microchannels is analyzed. The electrical potential and momentum equations are numerically solved through a finite difference procedure for a non-uniform grid. A thoroughgoing parametric study reveals that the Poiseuille number is an increasing function of the channel aspect ratio, the zeta potential, the...