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    A general multi-scale modeling framework for two-phase simulation of multi-stream plate-fin heat exchangers

    , Article International Journal of Heat and Mass Transfer ; Volume 156 , 2020 Niroomand, R ; Saidi, M. H ; Hannani, S. K ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Compact heat exchangers are among the vital components used in various industries. In this study, a general framework has been developed with a multi-scale point of view for three-dimensional simulation of multi-stream plate-fin heat exchangers. The most important features in the MSPFHEs simulation, such as phase change phenomena, multi-component mixtures, multiple streams, transversal, lateral and longitudinal conduction, non-uniformity of inlet flow, variable fluid properties, and heat leakage are simultaneously considered in this model. The modular form of the model structure has facilitated layer-by-layer simulation of cross flow heat exchangers as well as parallel flow ones. Our model... 

    Effects of contact angle hysteresis on drop manipulation using surface acoustic waves

    , Article Theoretical and Computational Fluid Dynamics ; Volume 34, Issue 1-2 , 2020 , Pages 145-162 Sheikholeslam Noori, M ; Taeibi Rahni, M ; Shams Taleghani, A ; Sharif University of Technology
    Springer  2020
    Abstract
    Surface acoustic waves have gained much attention in flow control given the effects arising from acoustic streaming. In this study, the hydrodynamic interference of a drop under surface acoustic waves is comprehensively investigated and the contact angle hysteresis effects are considered, too. This paper reveals the effects of some control parameters such as wave amplitude and wave frequency on the dynamical behaviors of drop. For these purposes, a multiple-relaxation-time color-gradient model lattice Boltzmann method is developed. In these case studies, wave frequency and amplitude were in the ranges of 20–60 MHz and 0.5–2 nm, respectively. In addition, the density ratio of 1000, the... 

    Numerical analysis of droplet motion over a flat plate due to surface acoustic waves

    , Article Microgravity Science and Technology ; Volume 32, Issue 4 , 2020 , Pages 647-660 Sheikholeslam Noori, S. M ; Taeibi Rahni, M ; Shams Taleghani, S. A ; Sharif University of Technology
    Springer  2020
    Abstract
    Micro-scale systems have gained considerable attention in recent years and a large amount of researches have been done in this field. In this study, the hydrodynamic interference of a droplet is comprehensively investigated under surface acoustic waves. This paper reveals the effects of some control parameters such as wave amplitude and wave frequency on the dynamical behavior of droplet. For these purposes, a two-dimensional multiple-relaxation-time color-gradient model lattice Boltzmann method is developed. This model is first validated by dynamical behaviors of a droplet subjected to shear flow. Moreover, displacement of a droplet affected by surface acoustic waves is comprehensively... 

    Simulation of incompressible two-phase flows with large density differences employing lattice Boltzmann and level set methods

    , Article Computer Methods in Applied Mechanics and Engineering ; Volume 198, Issue 2 , December , 2008 , Pages 223-233 ; 00457825 (ISSN) Mehravaran, M ; Hannani, S. K ; Sharif University of Technology
    2008
    Abstract
    A hybrid lattice Boltzmann and level set method (LBLSM) for two-phase immiscible fluids with large density differences is proposed. The lattice Boltzmann method is used for calculating the velocities, the interface is captured by the level set function and the surface tension force is replaced by an equivalent force field. The method can be applied to simulate two-phase fluid flows with the density ratio up to 1000. In case of zero or known pressure gradient the method is completely explicit. In order to validate the method, several examples are solved and the results are in agreement with analytical or experimental results. © 2008 Elsevier B.V. All rights reserved  

    Nonisothermal two-phase modeling of the effect of linear nonuniform catalyst layer on polymer electrolyte membrane fuel cell performance

    , Article Energy Science and Engineering ; Volume 8, Issue 10 , 2020 , Pages 3575-3587 Sabzpoushan, S ; Jafari Mosleh, H ; Kavian, S ; Saffari Pour, M ; Mohammadi, O ; Aghanajafi, C ; Ahmadi, M. H ; Sharif University of Technology
    John Wiley and Sons Ltd  2020
    Abstract
    In this research, it is investigated to numerically evaluate the performance of a polymer electrolyte membrane fuel cell (PEMFC). The performance is investigated through the nonuniformity gradient loading at the catalyst layer (CL) of the considered PEMFC. Computational fluid dynamics is used to simulate a 2D domain in which a steady-state laminar compressible flow in two-phase for the PEMFC has been considered. In this case, a particular nonuniform variation inside the CL along the channel is assumed. The nonuniform gradient is created using a nonisothermal domain to predict the flooding effects on the performance of the PEMFC. The computational domain is considered as the cathode of PEMFC,... 

    Entrapped air in long water tunnels during transition from a pressurized to free-surface flow regime

    , Article Scientia Iranica ; Volume 13, Issue 2 , 2006 , Pages 174-186 ; 10263098 (ISSN) Kabiri Samani, A. R ; Borghei, S. M ; Saidi, M. H ; Sharif University of Technology
    Sharif University of Technology  2006
    Abstract
    Air-water two-phase flow usually occurs during a sudden rise in water level at a tunnel or during the falling of the water level at an upstream reservoir while entering the conduit. When this happens, different flow patterns are generated, due to the hydraulics of flow and fluid properties. An analytical/numerical model, based on the assumption of a rigid incompressible water column and a compressible air bubble, is derived, to simulate pressure fluctuation, void fraction, air/water flow rate and water velocity in a closed conduit, including water depth at the upper reservoir, due to air bubbles becoming trapped in the water, for the highest possible number of flow patterns. It is a... 

    Determining water-oil relative permeability and capillary pressure from steady-state coreflood tests

    , Article Journal of Petroleum Science and Engineering ; Volume 205 , 2021 ; 09204105 (ISSN) Borazjani, S ; Hemmati, N ; Behr, A ; Genolet, L ; Mahani, H ; Zeinijahromi, A ; Bedrikovetsky, P ; Sharif University of Technology
    Elsevier B.V  2021
    Abstract
    This study aims at the simultaneous determination of relative permeability and capillary pressure from steady-state corefloods. Besides using the measurements of pressure-drop across the core and average saturation under steady-state conditions, we use the transient data between the sequential steady states. The inverse algorithm is based on four type curves “stabilizsation period versus water-cut” revealed by asymptotic analysis of the transient solution near end-point saturations, and on the exponential shape of transition data histories observed by direct numerical runs. The transition measurements are approximated in the stabilisation periods by the type curves using non-linear... 

    Theoretical comparative assessment of single- and two-phase models for natural convection heat transfer of Fe3O4/ethylene glycol nanofluid in the presence of electric field

    , Article Journal of Thermal Analysis and Calorimetry ; Volume 146, Issue 2 , 2021 , Pages 981-992 ; 13886150 (ISSN) Etesami, N ; Tavakoli, S ; Pishvaie, M. R ; Sharif University of Technology
    Springer Science and Business Media B.V  2021
    Abstract
    Natural convective heat transfer of Fe3O4/ethylene glycol nanofluids around the platinum wire as a heater in the absence and presence of the high electric field was investigated, numerically. The control volume finite element method was employed for the numerical simulation. Effects of the flow model, the volume fraction of nanoparticles, Rayleigh number, and the electric field intensity on the natural heat transfer coefficient (NHTC) of nanofluid were studied. Simulation results of single-phase and two-phase flow models showed that the two-phase model could better predict experimental data than the single-phase model due to take into account the velocity of each phase in the mixture. The... 

    Numerical analysis of two-phase flow in heterogeneous porous media during pre-flush stage of matrix acidizing: Optimization by response surface methodology

    , Article Physics of Fluids ; Volume 33, Issue 5 , 2021 ; 10706631 (ISSN) Sabooniha, E ; Rokhforouz, M. R ; Kazemi, A ; Ayatollahi, S ; Sharif University of Technology
    American Institute of Physics Inc  2021
    Abstract
    Oil trapping behavior during the pre-flush stage is critically important to evaluate the effectiveness of matrix acidizing for the oil well stimulation. In this study, the visco-capillary behavior of the two-phase flow in the pore-scale is analyzed to investigate the influence of wetting properties for a natural rock sample. A two-dimensional model, based on Cahn-Hilliard phase-field and Navier-Stokes equations, was established and solved using the finite element method. A stability phase diagram for log capillary number (Ca)-log viscosity ratio (M) was constructed and then compared with the reported experimental works. The maximum and minimum ranges of capillary number and viscosity ratio... 

    Mechanistic study of the effects of dynamic fluid/fluid and fluid/rock interactions during immiscible displacement of oil in porous media by low salinity water: Direct numerical simulation

    , Article Journal of Molecular Liquids ; Volume 322 , 2021 ; 01677322 (ISSN) Alizadeh, M ; Fatemi, M ; Sharif University of Technology
    Elsevier B.V  2021
    Abstract
    Low salinity waterflooding (LSWF) is a process in which by lowering the ionic strength and/or manipulation of the composition of the injection water, the long term equilibrium in oil/brine/rock system is disturbed to reach a new state of equilibrium through which the oil production will be enhanced due to fluid/fluid and/or rock/fluid interactions. In spite of recent advances in the simulation of the LSWF at core scale and beyond, there are very few works that have modelled and simulated this process at the pore scale specially using direct numerical simulation (DNS). As a result the effects of wettability alteration and/or Interfacial Tension (IFT) change on the distribution of the phases... 

    Mechanistic study of the effects of dynamic fluid/fluid and fluid/rock interactions during immiscible displacement of oil in porous media by low salinity water: direct numerical simulation

    , Article Journal of Molecular Liquids ; Volume 322 , 2021 ; 01677322 (ISSN) Alizadeh, M ; Fatemi, M ; Sharif University of Technology
    Elsevier B.V  2021
    Abstract
    Low salinity waterflooding (LSWF) is a process in which by lowering the ionic strength and/or manipulation of the composition of the injection water, the long term equilibrium in oil/brine/rock system is disturbed to reach a new state of equilibrium through which the oil production will be enhanced due to fluid/fluid and/or rock/fluid interactions. In spite of recent advances in the simulation of the LSWF at core scale and beyond, there are very few works that have modelled and simulated this process at the pore scale specially using direct numerical simulation (DNS). As a result the effects of wettability alteration and/or Interfacial Tension (IFT) change on the distribution of the phases... 

    An extended-fem model for co2 leakage through a naturally fractured cap-rock during carbon dioxide sequestration

    , Article Transport in Porous Media ; Volume 145, Issue 1 , 2022 , Pages 175-195 ; 01693913 (ISSN) Khoei, A. R ; Ehsani, R ; Hosseini, N ; Sharif University of Technology
    Springer Science and Business Media B.V  2022
    Abstract
    In this paper, a numerical model is developed for the assessment of carbon dioxide transport through naturally fractured cap-rocks during CO2 sequestration in underground aquifers. The cap-rock contains two types of fracture with different length scales: micro-cracks (fissures) and macro-cracks (faults). The effect of micro-cracks is incorporated implicitly by modifying the intrinsic permeability tensor of porous matrix, while the macro-cracks are modeled explicitly using the extended finite element method (X-FEM). The fractured porous medium is decomposed into the porous matrix and fracture domain, which are occupied with two immiscible fluid phases, water and CO2. The flow inside the... 

    A multiple-point statistics algorithm for 3D pore space reconstruction from 2D images

    , Article Advances in Water Resources ; Volume 34, Issue 10 , October , 2011 , Pages 1256-1267 ; 03091708 (ISSN) Hajizadeh, A ; Safekordi, A ; Farhadpour, F. A ; Sharif University of Technology
    2011
    Abstract
    Fluid flow behavior in a porous medium is a function of the geometry and topology of its pore space. The construction of a three dimensional pore space model of a porous medium is therefore an important first step in characterizing the medium and predicting its flow properties. A stochastic technique for reconstruction of the 3D pore structure of unstructured random porous media from a 2D thin section training image is presented. The proposed technique relies on successive 2D multiple point statistics simulations coupled to a multi-scale conditioning data extraction procedure. The Single Normal Equation Simulation Algorithm (SNESIM), originally developed as a tool for reproduction of... 

    3D Numerical Simulation of Two-Phase Immiscible Flow in Axial Vortex Technology and Economic Analysis for Industrial Produced Water Pretreatment Facility in Desalting Plants

    , M.Sc. Thesis Sharif University of Technology Aghaee, Mohammad (Author) ; Roshandel, Ramin (Supervisor) ; Ashjari, Mohammad Ali (Supervisor)
    Abstract
    The phenomenon of vortex flow, is one of the most predominant streams in the nature. This phenomenon yielded by the motion of vortices, produces up to 1000 times acceleration of the Earth’s gravity. The issues of uncontrolled harvesting of oil wells and increase the life of the wells, which cause to increase in the extracted crude salt, reveal the importance of waste management and both handling and refining petroleum. According to global statistics, for every extracted barrel of oil, three barrels of water are yielded. Therefore, 250 million produced water barrels per day is produced.The separator technology with vortex core (brand Voraxial) is one of the latest technologies in waste-water... 

    Numerical Solution of Flow and Heat Transfer in Micro Heat Pipes

    , M.Sc. Thesis Sharif University of Technology Mondegari, Ali (Author) ; Farhanieh, Bijan (Supervisor) ; Afshin, Hossein (Co-Advisor)
    Abstract
    One of the important issues that increasing development of electronic systems has caused is how to transfer the generated heat out of the system. Heat pipes can transfer large amount of heat because of using latent heat of evaporation and condensation. In micro scales using micro heat pipes is popular that in this instrument liquid returns to evaporator by means of surface tension force. So numerical solution is essential for verifying experimental results and increasing performance of this instrument. In this research has been planned to develop a comprehensive model for numerical solution of flow and heat transfer in micro heat pipes. For this reason surface evaporation and …,... 

    Dual Porosity Modeling of Oil-Gas Systems under the Effects of Gravity and Capillary Forces

    , M.Sc. Thesis Sharif University of Technology Taraki, Fateme (Author) ; Taghizadeh Manzari, Mehrdad (Supervisor) ; Shamloo, Amir (Supervisor)
    Abstract
    In this thesis, two types of two-phase flow are studied in one dimension. The first type is oil-gas two-phase flow which is miscible and compressible. The second one is oil-water two-phase flow which is immiscible and incompressible. Oil wet and water wet conditions are studied in the second type of flow. Two approaches, i.e. double porosity and double porosity-double permeability, are used to study naturally fractured reservoirs. In these approaches, the matrix and fracture are modeled as two separate media that exchange mass via a transfer function. Black oil model is applied to simulate the fluid system. The governing equations consist of the conservation of mass equations for each... 

    Pore-Scale Numerical Simulation of Two-phase Flows in Periodic Porous Media Using SPH

    , Ph.D. Dissertation Sharif University of Technology Fatehi, Rouhollah (Author) ; Taghizadeh Manzari, Mehrdad (Supervisor)
    Abstract
    Study of two-phase flowin porous media forms a basis for investigating various fluid systemsin the nature and industries. In recent years, more and more researchers use pore-scale mod-els to explore various physical phenomena occurring in complex media such as hydrocarbonreservoirs. After solving the flow equations in pore-scale, this approach can be utilized tocalculate some macroscopic values using particular forms of averaged flow field.In this research, Smoothed Particle Hydrodynamics (SPH) is used to simulate two-phaseflow in pore spaces of two- and three-dimensional porous media. The SPH method is a La-grangian meshless method that is suitable for flows with free surfaces, deformable... 

    Modeling of Two Phase Flow in Porous Media with Heat Generation

    , Ph.D. Dissertation Sharif University of Technology Taherzadeh Fard, Morteza (Author) ; Saidi, Mohammad Saeed (Supervisor) ; Ghofrani, Mohammad Bagher (Co-Advisor)
    Abstract
    The main purpose of this work is investigation of coolability of a boiling debris bed. The main governing equations are derived using volume averaging technique. From this technique some specific interfacial areas between phases are appeared and proper relations for modeling these areas are proposed. Using these specific areas, a modification for the Tung/Dhir model in the annular flow regime is proposed. The proposed modification is validated and the agreements with experimental data are good. Finally, governing equations and relations are implemented in the THERMOUS program to model two-phase flow in the debris bed in the axisymmetric cylindrical coordinate. Two typical configurations... 

    Evaluation of Transfer Functions of Dual Porosity-dual Permeability Model Using Discrete Fracture Model

    , M.Sc. Thesis Sharif University of Technology Baj, Arash (Author) ; Taghizadeh Manzari, Mehrdad (Supervisor) ; kazemzadeh Hannani, Siamak (Co-Advisor)
    Abstract
    Physics of present work is 2D and two phase immiscible flow under gravity and capillary effect through fractured porous media. Rock properties such as porosity and permeability are homogenous. Discrete fracture model and dual porosity-dual permeability model are used to simulate this problem. Governing equations for such reservoirs are conservation of mass and conservation of momentum. Evaluations are performed in two seperate parts. in the first part, geometry, boundary conditions and initial conditions which important models of transfer functions were calculated are provided by using discrete fracture model and results are compared with results of corresponding reference. Following... 

    Investigation of Interactions of Injectors and Walls in Vortex Engines

    , M.Sc. Thesis Sharif University of Technology Hamzeie, Faraz (Author) ; Mozafari, Ali Asghar (Supervisor) ; Saidi, Mohammad Hassan (Co-Advisor) ; Ghafourian, Akbar (Co-Advisor)
    Abstract
    A new experimental setup was fabricated; equipped with an adjustable chamber’s length, with air tangentially flowing through the wall of vortex engine. In a vortex combustion chamber, the tangential inlet fuel or oxidizer creates both inner and outer vortices which are rotating in the same angular direction. Indeed, inner vortex moves from head to the end of engine in the axial direction; however, outer vortex moves in the opposite direction. This setup was fabricated to see the effect of fuel nozzle characteristics on the wall temperature of the chamber. In a vortex engine, vortices affect spray droplets and force them to have a spiral path. Moreover, relative velocity of droplets and flow...