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    Experimental Investigation of a Multi-Purpose Energy System Composed of Pulsating Heat Pipe, Solar Collector and PCM

    , Ph.D. Dissertation Sharif University of Technology Kavoosi-Balootaki, Hassan (Author) ; Saeedi, Mohammad Hassan (Supervisor)
    Abstract
    In solar systems, the required space and cost, the impossibility of continuous access to energy, energy storage and optimal use of the received energy are the basic parameters and issues. Therefore, with the knowledge of these cases, proposing ideas and approaches to study the possibility of reducing the above mentioned issues are of the main objectives of this research. In solar thermal systems and solar electrical systems, the collector and photovoltaic panels are the main components, respectively. However, the studies show that there are issues regarding the existing collectors and photovoltaic panels, e.g. the flat-plate type which is most used in solar systems, and the basis is not... 

    Path-following in Predictive Rollover Prevention in High CG Vehicles

    , Ph.D. Dissertation Sharif University of Technology Ghazali, Mohammad (Author) ; Durali, Mohammad (Supervisor) ; Salarieh, Hassan (Co-Advisor)
    Abstract
    In this thesis vehicle path-following in the presence of rollover risk is investigated. Vehicles with high center of mass are prone to roll instability. Untripped rollover risk is increased in high center of gravity vehicles and high-friction road condition. Some researches introduce strategies to handle the short-duration rollover condition. These strategies, however, yield to trajectory tracking error in semi-static maneuvers. Tracking error may also cause tripped rollover. In some other works rollover is prevented by velocity reduction. Rollover is again probable before sufficient reduction of velocity. This thesis puts stress on tracking error from rollover prevention. A lower level... 

    Radar Target Recognition using High Resolution Range Profile

    , M.Sc. Thesis Sharif University of Technology Aghatabar Roodbary, Amin (Author) ; Bastani, Mohammad Hassan (Supervisor)
    Abstract
    One of the subsets of the radar systems is recognition of targets. Radar Target Recognition (RTR) is a process in which a target is distinguished from a set of targets. To recognize radar targets, we need to extract useful information from the returned signal from them. The most important issues in recognizing radar targets are the selection of information that reduces the amount of information needed for the identification process, the ease of extracting information from the moving target, and the ease of decision making to determine the identity of the target. One method is to produce a high resolution range profile, which is the one-dimensional image of the target in the direction of... 

    Cross-Platform Software Testing

    , M.Sc. Thesis Sharif University of Technology Niroomand, Mohammad Hassan (Author) ; Mirian Hosseinabadi, Hassan (Supervisor)
    Abstract
    According to expanding penetration of Internet and the increased power of processing devices in the recent years, softwares are incisingly used for daily acitivies. The variety of hardware configuration and operating system of such devices leds the companies to take advantage of cross-platform software development methods. Although the production of cross platform software, resude development costs, it results in an specific type of faults known as platform-specific failures. These faults occur when software is running on specific platforms, and therefore, to identify and resolve them, the software test process should be performed on different platforms. To deal with this problem, we present... 

    Two-phase, Two-component Simulation of Nanofluids in Natural Convection Applying Lattice Boltzmann Method

    , Ph.D. Dissertation Sharif University of Technology Hosseini Abadshapoori, Mehdi (Author) ; Saeedi, Mohammad Hassan (Supervisor)
    Abstract
    The advances of technology of microelectrical devices and their computational capacity and so, their heat rates, make the thermal control of them more complex. Utilizing nanopfluids is one of proposing options. The current research investigates the effectiveness of using nanoparticles on the heat transfer rate of fluids in the natural convection. A two-component two-phase lattice Boltzmann method (LBM) has been implemented for this purpose. A wide range of Rayleigh number (Ra), namely 103 to 109, 0 to 0.05 volume fraction s of nanoparticles and nanoparticle diameters below 100 nm has been investigated in this research. The method is optimized for complex geometries. Two and three dimensional... 

    Harvesting Energy from Magnetic Shape Memory Alloys in Plannar Loading

    , M.Sc. Thesis Sharif University of Technology Karamian Manesh, Mohammad Javad (Author) ; Sayyadi, Hassan (Supervisor)
    Abstract
    Harvesting energy by magnetic shape memory alloy has many advantages against other various methods which harvested from environmental vibrations and has been considered due to high long longevity, large strain amplitude and good performance in low frequencies. These materials can display up to % recoverable strain in response to the application of a magnetic field or compressive mechanical stress. Microstructure of these materials changes under applying mechanical loading and/or magnetic field which cause magnetic vector rotating in magnetic domain. Change in magnetization of these materials, lead to harvesting energy by considering Faraday's law of induction. The model of this... 

    Numerical Simulation of Flow Focusing Injectors for Liquid Microjet

    , M.Sc. Thesis Sharif University of Technology Hassan Beikian, Somayeh (Author) ; Morad, Mohammad Reza (Supervisor)
    Abstract
    One of the key features of multiphase flow applications is the creation of as little liquid droplets as possible. For example, it is important to use combustion to burn liquid fuels in combustion chambers, fuel-air mixing and complete evaporation of fuel. Liquid fuel should be converted into small droplets and then mixed with air quickly and evaporated. This challenge has been investigated using injectors of various designs and is still being investigated. One of the injectors used is injectors where both gas and liquid are injected into the injector and supplemented with each other. These injectors are referred to as focal injectors, in which gas flows through a typical orifice to... 

    Radar Target Recognition Using Range Profiles Synthesized by Random Stepped Frequency Radar

    , M.Sc. Thesis Sharif University of Technology Sadeghi Ghartavol, Mohammad (Author) ; Bastani, Mohammad Hassan (Supervisor)
    Abstract
    Target recognition is one of the widespread applications of today's radars that requires obtaining target signatures using radar measurements. High-resolution range profile (HRRP) is one of these signatures that provides a one-dimensional radar image of the target. There are several methods for radar target's HRRP synthesis , all of which require a large bandwidth. One of these methods is the use of stepped frequency radar. One of the advantages of this method is providing a wide bandwidth by sending pulses with small bandwidths, thus obviating the need for broadband receivers and transmitters and making implementation easier. In many cases HRRP of target is sparse, because the number of... 

    Design of a Hybrid Residential Compressed Air Energy Storage System Focusing on Its Economic Considerations

    , M.Sc. Thesis Sharif University of Technology Khedmati, Amir Reza (Author) ; Saeedi, Mohammad Hassan (Supervisor)
    Abstract
    In recent years, energy storage systems have received widespread attention from researchers to increase the reliability of the power grid. These systems have different types that compressed air system is of special importance due to its high stored energy and long life. In this system, the surplus of electricity generated from renewable energy sources or grid electricity at low power consumption is compressed and stored in a tank. When there is a need for power consumption or peak power consumption, compressed air will generate electricity by passing through the turbine and will help the network. Large-scale type of the system requires special geographical location for air storage; for this... 

    Fusion of Inertial Navigation and Visual Odometry

    , M.Sc. Thesis Sharif University of Technology Aarabi Ardakani, Mohammad Sajjad (Author) ; Sayyadi, Hassan (Supervisor)
    Abstract
    The error of the inertial navigation system increases over time due to the cumulative errors of sensors. Inertial navigation system couples with sensors or other systems to prevent navigation system errors growth. One of the systems that can be used to couple with inertial navigation system is visual odometry. Visual odometry can calculate relative position of the camera at any time and estimate the device path through input images from one camera (Monocular) or multiple cameras (Stereo). Visual odometry algorithms improvements in recent decade cause this system used as real time. In this thesis, DSO algorithm, which is a direct method and monocular approach, couples with an inertial system... 

    Presenting a Design of a Cooling-heating System Using a Dehumidifying Wheel and Using Solar and Geothermal Energy for Different Climates of Iran

    , M.Sc. Thesis Sharif University of Technology Ahmadi Doghezloo, Arash (Author) ; Saeedi, Mohammad Hassan (Supervisor)
    Abstract
    The sun is a clean and sustainable source of energy that can be considered a good alternative to fossil fuels at a low cost. Solar energy can be used for heating and electricity generation. As another source of clean energy, the earth has a good heating and cooling potential, which, due to its lower temperature than the environment in summer and vice versa in winter, makes it a suitable option for heating and cooling. This research aims to design a new system based on desiccant wheels that provides a cooling load for a building with a floor area of 60 square meters and a volume of 185 cubic meters. This system uses solar energy to provide heating and electricity and uses the earth as a heat... 

    Modeling of the Wet Compression System in Transient Behavior of the Industrial Gas Turbine

    , Ph.D. Dissertation Sharif University of Technology Keshavarz Mohammadian, Poorya (Author) ; Saeedi, Mohammad Hassan (Supervisor)
    Abstract
    In general, the output power of the gas turbines decreases as the ambient temperature increases. One of the ways to deal with such a performance loss is to use a wet compression system, which reduces the air temperature rise throughout the compressor. In this system, the water droplets are injected into the compressor inlet and evaporated throughout the stages. As a result, the work of the compressor decreases, and the power and efficiency of the whole engine increase. Most of the researchers in this field have tried to develop mathematical models to investigate the effects of this system on compressor and gas turbine performance in steady-state conditions. However, it is necessary to... 

    Evaluation the Accuracy of Seismic Force and Equivalent Static Procedure Fit from Nonlinear Dynamic Behavior Perspective

    , M.Sc. Thesis Sharif University of Technology Pourmohammadi, Mohammad Fazel (Author) ; Alijani Moghaddam, Hassan (Supervisor)
    Abstract
    Since 1906, after the earthquake of Messina in Italy, Italian engineers start developing a new method for increasing the resistance of a structure during an earthquake. With the limitation of time and technology, this method was acceptable for the time period. By developing the accelerographs and seismographs and the methods to process big data, new methods are developed and are being used in designing structures; new technologies allow engineers to analyze the performance of structures with ease. The studies in this research indicates that achieving the safety indices in any design require utilizing all dynamic properties of a structure such as period, stiffness and damping. In this... 

    Discovering and Improving the Processes of an Iranian Psychiatric Hospital Using Process Mining

    , M.Sc. Thesis Sharif University of Technology Roshan, Mohammad Amin (Author) ; Hassan Nayebi, Erfan (Supervisor)
    Abstract
    Providing quality hospital services depends on the efficient and correct implementation of processes. Therapeutic care processes are a set of activities that are carried out with the aim of diagnosing, treating and preventing any disease in order to improve and promote the patient's health. The purpose of this study is to use process mining techniques to discover and improve healthcare processes. The case study of this research is a psychiatric hospital in Shiraz. The approach implemented in this research consists of three main stages including data pre-processing, model discovery phase, and analysis phase. Three algorithms including Heuristic Miner, Inductive Miner, and ILP Miner were used... 

    Effects of Trim tab on High Speed Vessel‘s Performance

    , M.Sc. Thesis Sharif University of Technology Tamaddondar, Mohammad Hashem (Author) ; Sayyadi, Hassan (Supervisor) ; Seif, Mohammad Saeed (Supervisor)
    Abstract
    Wide range application of high speed marine crafts in marine industry and other related industries results in attempts to improve the performance of such vessels. The main ideas of using control surfaces in high speed planing crafts are the change of the high speed planing craft‘s resistance due to change of their running attitudes and wave response mitigation of this vessels. Control surfaces produce forces and a pitching moment due to a pressure distribution caused by them, which can be used to alter the running attitude of high speed marine crafts. The present work contains a comprehensive study on trim tab as a control surface for the high speed crafts. The results of this study condense... 

    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... 

    Combined Electroosmotically and Pressure Driven Flow of Power-Law Fluids in Rectangular Microchannels

    , M.Sc. Thesis Sharif University of Technology Vakili, Mohammad Ali (Author) ; Saidi, Mohammad Hassan (Supervisor) ; Mozafari, Ali Asghar (Supervisor)
    Abstract
    Electroosmosis is the predominant mechanism for flow generation in lab-on-a-chip devices. These microfluidic devices are microscale laboratories on a microchip that can perform clinical diagnoses. Since most biofluids encountered in these devices are considered to be non-Newtonian and the cross section of microchannels in these devices is close to a rectangular shape, In this study, the hydrodynamically and thermally fully developed combined electroosmotically and pressure driven flow of power-law fluids in rectangular microchannels is analyzed. The governing equations are first made dimensionless and then transformed into new ones based on the computational parameters which provide mesh... 

    Theory and simulation of cavity quantum electro-dynamics in multi-partite quantum complex systems

    , Article Applied Physics A: Materials Science and Processing ; Vol. 115, issue. 2 , 2014 , p. 595-603 Alidoosty Shahraki, M ; Khorasani, S ; Aram, M. H ; Sharif University of Technology
    2014
    Abstract
    The cavity quantum electrodynamics of various complex systems is here analyzed using a general versatile code developed in this research. Such quantum multi-partite systems normally consist of an arbitrary number of quantum dots in interaction with an arbitrary number of cavity modes. As an example, a nine-partition system is simulated under different coupling regimes, consisting of eight emitters interacting with one cavity mode. Two-level emitters (e.g. quantum dots) are assumed to have an arrangement in the form of a linear chain, defining the mutual dipole-dipole interactions. It was observed that plotting the system trajectory in the phase space reveals a chaotic behavior in the... 

    Simulation of multipartite cavity quantum electrodynamics

    , Article IEEE Journal of Quantum Electronics ; Volume 49, Issue 12 , October , 2013 , Pages 1066-1079 ; 00189197 (ISSN) Alidoosty, M ; Khorasani, S. A ; Aram, M. H ; Sharif University of Technology
    2013
    Abstract
    Cavity quantum electrodynamics of multipartite systems are studied in depth, which consists of an arbitrary number of emitters in interaction with an arbitrary number of cavity modes. The governing model is obtained by taking the full field-dipole and dipole-dipole interactions into account, and is solved in the Schrödinger picture with assumption of vanishing field and dipole interactions at high energies. An extensive code is developed that is able to solve the system and track its evolution in time, while maintaining sufficient degrees of arbitrariness in setting up the initial conditions and interacting partitions. Using this code, we have been able to numerically evaluate various... 

    A New Pattern for Controlling Construction Waste, An Approach Toward Sustainable Development

    , M.Sc. Thesis Sharif University of Technology Mahpour, Amir Reza (Author) ; Mortaheb, Mohammad Mehdi (Supervisor) ; Sebt, Mohammad Hassan (Co-Advisor)
    Abstract
    Wasteful approach in utilizing construction materials will result in depletion of resources and sacrificing future generations rights which is against sustainable development per se. As a corollary, presenting a new approach is aimed in this dissertation in order to decline avoidable building materials’ waste to the possible extent. This research focuses on wasted materials or construction waste. In this research, data about wastages of construction materials is gathered by surveying 32 residential buildings in Tehran. Afterwards, using multiple linear regression by IBM SPSS, wastages are quantified in terms of controllable independent variables namely floor area, number of stories, contract...