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    Modeling, Analysis and Possible Solution for Excessive Intraocular Pressure in Glaucoma Patients

    , M.Sc. Thesis Sharif University of Technology Singh, Dara (Author) ; Firouzbakhsh, Keykhosrow (Supervisor)
    Abstract
    With the advent of new computer technologies, computational analysis on the human organs has become tremendously popular in the field of medical science. Every year thousands of people suffer irreversible eye damages pertaining to lack of adequate medications. In this regards, enormous amount of money is spent annually but mostly in vain due to the irreversibility and silent nature of eye diseases like glaucoma. Yet more precise studies on the topic are requisite. In this thesis, a validated half 3D finite volume model of human eye considering the fluid flow in collaboration with heat transfer in the steady state utilizing the well known discretized bio-heat transfer equation coupled with... 

    Experimental Investigation of the Porous Media Permeability Effect on Heat Transfer and Pressure Drop in Internal of Tube

    , M.Sc. Thesis Sharif University of Technology Salimi, Milad (Author) ; Nouri Broujerdi, Ali (Supervisor)
    Abstract
    The purpose of this study is investigation of the effect of the porous medium permeability on heat transfer and pressure drop inside tube and compare the results with non-porous tube. In order to create porous medium in this research iron bullets with 2.93, 4.74 and 6.97 (mm) diameters has been used in test tube. Test tube made of copper with an inner diameter of 2 cm and has 1meter length. This experiment is done in steady state, transient and turbulent flow regime (2600< <12260) and also for constant heat flux boundary condition . The experimental results show that the values of heat transfer and pressure drop of porous pipe is always greater than non-porous pipe and these values will... 

    Computational Simulation of Cooling of Porously Covered Surfaces, Using a Navier-stokes and Lattice Boltzmann Solver

    , Ph.D. Dissertation Sharif University of Technology Salimi, Mohammad Reza (Author) ; Tayyebi Rahni, Mohammad (Supervisor) ; Jam, Freydoon (Co-Advisor)
    Abstract
    Considering the wide range of applications of porous media for heat transfer enhancement in various components of industrial machineries, including solar collectors, air dryers, compact heat exchangers, electronic microchips, investigation of heat transfer characteristics in porous media has been a major concern for many researchers. On the other hand, precise understanding of the physics of porous media-flow interaction has been an open research topic for a long time. The present research however, has aimed at developing a computational method to simulate the interaction between fluid flow and porous media to investigate heat transfer from prously covered surfaces. Pore scale modeling of... 

    Multiscale Modelling of Non-Isothermal Multiphase Flow in Heterogeneous Porous Media with Computational Homogenization Approach

    , Ph.D. Dissertation Sharif University of Technology Saeedmonir, Saeed (Author) ; Khoei, Amir Reza (Supervisor)
    Abstract
    In the real engineering problems, the existing materials in the nature or human-made materials, contain different heterogeneities from the view of small scale. Reinforced composite materials and porous media containing grains or micro-cracks are some examples of these materials. Due to the large amount of these heterogeneities as well as the small size, direct modelling of these micro-structures requires extremely high computational and memorial cost. Also, the equivalent models introduced in the literature, have strong limitations and therefore, cannot capture accurate behavior of the material. Hence, multiscale methods have been proposed in order to model these heterogeneous media with... 

    Development of a Suitable Computational Conjugate Heat Transfer Algorithm to Analyze Turbine Blade Internal Cooling

    , M.Sc. Thesis Sharif University of Technology Sajadi, Ali (Author) ; Darbandi, Masoud (Supervisor)
    Abstract
    Nowadays, the study of flow and heat transfer in turbine engines has become critical due to their increasing use and importance in various engineering industries. The critical issue of blade burning in the first row of turbine’s blades illuminates the critical roles of numerical and experimental activities in reducing these undesirable effects. Since blade cooling is directly related to the secondary air system, one important issue in blade burning research is to utilize the conjugate heat transfer approach. As Known, an increase of about 1% in the mass flow of air entering into the secondary air system would cause an increase of about 0.5% in the engine specific fuel consumption (SFC),... 

    Three-dimensional Aerothermal Shape Optimization of Turbine Blade, Using Gradient Adjoint-based Methods

    , Ph.D. Dissertation Sharif University of Technology Zeinalpour, Mehdi (Author) ; Mazaheri, Karim (Supervisor)
    Abstract
    The most important challenge and the most time consuming part of the gradient based optimization algorithms in the aerodynamic shape optimization problems is the evaluation of the sensitivity of the objective function with respect to the design variables. The adjoint method which has been the subject of many research in the recent three decades, is capable of computing the complete gradient information needed for optimization by solving the governing flow equations and their corresponding adjoint equations only once, regardless of the number of design parameters. In this study, the continues adjoint equations for compressible inviscid and viscous flows are derived and the formulation of... 

    Performance Improvement of the Flat Plate Pulsating Heat Pipe with Diagonal Grooves

    , M.Sc. Thesis Sharif University of Technology Zareian, Alireza (Author) ; Shafiee, Mohammad Behshad (Supervisor) ; Moosavi, Ali (Co-Supervisor)
    Abstract
    The main purpose of this study was to increase the flow circulation within the flat plate oscillating heat pipes as a result Increase the heat transfer rate by placing diagonal grooves in the evaporator. The project in two stages a simple page and diagonal companion page are provided to investigate the effect of diagonal grooves. First a simple plate and then a second one with diagonal grooves in the evaporator it was made. Thermal performance of the heat pipes at each of the stages at different filling ratios of 40%, 50%, 60% and 70% for variable input capacities have been studied and compared. The results of the second stage showed that the performance of the new heat pipe at the optimum... 

    Visualization of Pool Boiling Heat Transfer of Magnetic Nano-Fluid

    , M.Sc. Thesis Sharif University of Technology Zarei Salehabad, Mostafa (Author) ; Shafiee, Mohammad Behshad (Supervisor) ; Moosavi, Ali (Co-Supervisor)
    Abstract
    The use of nano-fluid, which is a stable solid liquid mixture, has been proposed as a new strategy for heat transfer operations. Much research has been done on heat transfer of nano-fluids until now, whereas the study of phenomena associated with phase change, such as boiling where there is heat transfer in larger scales is very necessary. The boiling process based on its potential for transferring high amounts of heat at low temperatures is a very effective and common mechanism, and it occurs in many engineering systems, including boilers at plants, evaporators in refrigeration systems and nuclear reactors. Also, a considerable amount of research was done recently in the field of... 

    Experimental Investigation into the Direct Contact of Working Fluid with Phase Change Material and its Effect on the Heat Transfer Rate

    , M.Sc. Thesis Sharif University of Technology Ranjbar Kermani, Javad (Author) ; Shafii, Mohammad Behshad (Supervisor)
    Abstract
    The unique properties of phase change materials (PCMs), such as high latent heat and nearly constant phase change temperature, have made them a suitable option for use in thermal energy storage systems and thermal management systems. However, the low thermal conductivity of these materials has imposed limitations on their widespread use in industries. In this study, for the first time, the effect of injecting a boiling fluid (BF) into the PCM container to enhance heat transfer and accelerate the solidification process has been experimentally investigated. In this regard, paraffin wax and acetone have been selected as the PCM and the BF, and the effects of parameters such as the initial... 

    Fabrication and Investigation of Condensation Performance of Hybrid and Solid – Infused Surfaces

    , M.Sc. Thesis Sharif University of Technology Rezaee, Behzad (Author) ; Mousavi, Ali (Supervisor) ; Aryanpour, Masood (Supervisor)
    Abstract
    Increasing energy consumption and limited energy resources are instances of the concerns of human societies and environmentalists today. The condensation process, as one of the most important processes in the industry, plays an important role in saving and regeneration the existing energy. Nowdays, surface optimization is one of the modern ways to improve condensation.In this research, two methods have been used to construct surfaces useful for enhancement of droplet condensation, including hybrid surfaces and solid infused surfaces. In the construction of hybrid surfaces, superhydrophobic coating with silica nanoparticles based on hydroxyl acrylic resin was used. The superhydrophilic parts... 

    Heat Transfer and Pressure Drop Performance of Spiral Baffle Heat Exchangers

    , M.Sc. Thesis Sharif University of Technology Zaker Hosseini, Farhad (Author) ; Farhadi, Fathollah (Supervisor)
    Abstract
    In this work, a numerical investigation on shell side performance of a continuous helical baffle helixchanger along with smooth and helically ribbed tubes using CFD commercial code, Fluent, has been performed. The results of simulation for this type of exchanger were compared to a similar heat exchanger with segmental baffles. The geometries are created and meshed using Solidworks and Ansys Meshing softwares, respectively. Mesh generation is carried out using unstructured tetrahedral type elements. Element size (or number of elements) are chosen in such a manner that maintain accuracy and reliability of results in a reasonable run time. Simulation validation were carried out by comparison of... 

    Implementation and Analysis of Thermal Model of High Voltage Induction Motors

    , M.Sc. Thesis Sharif University of Technology Khosravifar, Mahdi (Author) ; Oraee Mirzamani, Hashem (Supervisor)
    Abstract
    Today, various industries rely on high-power, high-voltage induction motors for diverse applications. Given the critical role these motors play, any reduction in their lifespan or occurrence of failures can lead to substantial financial losses and even pose risks to lives. One significant factor influencing motor life is the temperature of its components. Manufacturers strive to enhance motor power while minimizing dimensions for economic reasons, but this increases power density and subsequent losses, elevating motor temperature. Consequently, thermal analysis becomes crucial, posing a significant challenge for companies producing high-power induction motors. In this study, a thermal model... 

    Thermal and Hydrodynamic Analyses of Shell and Tube Heat Exchangers in Different Flow Regimes Using Semi-Full-Scale Simulation Approaches

    , M.Sc. Thesis Sharif University of Technology Hassanpour Matikolaee, Mohammad Reza (Author) ; Darbandi, Masoud (Supervisor)
    Abstract
    One main problem in many numerical simulations is the lack of sufficient infrastructure data to precisely model and analyze the flow through complex geometries. Since experimental procedures are generally very expensive; and sometimes impossible, it becomes necessary to find alternative ways such as numerical approaches to predict the flow behavior through complex geometries. The heat exchangers can be categorized as geometries with complex configuration and apparently expensive to solve numerically. They are widely used in different industries including the aerospace. The restrictions in design and implementation of aviation’s heat exchangers have promoted the related companies to converge... 

    Tomography with Inverse Heat Transfer

    , M.Sc. Thesis Sharif University of Technology Haddadi, Mohammad Bagher (Author) ; Farhanieh, Bijan (Supervisor)
    Abstract
    Tomography offers a unique opportunity to unravel the complexities of the internal structure of an object without the need to invade it. There are various methods for this reason, in which all of them occupy wave or energy,ffiduction for imaging inside an object. Since the tomography plays a vital role in medicine and industry and present methods have limitation and difficulties to operate, the necessity for developing it has been inevitable. In this thesis a new tomography method has been presented in which uses inverse heat conduction for estimating unknown object with heat conductivity k2 inside a known domain with heat conductivity k 1 • For this purpose temperature is measured at... 

    Numerical Simulation of Heat Transfer on Topographically Structured Surfaces

    , M.Sc. Thesis Sharif University of Technology Javanbakht, Mohammad Hossein (Author) ; Moosavi, Ali (Supervisor)
    Abstract
    Numerous three-dimensional models of laminar flow and heat transfer in rough microchannels are developed and analyzed numerically to compare the effect of roughness elements on the thermal and hydrodynamic characteristics. In these models, the rough surfaces are configured with rectangular, triangular and sinusoidal roughness elements. Here, the effects of the roughness height, roughness element width, roughness element pitch, channel separation, Reynolds number and both Newtonian and non-Newtonian fluid on pressure drop and heat transfer in rough microchannels are all investigated and discussed.H2 thermal boundary condition is considered for all peripheral walls and power law model also is... 

    Heat Transfer Coefficient Prediction in Shell and Tube Heat Exchanger with Twisted Tube Bundle by CFD

    , M.Sc. Thesis Sharif University of Technology Jahanmir, Ghodsieh Sadat (Author) ; Farhadi, Fathollah (Supervisor)
    Abstract
    In this thesis, shell and tube heat exchanger with twisted tube bundle in 5 different twist angles is investigated using CFD commercial software, Fluent. A three dimensional unstructured grid has been employed to simulate the heat exchanger model. Optimum grid size is selected according to the level of accuracy required, optimum run time and the available computational resources. The method and simulation accuracy were verified by comparing simulation result with data from Bell-Delaware method. The RNG-K-ϵ method and second order discretization scheme for all variables are selected to model turbulent flow and solve the governing equations. Overall Heat transfer coefficient and pressure drop... 

    Upgrading and Developing The Performance of One of the Gas Turbine Engine Secondary air System Components using CFD

    , Ph.D. Dissertation Sharif University of Technology Jalali, Ramin (Author) ; Darbandi, Masoud (Supervisor)
    Abstract
    Numerical three-dimensional simulation of the entire regions of a gas turbine blade, including hot gas flow over the blade surface, conduction heat transfer within the blade metal, and coolant flow through the Internal cooling System, is highly time-consuming and expensive. Therefore, one-dimensional internal flow simulation is one of the main objectives of this research to address the limitations of commercial software in predicting the temperature distribution along the cooling path. In this study, a one-dimensional in-house simulation code is developed to simulate the coolant flow inside the cooling channels of the internal cooling system of the blade. Additionally, using artificial... 

    Experimental Investigation of Nano Particle Effect on Heat Transfer in a Micro Heat Exchanger

    , M.Sc. Thesis Sharif University of Technology Jafarpoor Chekab, Hamideh (Author) ; Shafii, Mohammad Behshad (Supervisor) ; Saidi, Mohammad Hassan (Supervisor) ; Saeedi, Mohammad Saeed (Supervisor)
    Abstract
    Modern microelectronic systems generate a large amount of heat which must be transferred out of the system without excessive temperature rise. Conventional forced air convection and microchannel cooling plates have reached their performance limits Nanofiuids are proposed as an innovative way to solve the problem. A nanofiuid is nanoscale solid particles dispersed in a traditional heat transfer liquid. Some studies show an anomalous increase in the thermal conductivity for stationary nanofiuids. However, there are only few previous studies on the convection heat transfer rate and viscosity of nanofiuids. Both convection and stationary measurements of the thermal conductivity are widely... 

    Heat and Mass Transfer in a Finite Channel

    , M.Sc. Thesis Sharif University of Technology Tohidloo, Mahdi (Author) ; Saeedi, Mohammad Hassan (Supervisor)
    Abstract
    The need for cooling and creating thermal comfort conditions for human life is one of today's severe challenges. Therefore, development and innovation to enhance the efficiency of these systems are of great importance. Among the new ideas proposed in this domain, we can mention the M-cycle, which can greatly improve the energy consumption for cooling systems in this sector. In this cycle, the desired cooling is produced by utilizing the latent heat of water evaporation, which is considered a kind of renewable energy. The systems based on this cycle are still under development, and for this reason, there is a necessity to better investigate the heat and mass transfer in the aforementioned... 

    Multi-objective Optimization of Internal Cooling Passages for a Turbine Blade

    , M.Sc. Thesis Sharif University of Technology Bokaei, Hamid Reza (Author) ; Mazaheri, Karim (Supervisor)
    Abstract
    In the present work, the shape and position of internal cooling passages within an axial turbine blade have been optimized to achieve a uniform temperature distribution with the minimum cooling air flow while the maximum temperature is below the allowable value. Four cooling passages are made within the blade. The cross section shape of each passage is parameterized using a new method based on an 8-order Bezier curve. This curve which is represented in terms of Bezier control points has much flexibility and can produce a large variety of shapes. The shape of the blade surface profile remains unchanged during the optimization process. The numerical simulation has been carried out using...