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    Effect of geometrical parameters on radiometric force in low-pressure MEMS gas actuator

    , Article Microsystem Technologies ; Volume 24, Issue 5 , 2018 , Pages 2189-2198 ; 09467076 (ISSN) Barzegar Gerdroodbary, M ; Domiri Ganji, D ; Taeibi Rahni, M ; Vakilipour, S ; Sharif University of Technology
    Springer Verlag  2018
    Abstract
    In this paper, comprehensive numerical studies are performed to investigate the effects of the geometrical factors on the performance of the low-pressure gas actuator. The flow feature and force generation mechanism inside a rectangular enclosure with heat and cold arms as the non-isothermal walls are inclusively discussed. Also, comprehensive parametric studies are done to reveal the effects of physical parameters on the performance and characteristics of this device in different operating conditions. In this study, the Knudsen number is varied from 0.1 to 4.5 to investigate all characteristics of the thermal-driven force inside the MEMS sensor. In order to simulate a rarefied gas inside... 

    The brushless doubly-fed machine vector model in the rotor flux oriented reference frame

    , Article 34th Annual Conference of the IEEE Industrial Electronics Society, IECON 2008, Orlando, FL, 10 November 2008 through 13 November 2008 ; January , 2008 , Pages 1415-1420 ; 9781424417667 (ISBN) Barati, F ; Oraee, H ; Abdi, E ; Shao, S ; Mc Mahon, R ; Sharif University of Technology
    IEEE Computer Society  2008
    Abstract
    The paper presents the vector model of the Brushless Doubly-Fed Machine (BDFM) in the rotor flux oriented reference frame. The rotor flux oriented reference frame is well known in the standard AC machines analysis and control. Similar benefits can be sought by employing this method for the BDFM The vector model is implemented in MATLAB/SIVIULINK to simulate the BDFM dynamic performance under different operating conditions. The predictions from the vector model are compared to those from the coupled circuit model in simulation. The results are shown for the cascade mode of operation. © 2008 IEEE  

    Comparative study of conventional steam-methane-reforming (SMR) and auto-thermal-reforming (ATR) with their hybrid sorption enhanced (SE-SMR & SE-ATR) and environmentally benign process models for the hydrogen production

    , Article Fuel ; Volume 297 , 2021 ; 00162361 (ISSN) Faheem, H. H ; Tanveer, H. U ; Abbas, S. Z ; Maqbool, F ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    The paper presents a comparison of steam methane reforming (SMR), sorption enhanced steam methane reforming (SE-SMR), auto-thermal reforming (ATR), and sorption enhanced auto-thermal reforming (SE-ATR) in a fixed bed reformer for hydrogen production. A one-dimensional, unsteady-state heterogeneous reactor model for each process which includes mass and thermal dispersion in the direction of flow and axial pressure distribution, has been simulated using gPROMS® 4.0.1 model builder, while CEA and Aspen Plus® have been employed to analyze the equilibrium performance and simulate the process flowsheets of individual process respectively. The performance of the individual hydrogen production... 

    An incentive-based mechanism to alleviate active power congestion in a multi-agent distribution system

    , Article IEEE Transactions on Smart Grid ; Volume 12, Issue 3 , 2021 , Pages 1978-1988 ; 19493053 (ISSN) Fattaheian Dehkordi, S ; Tavakkoli, M ; Abbaspour, A ; Fotuhi-Firuzabad, M ; Lehtonen, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2021
    Abstract
    Increasing the integration of distributed energy resources (DERs) inspired by environmental and governmental incentives, beside the introduction of multi-agent structure perspective have led to a paradigm shift of operational conditions in distribution systems. In this context, the traditional concept of fit and forget in the distribution grid management would not be efficient in the modern distribution systems and consequently new mechanisms should be developed in order to enable the distribution system operator (DSO) to efficiently manage the grid congestion caused by peak power output of DERs or load demands requests. In this article, the Stackelberg game concept is employed to develop an... 

    A novel multi-area distribution state estimation approach for active networks

    , Article Energies ; Volume 14, Issue 6 , 2021 ; 19961073 (ISSN) Gholami, M ; Abbaspour Tehrani Fard, A ; Lehtonen, M ; Moeini-Aghtaie, M ; Fotuhi Firuzabad, M ; Sharif University of Technology
    MDPI AG  2021
    Abstract
    This paper presents a hierarchically distributed algorithm for the execution of distribution state estimation function in active networks equipped with some phasor measurement units. The proposed algorithm employs voltage-based state estimation in rectangular form and is well-designed for large-scale active distribution networks. For this purpose, as the first step, the distribution network is supposed to be divided into some overlapped zones and local state estimations are executed in parallel for extracting operating states of these zones. Then, using coordinators in the feeders and the substation, the estimated local voltage profiles of all zones are coordinated with the local state... 

    A voltage balancing scheme for series igbts to increase their expected lifetime in pulsed load applications

    , Article IEEE Journal of Emerging and Selected Topics in Power Electronics ; Volume 9, Issue 1 , 2021 , Pages 461-471 ; 21686777 (ISSN) Mohsenzade, S ; Zarghani, M ; Kaboli, S ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2021
    Abstract
    Clamp mode resistor capacitor diode (CMRCD) snubbers have a simple and easy implementing structure. They have been widely adopted in the pulsed power supplies to provide a safe operating condition for the series insulated gate bipolar transistors (IGBTs). The main problem of the CMRCD snubbers is their poor performance in the voltage balancing of the series IGBTs. They are essentially overvoltage protectors and clamp the voltage of the IGBTs in a probable potentially dangerous condition. This issue diminishes the expected lifetime of the series IGBTs, where a number of them face a higher level of the voltage than that of the others. The unbalanced voltage of the series IGBTs will result in a... 

    Impact of injection parameters on mixing control by polymer-enhanced low-salinity waterflooding

    , Article Energy and Fuels ; Volume 36, Issue 19 , 2022 , Pages 11808-11816 ; 08870624 (ISSN) Darvish Sarvestani, A ; Rostami, B ; Mahani, H ; Sharif University of Technology
    American Chemical Society  2022
    Abstract
    In situ mixing by dispersive transport of salt and viscous fingering between the injected low-salinity (LS) brine and high-salinity (HS) formation brine can jeopardize the performance of low-salinity waterflooding (LSWF). In our previous papers, we demonstrated that in situ mixing can be suppressed by polymer-enhanced low-salinity waterflooding (PELS), in which a small amount of a viscosifying agent, such as a polymer, is added to the LS stream. Nevertheless, effective mixing control with PELS depends upon several factors and operational conditions, which have not yet been addressed. Therefore, this research focuses on the investigation of the impact of injection parameters, such as the... 

    Optimum operating conditions for direct oxidation of H2S in a fluidized bed reactor

    , Article World Academy of Science, Engineering and Technology ; Volume 77 , 2011 , Pages 411-415 ; 2010376X (ISSN) Golestani, F ; Kazemeini, M ; Fattahi, M ; Amjadia, A ; Sharif University of Technology
    Abstract
    In this research a mathematical model for direct oxidization of hydrogen sulfide into elemental sulfur in a fluidized bed reactor with external circulation was developed. As the catalyst is deactivated in the fluidized bed, it might be placed in a reduction tank in order to remove sulfur through heating above its dew point. The reactor model demonstrated via MATLAB software. It was shown that variations of H 2S conversion as well as; products formed were reasonable in comparison with corresponding results of a fixed bed reactor. Through analyzing results of this model, it became possible to propose the main optimized operating conditions for the process considered. These conditions included;... 

    A novel lifetime prediction method for lithium-ion batteries in the case of stand-alone renewable energy systems

    , Article International Journal of Electrical Power and Energy Systems ; Volume 103 , 2018 , Pages 115-126 ; 01420615 (ISSN) Astaneh, M ; Dufo López, R ; Roshandel, R ; Bernal Agustin, J. L ; Sharif University of Technology
    Elsevier Ltd  2018
    Abstract
    This paper presents a mathematical formulation of lithium-ion batteries, including aging and temperature effects. The model is developed by integrating the simplified single particle model (SSPM) and reduced-order model (ROM) to predict solid electrolyte interphase growth (SEI). Results show agreement with the experimental data at 25 °C operating temperature and moderate cycling currents. A maximum error of 3.6% in finding the battery discharged Ah is observed in harsh operating conditions, including 60 °C and approaching the end of life of the battery. Due to the typical operating conditions of stand-alone renewable energy systems, more accurate estimations are expected. Finally, this... 

    Simulation and Estimation of Power Generation in Natural Gas Network by Micro Turboexpanders

    , M.Sc. Thesis Sharif University of Technology Hejazi, Bijan (Author) ; Farhadi, Fatolah (Supervisor)
    Abstract
    This thesis studies the economic feasibility of replacing a throttling valve with an expansion turbine in a city gate station for the purpose of distributed electricity generation through exergy recovery from pressurized natural gas. Conventionally, high pressure natural gas stream enters a pressure reduction station with its physical exergy completely destroyed in an irreversible Joule-Thompson effect of a throttling valve. To avoid hydrate formation at the outlet of the turboexpander, the inlet stream should be preheated. Although pressure reduction stations are inherently subject to seasonal fluctuations of inlet natural gas pressure and flow rate, the preheating temperature should be... 

    , M.Sc. Thesis Sharif University of Technology (Author) ; Farhadi, Fathollah (Supervisor)
    Abstract
    The aim of this project is Industrial Solvents (White Spirit) producing in Tehran Refinery. For this manner “Wild Naphtha” from Gasoil Hydrotreater and Kerosene Hydrotreater Units was chosen as feed stock for solvents preparation. In addition, Pentane Recovery Column is selected for Simulation and Optimization based on Wild Naphtha. As a Result, Abadan White Spirit 402 and 410 has been produced and a side stream which is full of Aromatic is obtained. Simultaneously, Tray Hydraulics and Solvents production in different cases (Various Pressure and different Split Ratio of Feed Stock) are evaluated, so optimum Tower process conditions such as pressure, Temperature and Split Ratio of Feed Stock... 

    Degradation Based Framework for Long-term Optimization of Energy Conversion Systems. Case Studies: Solid Oxide Fuel Cell Gas Turbine

    , Ph.D. Dissertation Sharif University of Technology Parhizkar, Tarannom (Author) ; Roshandel, Ramin (Supervisor)
    Abstract
    The energy systems efficiency is a great issue confront power plants professionals. Besides using high-tech components in power plants, plant operation optimization can significantly improve energy efficiency and economic performance, as efficiency of plant components generally depends on operating conditions. In addition, system preventive maintenance can reduce plant operation and failure costs, however it is also costly when done frequently. Therefore, optimizing operating conditions and preventive maintenance intervals can minimize the expected total cost of plant due to operation, failures and preventive maintenances. In recent years, the use of optimization models to determine plant... 

    Experimental Investigation of Effective Parameters on Performance of Micro-sized Bio-electrochemical Systems

    , M.Sc. Thesis Sharif University of Technology Mehran, Narges (Author) ; Yaghmaei, Soheila (Supervisor)
    Abstract
    This study is a report on the fabrication of a novel single-chamber micro-structure microbial fuel cell consisting of spiral anode chamber. A 3×3 cm plexiglass plate with 1 mm thickness was used as main body. A spiral microchannel (1 mm in width and 226 mm in length) was cut using a laser beam as an anodic compartment. Two types of microbial fuel cells with the same anode electrode (stainless steel mesh) and different cathode electrodes (stainless steel mesh and carbon cloth) were constructed in order to investigate the effect of cathode electrode material on microbial fuel cell performance. In both batch and continuous mode, higher power density was obtained by microbial fuel cell with... 

    CFD Modeling of Fixed Bed Reactor for Direct Synthesis of DME from Syngas and Carbon Dioxide

    , M.Sc. Thesis Sharif University of Technology Moradi, Fazel (Author) ; Kazemeini, Mohammad (Supervisor)
    Abstract
    Today, the global environmental restrictions as well as; energy problems have directed researchers toward developing ideas of producing a clean liquid fuel from coal or natural gas as a major research topic. In this regard, a special attention is paid to the dimethyl ether (DME) as a clean material containing 34.8% oxygen possessing enough positive potential to replace the diesel and LPG fuels. One of the most economic routes for producing the DME is known to be the direct conversion of the synthesis gases and carbon dioxide first to the methanol and then its dehydration to the DME. Moreover, the DME is not limited to a particular country or resource area since small reservoirs of natural... 

    CFD Simulation of a Polymeric Solution Flow in Doctor Blade Film Coating Process for Pruducing Desirable Thin Film

    , M.Sc. Thesis Sharif University of Technology Mollataheri, Mehdi (Author) ; Mohammadi, Ali Asghar (Supervisor) ; Musavi, Abbas (Supervisor)
    Abstract
    Lately, some investigators of polymer engineering group are working to do continuous polymer solution casting process, rather than batch process for flat sheet membrane production. For this, they use a doctor blade system but, they faced some problems during coating process. From experimental observations of the studied system, some inappropriate vorticities were seen. That’s why the system forms a non-uniform film of the solution. Air bubbling occurs at system exit which is undesirable as well. In this study simulation and optimization has been done for forming thin film in doctor blade system. COMSOL Multiphysics 4.3b was used in purpose of simulating which works on numerical finite... 

    Modeling and Analysis of Optimal Control and Condition Monitoring of Fuel Cell System Based on Performance History

    , M.Sc. Thesis Sharif University of Technology Parhizgar, Tarannom (Author) ; Roshandel, Ramin (Supervisor)
    Abstract
    The short life of Polymer Electrolyte Membrane (PEM) fuel cells is one of the critical criteria to their commercialization. A longer operation life time should be achieved to reach high reliability, low $/kWh cost and to use fuel cells as economical alternative energy systems.Therefore,diagnosing degradation mechanisms and the causes of power loss in fuel cell life time is of great importance. Operating conditions affect output power density and performance degradation. To achieve maximum power generation through fuel cell life time, a model is needed which is able to estimate power density and performance degradation simultaneously regarding to operating conditions. In present work, a... 

    Data-driven Nexus Analysis and Optimization of a Complex Thermo-gasdynamic Energy System and Implementation on an Old National Thermal Power plant in Operational Conditions

    , M.Sc. Thesis Sharif University of Technology Momeni Masuleh, Ghadir (Author) ; Mazaheri, Karim (Supervisor)
    Abstract
    The performance of the power plant decreases during its lifetime and deviates from its design and initial operation conditions; Maintenance issues, variety of operational patterns, market limitations and financial goals have been caused this situation. Knowing the appropriate actions and finding the optimal operation conditions of the power plant can support the system to restore its initial operational performance and bring it closer to its design condition. In this research, with historical data helps of a steam thermal power plant in Kermanshah, unsupervised machine learning techniques have been used to identify operational patterns, which lead to the identification of optimal operating... 

    Integrated Safe Design of Industrial Processes under Uncertainty

    , M.Sc. Thesis Sharif University of Technology Meghdari, Mojtaba (Author) ; Rashtchian, Davood (Supervisor) ; Sharifzadeh, Monireh (Supervisor)
    Abstract
    Chemical industries are associated with hazardous chemicals and extreme operating conditions. Unsafe events can incur dramatic costs in terms of the loss of life, financial penalties and damages to the environment. Therefore, design of industrial processes which can be operated safely over a wide range of operating conditions is vital. Nevertheless, operation of industrial processes is a strong function of their design. If the process is initially poorly designed, ensuring its safe operation, if not impossible, would require costly modifications at the operational phases. This observation is due to the fact that process design decisions (e.g. design of process equipment) often have a... 

    Hydrogen, nitrogen and carbon dioxide production through chemical looping using iron-based oxygen carrier - A Green plant for H2 and N 2 production

    , Article International Journal of Hydrogen Energy ; Vol. 39, issue. 20 , 2014 , pp. 10380-10391 ; ISSN: 03603199 Edrisi, A ; Mansoori, Z ; Dabir, B ; Shahnazari, A ; Sharif University of Technology
    Abstract
    In order to simulate the performance of pure methane in chemical looping using iron-based oxygen carrier, simultaneously production of three pure streams of hydrogen, nitrogen and carbon dioxide has been investigated. For this purpose, proper operating conditions have been discussed for maximum production of hydrogen, complete consumption of oxygen of inlet air and complete combustion of methane. Professional software is used to simulate the chemical looping reactors and optimize their output streams. Results show that in this process each mole of methane fuel can produce 2.533, 2.65 and 0.99 mol of pure N 2, H2 and CO2, respectively which contributes 80.2% energy conversion of CH4 to H2.... 

    Numerical study on water distribution in different layers of direct methanol fuel cells

    , Article Journal of the Electrochemical Society ; Vol. 161, issue. 8 , 2014 , pp. E3110-E3124 ; ISSN: 00134651 Kalantari, H ; Baghalha, M ; Sharif University of Technology
    Abstract
    In this paper, a two-dimensional, two-phase, isothermal model is presented to investigate the water transport characteristic and water distribution in a direct methanol fuel cell (DMFC) with emphasis on exploring the water distribution in different layers of DMFC. The liquid-gas two-phase mass transport in the porous anode and cathode is formulated based on multi-fluid model in porous media and water and methanol crossover through the membrane are considered with the effect of diffusion, electro-osmotic drag, and convection. The modeling results agree well with the three different experimental data in an extensive range of operation conditions. A parametric study is also performed to examine...