Loading...
Search for: vakilzadeh-ebrahimi--mohammad-kazem
0.148 seconds

    Preparation of Polymeric Ion-Exchange Membrane for Water Desalination

    , M.Sc. Thesis Sharif University of Technology Vakilzadeh Ebrahimi, Mohammad Kazem (Author) ; Musavi, Abbas (Supervisor)
    Abstract
    In present research work, methods of preparing ion exchange membranes, especially anion exchange membranes, were studied and chemical modification of polysulfone was chosen as a safe and economical method for preparing anion exchange membranes. The chloromethylated polysulfone was characterized by HNMR spectroscopy and functionalization degree was determined according to peak area integration. Membranes were produced by mixing and amination of the chloromethylated and normal polysulfone (40-100% wt). Morphology and chemical structure of membranes were investigated by SEM images and FTIR spectroscopy.The ionic conductivity, ion exchange capacity and water content of samples were measured. The... 

    Analyzing Fluid–Structure Interaction Problems in Compressible Flows

    , Ph.D. Dissertation Sharif University of Technology Azampour, Mohammad Hadi (Author) ; Hejranfar, Kazem (Supervisor)
    Abstract
    The goal of this thesis is the development and application of the finite volume method (FVM) with a same solution procedure in the fluid and structure domains for the simulation of fluid-structure interaction (FSI) problems in the compressible fluid flow. The unsteady Euler equations written in the arbitrary Lagrangian–Eulerian (ALE) form are considered as the governing equations of the compressible fluid flow and the moderate/large nonlinear deformation of the elastic structure is considered to be governed by the Cauchy equations in the Lagrangian/total Lagrangian forms. Therefore, the nonlinear phenomena in the unsteady compressible fluid flow and the large deformation of the elastic... 

    Development of an Incompressible Smoothed Particle Hydrodynamics Method based on Vorticity-stream Function Formulation

    , M.Sc. Thesis Sharif University of Technology Alibakhshian, Mohammad Reza (Author) ; Hejranfar, Kazem (Supervisor)
    Abstract
    In the present study, an incompressible smoothed particle hydrodynamics method based on vorticity-stream function (VSF-SPH) formulation is developed and assessed for simulating steady and unsteady incompressible flows. The vorticity-stream function formulation in the Eulerian reference frame is written in a Lagrangian reference frame to provide an appropriate incompressible SPH algorithm. The advantage of the proposed smoothed particle hydrodynamics method based on the vorticity-stream function (VSF-SPH) formulation over the weakly compressible SPH (WCSPH) is that the VSF-SPH method is a truly incompressible SPH algorithm and it does not involve any approximate enforcement of the... 

    Development of WENO Finite Difference Lattice Boltzmann Method for Simulation of 2D Incompressible Laminar and Turbulent Flows

    , M.Sc. Thesis Sharif University of Technology Saadat, Mohammad Hossein (Author) ; Hejranfar, Kazem (Supervisor)
    Abstract
    In the present study, the numerical simulation of incompressible laminar and turbulent flows using a high-order finite difference lattice Boltzmann method is presented. To handle curved geometries with non uniform grids, the incompressible form of lattice Boltzmann equation is transformed into the generalized curvilinear coordinates and the spatial derivatives of the resulting equation are discretized using the fifth-order WENO scheme. The advantage of using the WENO-LBM developed is that it needs less number of grid points and remains stable even at high Reynolds number flows. For the temporal term, the fourth-order explicit Rung-Kutta scheme is adopted for laminar flow calculations and... 

    PLA/PEG/HAp Nano-Composites as Drug Carriers

    , M.Sc. Thesis Sharif University of Technology Vakilzadeh, Elham (Author) ; Frounchi, Masoud (Supervisor)
    Abstract
    In recent years, the tendency to use biodegradable and biocompatible polymer nanoparticles for drug delivery applications has been increasing, the reason for this being the possibility of precise control of the drug release rate, ease of use, and no need for external Surgery after the release of the drug, increases the therapeutic efficiency of the drug and reduces the side effects with its precise transfer. In this research work, drug carrier nanocomposites were prepared from polylactic acid (PLA), polyethylene glycol (PEG) and hydroxyapatite (HAp) and for the controlled release of ciprofloxacin (CIP). It was used to treat bone infections. The drug loading efficiency for nano-carriers was... 

    Probabilistic Safety Assessment of A UF6 Production Process

    , M.Sc. Thesis Sharif University of Technology Ebrahimi, Behrooz (Author) ; Ghofrani, Mohammad Bagher (Supervisor)
    Abstract
    Identification of different hazards in a UF6 production process, and evaluation of the risk originated from these hazards is the main objective of this project. A number of hazards are present in a typical UF6 production process, such as leakage of chemical gases like HF and F2 and also radioactive UF6 gas release. In order to evaluate risk due to these hazards, probabilistic approach has been used. Due to lack of probabilistic safety criteria (PSC) for chemical releases, only for UF6 gas release risk assessment has been done. As a first step in PSA of this process eight groups of initiating events have been identified using HAZOP study, and for each initiating event, event tree analysis... 

    Aerodynamic Performance Improvement of Megawatt Wind Turbine Rotor Using Plasma Actuator

    , M.Sc. Thesis Sharif University of Technology Movahhedi, Mohammad Reza (Author) ; Ebrahimi, Abbas (Supervisor)
    Abstract
    For validation of simulation, plasma actuator was modelled on a flat plate in quiescent flow, which is result in low-speed jet near the wall. The results were compared with similar model and were showed good agreement with them. After that, blade was modelled in three-dimensional manner with MRF technique and periodic method and the results were validated in clean situation (absence of plasma). In the following, turbine was analysed with a code, which was written in MATLAB software based on BEM method and the results were compared with present CFD simulation. Then, plasma actuator was used in chordwise in parts of the blade to improve wind turbine performance. Also it was used in spanwise... 

    Evaluation and Simulation of using Magnetite as Heat Transfer Medium in Direct Solar Absorption Collectors

    , M.Sc. Thesis Sharif University of Technology Ebrahimi, Mahyar (Author) ; Mohammadi, Mohammad Reza (Supervisor)
    Abstract
    In this study, application of a Magnetic Nanofluid consisting of Magnetite as Nanoparticle and Water as base fluid in DASC systems is investigated. The DASC system is modeled theoretically and behavior of such system is predicted.In this study a comparison between magnetite Nanofluid and some other common Nanofluids is conducted. The study shows that Magnetite Nanofluid has a better performance and efficiency than Water, Al2O3 Nanofluid and SiO2 Nanofluid. Also magnetite Nanofluid and TiO2 Nanofluid function are almost similar.Also effect of external magnetic field on the performance of magnetite Nanofluid is investigated. It is showed that when the magnetic Nanofluid is subjected to an... 

    Calibration of Rigid Connected Vision and Inertial Sensors

    , M.Sc. Thesis Sharif University of Technology Ebrahimi, Mohsen (Author) ; Manzuri, Mohammad Taghi (Supervisor)
    Abstract
    One of the major problems encountered in artificial intelligence is environment interaction. A sensible way for around-interaction is to collect information from sensors and make proper reactions. Generally, in the real world, an intelligent agent needs to know its pose. There are several ways to know the pose of an agent. One of them is based on the fusion of the output of an inertial sensor with the information retrieved from a camera. This leads to enhance the estimation of the pose of an agent. In this research different solutions for this problem are compared. Studies are done with the goal of attitude detection for vehicles and mini-robots, moving on planar surface. For this end, we... 

    Aerodynamic Analysis and Design of a Lifting Subsystem for a VTOL UAV in the Cruise phase

    , M.Sc. Thesis Sharif University of Technology Bayanlou, Mohammad Reza (Author) ; Ebrahimi, Abbas (Supervisor)
    Abstract
    It is necessary to evaluate the effect of the lifting arms of VTOL UAVs in increasing the drag of UAV and reducing the flight endurance of the cruise phase. In this study, the adverse effect of the lifting subsystem and its accessories on reducing the aerodynamic efficiency of the wing and optimizing its design for the cruise phase is studied. The base UAV is an integrated wing-body drone with a 2.12 m wing span, 7 kg maximum take-off weight and with about 65 km / h horizontal flight speed. To investigate the possibility of reducing the adverse aerodynamic effect of the arms of the lifting system, different positions are selected in terms of the geometric dimensions of the arms and their... 

    Design of a Low-IF Phased-Array Receiver for 5G Applications

    , M.Sc. Thesis Sharif University of Technology Ebrahimi Maroufi, Mojtaba (Author) ; Fakharzadeh, Mohammad (Supervisor)
    Abstract
    The most important feature of the fifth generation of mobile telecommunications is the increase of information transfer rate and together with it the increase of the capacity of telecommunication channels in comparison with the previous generation. One solution is to increase the frequency toward millimeter-wave frequencies. Currently, the most suitable option for the millimeter-wave frequency band is the 28 GHz band, which has received a lot of attention due to its availability and the possibility of implementing cheap integrated circuits using CMOS technology in this band. In addition to the features that this frequency band has; This band has limitations such as high emission losses and... 

    Experimental Investigation of Geometric Parameters Effect on Energy Harvesting from FIV in Bluff Bodies

    , M.Sc. Thesis Sharif University of Technology Safari, Mohammad Hossein (Author) ; Ebrahimi, Abbas (Supervisor)
    Abstract
    The purpose of this research is to design and construct a test stand for the study of the kinematic and flow pattern of bluff bodies oscillating motion due to the induction of wake vortices. An experimental investigation was conducted to explore the effect of bluff bodies cross section to optimize the amount of electrical energy withdraw by electromagnetic harvester. The tests are carried out on cylinders with square section and rectangular sections with a length to width ratio of 1/2 and 2/1 and height of 50 cm, at speeds of 5 to 35 m/s in eiffel type wind tunnel. The effect of cylinder cross-section on the amount of energy harvested showed that the amplitude of oscillation in square-shaped... 

    Experimental Investigation of Cooling Surfaces with Electrospray Using a Porous Nozzle

    , M.Sc. Thesis Sharif University of Technology Ebrahimi, Fariba (Author) ; Morad, Mohammad Reza (Supervisor)
    Abstract
    Electrospray, as a novel and efficient method in jet production, utilizes a combination of hydrodynamic and electrostatic forces. In electrohydrodynamic systems, by controlling effective parameters, it is possible to achieve a wide range of fluid flow regimes. Among these, the stable cone-jet mode has attracted special attention from researchers due to its stability and controllability characteristics. The unique features of this mode include uniformity in droplet size resulting from jet breakup (which is effective in reducing temperature gradients on hot surfaces), the ability to control fluid flow characteristics through adjustable parameters such as electrical voltage, and spray... 

    Numerical Investigation of Dynamic Stall Flow Control with Nano-Second DBD Plasma Actuator

    , M.Sc. Thesis Sharif University of Technology Mohammad Esmaeili, Ali (Author) ; Ebrahimi, Abbas (Supervisor)
    Abstract
    The phenomenon of dynamic stall is one of the major challenges in aerodynamic engineering, significantly affecting the performance, stability, and efficiency of flight systems such as helicopters and rotorcraft. In this study, a nanosecond dielectric barrier discharge (NS-DBD) plasma actuator is employed as a novel method for active flow excitation and separation delay to control this phenomenon. The main objective of this research is to develop a novel feature-based subgrid modeling approach for the NS-DBD actuator, capable of representing the effects of its electrical and geometrical characteristics—including coupled energy, plasma thickness and length, heating duration, and gap... 

    Use of Membrane Bioreactor to Bioethanol Production from Lignocellulosic Material

    , M.Sc. Thesis Sharif University of Technology Ebrahimi, Mohammad Hassan (Author) ; Soltanieh, Mohammad (Supervisor) ; Goodarznia, Iraj ($item.subfieldsMap.e)
    Abstract
    In this study production of bioethanol from corn fiber that is a lignocellulosic material is investigated. Experiments were performed in a membrane bioreactor. Bioethanol is a second generation biofuel that is considered recently because of the decrease in oil production and pollutions caused by fossil fuels.The feed was corn fiber which is considered suitable due to its low cost and availability in my country. Corn fiber is composed of cellulose, hemicellulose and lignin. We should increase cellulose fraction by pretreatment methods to get a higher conversion rate into bioethanol. We did this by acid pretreatment and the fraction was reached to 41%. In most of previous work experiments were... 

    Aerodynamic Control of Flow Around a Rigid Wing in Flapping Motion Using Geometry Modification Methods

    , M.Sc. Thesis Sharif University of Technology Mohammadi, Mohammad Hossein (Author) ; Ebrahimi, Abbas (Supervisor) ; Farahani, Mohammad (Supervisor)
    Abstract
    The physics of the flow around the wing in the oscillatory motion of the wing has various patterns, including the leading edge vortex, the tip vortex and trailing edge vortex escape. The interaction of these vortices forms a complex flow structure around the wing, which will have a direct effect on the aerodynamic performance of the wing. Therefore, controlling these structures can be considered as a way to improve the performance of the flapping wing. One of the passive flow control techniques that has recently been taken into consideration is a leading-edge protuberance method. Another type of passive flow control is geometric correction, using corrugation method. According to studies, two... 

    Combustion Instability in a Silo Type Gas Turbine Combustor

    , M.Sc. Thesis Sharif University of Technology Nosrati Shoar, Somayeh (Author) ; Farshchi, Mohammad (Supervisor) ; Hejranfar, Kazem (Supervisor)
    Abstract
    Nowadays, one of the most important desires of the human being is to reduce his living environmental pollution. Using the diluted combustion systems in new gas turbines in order to produce the minimum amount of has been done to satisfy this desire. It should be noted that reducing this amount and using the lower flame temperature will result in some consequences. The most important problem occurred in industrial and aerial gas turbines are the instability of the combustion due to dilution of the fuel to air mixture which it results in heat release fluctuations. If the heat release fluctuations and acoustic pressure are in the same phases, the amplitude of the fluctuations will increase which... 

    Experimental Investigation of the Effects of Wing Aspect ratio and its distance from the Tail on the Aerodynamic parameters at high A.O.A

    , M.Sc. Thesis Sharif University of Technology Afshari, Abbas (Author) ; Soltani, Mohammad Reza (Supervisor) ; Hejranfar, Kazem (Supervisor)
    Abstract
    In recent years, requirement to increase projectile performance, leads to a great interest in high angle of attack Aerodynamics. Projectile Maneuverability is a concept which is defined by having the capability to perform at high angles of attack while maintaining attached flow over the tail, rather than a capability of performing a mission in minimum possible duration. Interaction between body, wing and tail vortices can delay vortex breakdown over the wing and as a result may enhance projectile maneuverability. Studies show that wing aspect ratio and tail location have a remarkable influence on the vortices interaction and thus projectile maneuverability. In the present study, a series of... 

    Enhancing the Resilience of Urban Infrastructures: A Combination of Machine Learning-Based Methods and GIS

    , M.Sc. Thesis Sharif University of Technology Hajbarat, Mohammad Amin (Author) ; Haj Kazem Kashani, Hamed (Supervisor)
    Abstract
    Throughout history, the occurrence of natural disasters and incidents has posed a potential threat to man-made constructions. Advancements in science and technology have led to the development of man-made civil infrastructures, which now exhibit increased complexity in terms of technological sophistication and spatial coverage. Consequently, monitoring and managing their health and risk factors have become more intricate. Urban lifelines, which encompass constructed utilities, transportation systems, telecommunication networks, and critical facilities, hold significant importance for the well-being of citizens. These infrastructure assets are essential for the distribution and flow of... 

    Redundancy Allocation Problem in Systems with Dependent Components

    , M.Sc. Thesis Sharif University of Technology Ebrahimi, Mina (Author) ; AkhavanNiaki, Mohammad Taghi (Supervisor)
    Abstract
    Consider a serie_parallel system in which the lifetimes of parallel components in series subsystems are independent. But, the lifetimes of series subsystems are dependent due to their similar components. In this thesis, the redundancy allocation problem is studied for this system in order to maximize system reliability. A model is developed and a genetic algorithm is utilized to find near-optimum solution