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    Modeling of Micro Combustion Applying Electrohydrodynamics Effects

    , M.Sc. Thesis Sharif University of Technology Behroozinia, Pooya (Author) ; Saeedi, Mohammad Hassan (Supervisor) ; Mozafari, Ali Asghar (Supervisor)
    Abstract
    In this project, one-dimensional and two-dimensional numerical approaches are used to study the effect of applying electrohydrodynamics on the temperature and species mass fraction profiles along the micro-combustor. A premixed mixture of H2-Air with a multi-step chemistry (9 species and 19 reactions) is used and thermal conductivity of the mixture is considered as a function of species thermal conductivity and temperature by using a set of new relations. Both thermal and radical quenching mechanisms are important in the micro-scale combustion due to increasing of area-to-volume ratio and significant heat loss from the combustor walls. By inserting a number of electrodes into the... 

    Numerical Simulation of Electrospray with Presence of Cone-Jet

    , M.Sc. Thesis Sharif University of Technology Ghate Ghushchi, Mehran (Author) ; Morad, Mohammad Reza (Supervisor)
    Abstract
    In this work, the cone-jet mode of electrospray is simulated by a two phase solver in OpenFoam software. For this aim firstly, breakup of a liquid jet is examined without applying any electric potential to the injecting capillary and results are compared with other works to evaluate the two phase solver. Next with applying electric potential, the whole evolution of cone-jet in time is simulated. One of the most important issues in this mode is the minimum potential that needs to form a stable cone-jet in different flow rates. These minimum voltages are obtained in various flow rates and compared with other experimental and computational works. Result shows that with increasing flow rate the... 

    Investigation of Rotational Liquid Film and Electric Power Generation under Electric Field

    , M.Sc. Thesis Sharif University of Technology Feiz, Mohammad Sadegh (Author) ; Amjadi, Ahmad (Supervisor)
    Abstract
    Investigation of electrohydrodynamic behavior of fluids under electric fields is a challenging and impressive matter in condensed matter physics. In this thesis, inspired from previous works on liquid film motor, a new phenomenon has been observed and its properties has been investigated.Here by making a new device named “Liquid Film Electric Generator” we produced potential difference on the rotating suspended liquid film under electric field. The power conducted by electrodes has been generated on the surfaces of the film. By this method, under electric field of 1000 V/cm, micro-watt electric power can be achieved on a liquid film of diameter of about 1 cm.We explained this phenomenon on... 

    Electrohydrodynamic Stability of a Cylindrical Jet under an Axial Electric Field

    , M.Sc. Thesis Sharif University of Technology Gholamzadeh, Hassan (Author) ; Kebriaee, Azadeh (Supervisor) ; Morad, Mohammad Reza (Supervisor)
    Abstract
    Due to the large application of electro-sprays in various industries, the study of the stability of electro-hydrodynamic flows is important. This thesis examines the stability of cylindrical liquid jets in the presence of an axial electric field. The definition of this jet is a simplified model of electrospray, electrospinning. In this model, the stability of a free incompressible cylindrical flow with surface tensile strength, conductivity, polarization, viscosity, and dielectric constant is determined, irrespective of the solubility of the jet and the surrounding fluid (air), in the presence of uniform axial electric field has taken. This will be done by adding the forces generated by the... 

    An Experimental and Numerical Study on Jet Electrohydrodynamics

    , Ph.D. Dissertation Sharif University of Technology Rajabi, Alireza (Author) ; Morad, Mohammad Reza (Supervisor)
    Abstract
    Liquid jet behavior in an intense electric field is studied experimentally and numerically.Imaging is used in experiments to charactrize jet behavior. Electrospray of ethanol using a simple needle in a wide range of operating conditions is investigated. Liquid meniscus is captured using a high-speed camera and different electrospray modes are described based on involved forces. A new nozzle is invented that broadens the stability margins of the useful cone-jet mode. The physical mechanisms of the new cone-jet is discussed and it is characterized using appropriate dimensionless parameters. A simple jet in presence of a gaseous crossflow and a normal electric field is also studied. The liquid... 

    Fabrication of Micron Resolution Polymer Structures with Electrohydrodynamic Printing

    , M.Sc. Thesis Sharif University of Technology Shahverdi, Mohammad (Author) ; Movahedi, Mohammad Reza (Supervisor)
    Abstract
    In recent years, additive manufacturing has been widely used in prototyping and production of industrial-commercial pieces. Additive manufacturing or three-dimensional (3D) printing is able to easily produce any piece for initial prototyping, no matter how complex it is. The fused deposition modeling (FDM) is a type of additive manufacturing process that produces the piece with the mechanism of feeding the PLA filament, then the molten polymer extrusion and depositing the fluid layer by layer with a high viscosity. Since the thickness of the layers is directly proportional to the diameter of the nozzle and the diameter of the used nozzles cannot be in the micron range (lower than 100... 

    Experimental Investigation of Cooling Hot Surfaces By Electrospray

    , M.Sc. Thesis Sharif University of Technology Taheri, Vahid (Author) ; Morad, Mohammad Reza (Supervisor)
    Abstract
    The electrospray technique involves the production of small charged droplets through the application of electrohydrodynamic forces. Under well-defined operating conditions, multiple flow modes can be observed, among which the stable jet-cone mode has received significant attention from the research community. This mode is desirable due to its uniform droplet diameter, reduction in droplet rebound when impacting hot surfaces, and potential for utilizing two-phase heat transfer for cooling purposes. In this study, a comprehensive experimental investigation was conducted to evaluate the cooling of hot surfaces through the use of electrospray in the steady cone-jet mode. The fundamental...