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    Constructing the critical curve for a symmetric two-layer Ising model

    , Article Journal of Theoretical and Computational Chemistry ; Volume 3, Issue 2 , 2004 , Pages 217-224 ; 02196336 (ISSN) Ghaemi, M ; Mirza, B ; Parsafar, G. A ; Sharif University of Technology
    2004
    Abstract
    A numerical method based on the transfer matrix method is developed to calculate the critical temperature of two-layer Ising ferromagnet with a weak inter-layer coupling. The reduced internal energy per site has been accurately calculated for symmetric ferromagnetic case, with the nearest neighbor coupling K1 = K2 = K (where K1 and K2 are the nearest neighbor interaction in the first and second layers, respectively) with inter-layer coupling J. The critical temperature as a function of the inter-layer coupling ξ = J/K, is obtained for very weak inter-layer interactions, ξ < 0.1. Also a different function is given for the case of the strong inter-layer interactions (ξ > 1). The importance of... 

    Ag Raman modes and ion-position dependence of the electronic structures of Y Ba2 Cu3 O7 and Y Ba2 Cu4 O8 from first principles

    , Article Physical Review B - Condensed Matter and Materials Physics ; Volume 76, Issue 5 , 2007 ; 10980121 (ISSN) Khosroabadi, H ; Mossalla, B ; Akhavan, M ; Sharif University of Technology
    2007
    Abstract
    Calculations of the frozen phonon for Ag Raman modes of the superconducting Y Ba2 Cu3 O7 and Y Ba2 Cu4 O8 systems have been carried out using the pseudopotential density functional theory in the local density approximation employing the VASP code. The eigenvalues and eigenvectors of the Ag Raman modes for the two systems have been calculated and compared with other experimental and computational studies. Electronic band structure and total density of states have been calculated for all the bare Ag modes for both systems. By calculating the changes in the bands intersecting the Fermi energy by ionic displacements, the ionic dependence of the electronic band structure in each of the Ag Raman... 

    Investigation of phase diagrams for cylindrical Ising nanotube using cellular automata

    , Article Physics Letters, Section A: General, Atomic and Solid State Physics ; Volume 382, Issue 19 , May , 2018 , Pages 1291-1297 ; 03759601 (ISSN) Astaraki, M ; Ghaemi, M ; Afzali, K ; Sharif University of Technology
    Elsevier B.V  2018
    Abstract
    Recent developments in the field of applied nanoscience and nanotechnology have heightened the need for categorizing various characteristics of nanostructures. In this regard, this paper establishes a novel method to investigate magnetic properties (phase diagram and spontaneous magnetization) of a cylindrical Ising nanotube. Using a two-layer Ising model and the core-shell concept, the interactions within nanotube has been modelled. In the model, both ferromagnetic and antiferromagnetic cases have been considered. Furthermore, the effect of nanotube's length on the critical temperature is investigated. The model has been simulated using cellular automata approach and phase diagrams were... 

    Critical temperature evaluation of moment frames by means of plastic analysis theory and genetic algorithm

    , Article Iranian Journal of Science and Technology - Transactions of Civil Engineering ; 2021 ; 22286160 (ISSN) Palizi, S ; Saedi Daryan, A ; Sharif University of Technology
    Springer Science and Business Media Deutschland GmbH  2021
    Abstract
    Nowadays, deliberate or unwanted fire incidents have created much attention to the behavior of structures against these types of events. Since the properties of structural members are influenced by the increase in the temperature of the members, it is more difficult to predict the general and local behavior of the structures during the fire. In this research, a method has been proposed to calculate the critical temperature in two-dimensional structures at its collapse with desirable accuracy. In this process, the upper-bound theory of plastic analysis is used. The plastic analysis is performed by applying the initial fire scenario to the structure, and its collapse load factor with the... 

    Critical temperature evaluation of moment frames by means of plastic analysis theory and genetic algorithm

    , Article Iranian Journal of Science and Technology - Transactions of Civil Engineering ; Volume 46, Issue 2 , 2022 , Pages 843-856 ; 22286160 (ISSN) Palizi, S ; Saedi Daryan, A ; Sharif University of Technology
    Springer Science and Business Media Deutschland GmbH  2022
    Abstract
    Nowadays, deliberate or unwanted fire incidents have created much attention to the behavior of structures against these types of events. Since the properties of structural members are influenced by the increase in the temperature of the members, it is more difficult to predict the general and local behavior of the structures during the fire. In this research, a method has been proposed to calculate the critical temperature in two-dimensional structures at its collapse with desirable accuracy. In this process, the upper-bound theory of plastic analysis is used. The plastic analysis is performed by applying the initial fire scenario to the structure, and its collapse load factor with the... 

    Quartic balance theory: Global minimum with imbalanced triangles

    , Article Physical Review E ; Volume 102, Issue 1 , 2020 Kargaran, A ; Ebrahimi, M ; Riazi, M ; Hosseiny, A ; Jafari, G. R ; Sharif University of Technology
    American Physical Society  2020
    Abstract
    Balance theory proposed by Heider for the first time modeled triplet interaction in a signed network, stating that relationships between two people, friendship or enmity, is dependent on a third person. The Hamiltonian of this model has an implicit assumption that all triads are independent, meaning that the type of each triad, being balanced or imbalanced, determined apart from the state of other triads. This independence forces the network to have completely balanced final states. However, there exists evidence indicating that real networks are partially balanced, raising the question of what is the mechanism preventing the system to be perfectly balanced. Our suggestion is to consider a... 

    Critical temperature and frequency characteristics of GPLs-Reinforced composite doubly curved panel

    , Article Applied Sciences (Switzerland) ; Volume 10, Issue 9 , 2020 Adamian, A ; Hosseini Safari, K ; Sheikholeslami, M ; Habibi, M ; Al Furjan, M. S. H ; Chen, G ; Sharif University of Technology
    MDPI AG  2020
    Abstract
    In this study, critical temperature and frequency characteristics of a doubly curved panel are reinforced by graphene nanoplatelets (GPLs) with the aid of a two-dimensional generalized differential quadrature method (2D-GDQM) are investigated. The size effects are included using nonlocal strain gradient theory (NSGT) that has two length scale parameters, and the panel is modeled as a panel using high order shear deformation theory (HSDT). The mechanical properties of GPLs are calculated based on the rule of mixtures and the modified Halpin-Tsai model. The novelty of the current study is in considering the effects of the thermal environment, various boundary conditions, and size effects on... 

    Design and optimization of a cascade thermoacoustic Stirling engine

    , Article Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy ; Volume 227, Issue 7 , September , 2013 , Pages 814-824 ; 09576509 (ISSN) Karimi, M ; Ghorbanian, K ; Sharif University of Technology
    Professional Engineering Publishing  2013
    Abstract
    This article deals with the design and optimization of a cascade thermoacoustic Stirling engine. Different configurations for cascade thermoacoustic Stirling heat engine are investigated. A simplified model is proposed to enable initial design guidelines. The most important characteristics of the cascade system are examined. The results indicate that the thermoacoustic engines in cascade configuration may achieve very low onset temperatures. A suitable configuration is selected and the locations and dimensions of different thermoacoustic units are optimized to achieve low onset temperatures as well as high values for the acoustic power output and efficiency. The results support the... 

    X-ray photo-emission studies of Cu1-xTlxBa2Ca3Cu4 O12-y superconductor thin films

    , Article Physica C: Superconductivity and its Applications ; Volume 449, Issue 1 , 2006 , Pages 47-52 ; 09214534 (ISSN) Khan, N. A ; Mumtaz, M ; Ahadian, M. M ; Iraji zad, A ; Sharif University of Technology
    2006
    Abstract
    X-ray photo-emission spectroscopy (XPS) studies of Cu1-xTlxBa2Ca3Cu4 O12-y superconductor thin films have been carried out for understanding the mechanism of superconductivity and to find out the reasons for the increase of zero resistivity critical temperature Tc(R = 0) with post-annealing in a nitrogen atmosphere. It is observed from these studies that reduction of charge state of thallium is a source of doping of carriers to the CuO2 planes. The reduced charge state of thallium (i.e. Tl1+) promotes lower oxygen concentration in the charge reservoir layer, which possibly results in movement of electrons to the conducting CuO2 planes. The higher density of electrons in the CuO2 planes... 

    The Effect of Martensite Morphology on Mechanical Properties of TLP Bonded Dual Phase Steels

    , M.Sc. Thesis Sharif University of Technology Fazaeli, Abolfazl (Author) ; Ekrami, Ali Akbar (Supervisor) ; Kokabi, Amir Hossein (Supervisor)
    Abstract
    In the present study the production of ferrite-martensite dual-phase (DP) Steel was investigated during the bonding process by transient liquid phase method. The effect of martensite morphologies on mechanical properties of bonding zone were also studied. To make the bonding process and DP steel production heat treatment cycle simultaneously, the step in which the isothermal solidification completed, bonding process, was done simultaneously with austenitising of the steel. Homogenizing of the bond zone, was also done with DP steel making at the intercritical temperature. The St52 steel was utilized for producing DP steel and for bonding process, iron base interlayer with melting point of... 

    Development of a new generalized correlation to characterize physical properties of pure components and petroleum fractions

    , Article Fluid Phase Equilibria ; Vol. 363 , 15 February , 2014 , pp. 189-198 ; ISSN: 03783812 Hosseinifar, P ; Jamshidi, S ; Sharif University of Technology
    Abstract
    A new generalized and non-group contribution method has been developed to predict critical temperature (Tc), critical pressure (Pc), critical volume (Vc) and acentric factor (ω) for pure substances and petroleum fractions based on two types of input parameters. This method can take either refractive index and molecular weight or refractive index and normal boiling point as its input. Since refractive index cannot be obtained for an unknown mixture (petroleum fraction), in order to apply the proposed method for petroleum fractions, refractive index is converted to mass density at 293K using the one-third rule. Moreover, the proposed correlation is capable of predicting the properties using... 

    Oxygen diffusion mechanism in MgO-C composites: An artificial neural network approach

    , Article Modelling and Simulation in Materials Science and Engineering ; Volume 20, Issue 1 , December , 2012 ; 09650393 (ISSN) Nemati, A ; Nemati, E ; Sharif University of Technology
    2012
    Abstract
    An artificial neural network (ANN) model was used to predict the weight loss of MgO-C composites at different temperatures and graphite contents. The general idea of ANN modeling was presented and after that the empirical weight loss data were used for both model verification and assessment of the oxidation rate predictions. The model was proved to have an astounding power in predicting kinetic parameters of the oxidation process. Graphite oxidation was, for example, found to be controlled by alternative diffusion steps. Plotting the Arrhenius law curves for graphite oxidation indicated a distinguishable slope change at a critical temperature which is related to the graphite content. This... 

    Development of a novel Peng–Robinson plus association equation of state for industrially important associating compounds

    , Article Neural Computing and Applications ; Nov , 2015 , Pages 1-9 ; 09410643 (ISSN) Eslami, L ; Khadem Hamedani, B ; Sharif University of Technology
    Springer-Verlag London Ltd  2015
    Abstract
    Cubic plus association (CPA) equations of state (EoSs) have found great interest in describing thermodynamic properties of associating fluids. In CPA EoSs, the association contribution proposed by Wertheim is added to cubic EoSs such as Soave–Redlich–Kwong (SRK) and Peng–Robinson (PR). In different developments of CPA EoSs, adjusting the pure component properties such as critical temperature and critical pressure in addition to the association parameters is proposed in some works in the literature. In this work, the PR EoS has been extended to water, phenol, and a number of alcohols (methanol up to dodecanol) by addition of the Wertheim association contribution. In contrast to other CPA... 

    Thermal buckling analysis of bridged single walled carbon nanotubes using molecular structural mechanics

    , Article Journal of Applied Physics ; Volume 117, Issue 11 , 2015 ; 00218979 (ISSN) Firouz Abadi, R. D ; Badri Kouhi, E ; Sharif University of Technology
    American Institute of Physics Inc  2015
    Abstract
    This paper is concerned with the stability analysis of bridged single walled carbon nanotubes (SWCNT) under temperature changes. A molecular structural mechanics model is utilized to investigate the free vibration frequencies and thermal buckling of SWCNT. In comparison with most of the previous studies, a temperature-variable thermal-expansion-coefficient is used that is negative under a certain temperature. Also thermal variation of Young's modulus of the CNTs is considered. Several studies are performed to investigate the critical temperature change due to heating and cooling of SWCNTs with different chiralities and slenderness ratios and the stability boundaries are determined  

    On the determination of CO2-crude oil minimum miscibility pressure using genetic programming combined with constrained multivariable search methods

    , Article Fuel ; Volume 173 , 2016 , Pages 180-188 ; 00162361 (ISSN) Fathinasab, M ; Ayatollahi, S ; Sharif University of Technology
    Elsevier Ltd 
    Abstract
    In addition to reducing carbon dioxide (CO2) emission, the high oil recovery efficiency achieved by CO2 injection processes makes CO2 injection a desirable enhance oil recovery (EOR) technique. Minimum miscibility pressure (MMP) is an important parameter in successful designation of any miscible gas injection process such as CO2 flooding; therefore, its accurate determination is of great importance. The current experimental techniques for determining MMP are expensive and time-consuming. In this study, multi-gene genetic programming has been combined with constrained multivariable search methods, and a simple empirical model has been developed which provides a reliable estimation of MMP in a... 

    Development of a novel Peng–Robinson plus association equation of state for industrially important associating compounds

    , Article Neural Computing and Applications ; Volume 31, Issue 7 , 2019 , Pages 2107-2115 ; 09410643 (ISSN) Eslami, L ; Khadem Hamedani, B ; Sharif University of Technology
    Springer London  2019
    Abstract
    Cubic plus association (CPA) equations of state (EoSs) have found great interest in describing thermodynamic properties of associating fluids. In CPA EoSs, the association contribution proposed by Wertheim is added to cubic EoSs such as Soave–Redlich–Kwong (SRK) and Peng–Robinson (PR). In different developments of CPA EoSs, adjusting the pure component properties such as critical temperature and critical pressure in addition to the association parameters is proposed in some works in the literature. In this work, the PR EoS has been extended to water, phenol, and a number of alcohols (methanol up to dodecanol) by addition of the Wertheim association contribution. In contrast to other CPA... 

    Effect of porosity on buckling and vibrational characteristics of the imperfect GPLRC composite nanoshell

    , Article Mechanics Based Design of Structures and Machines ; Volume 49, Issue 6 , 2021 , Pages 811-840 ; 15397734 (ISSN) Habibi, M ; Mohammadi, A ; Safarpour, H ; Ghadiri, M ; Sharif University of Technology
    Bellwether Publishing, Ltd  2021
    Abstract
    Due to rapid development of manufacturing process, composite materials with porosity have attracted commercially notices in advanced engineering applications. For this regard, buckling and vibrational characteristics of a porous composite cylindrical nanoshell reinforced with GPLs is investigated in this paper. The material properties of piece-wise graphene-reinforced composites (GPLRC) are assumed to be graded in the thickness direction of a cylindrical nanoshell and are estimated using a nanomechanical model. The novelty of our work is including the effects of porosity and GPLRC on natural frequency, critical axial load and critical temperature of the GPLRC cylindrical nanoshell. The... 

    Probabilistic thermal stability of laminated composite plates with temperature-dependent properties under a stochastic thermal field

    , Article Acta Mechanica ; Volume 233, Issue 4 , 2022 , Pages 1351-1370 ; 00015970 (ISSN) Parviz, H ; Fakoor, M ; Hosseini, F ; Sharif University of Technology
    Springer  2022
    Abstract
    Probabilistic thermal buckling analysis of composite plates with temperature-dependent properties under stochastic thermal fields is performed by developing a new temperature increment-based algorithm for solving the stochastic nonlinear equation. The temperature distribution is assumed to be a stochastic Gaussian field which leads to spatially varying stochastic mechanical properties. The stochastic thermal field is decomposed by applying the Karhunen–Loeve theorem. The combination of stochastic assumed mode method and polynomial chaos is proposed as an alternative solution for the time-consuming stochastic finite element method. The uncertainty of the critical temperature is studied by... 

    Pressure and temperature functionality of paraffin-carbon dioxide interfacial tension using genetic programming and dimension analysis (GPDA) method

    , Article Journal of Natural Gas Science and Engineering ; Volume 20 , September , 2014 , Pages 407-413 ; ISSN: 18755100 Khadem, S. A ; Jahromi, I. R ; Zolghadr, A ; Ayatollahi, S ; Sharif University of Technology
    Abstract
    A precise semi-empirical correlation for the calculation of interfacial tension (IFT) between the carbon dioxide and paraffin group to be used in an enhanced oil recovery process and the chemical industry is introduced. Genetic programming and dimension analysis (GPDA) are combined to create a correlation for the calculation of the equilibrium interfacial tension of the carbon dioxide and paraffin group, based on the explicit functionality of the pressure and temperature. The parameters of the correlation consist of critical temperature, critical pressure, density of paraffin at normal temperature, and diffusion coefficients. The pool of experimental data for developing the correlation... 

    The effect of TLP bonding temperature on microstructural and mechanical property of joints made using FSX-414 superalloy

    , Article Materials Science and Engineering A ; Volume 546 , June , 2012 , Pages 291-300 ; 09215093 (ISSN) Bakhtiari, R ; Ekrami, A ; Khan, T. I ; Sharif University of Technology
    2012
    Abstract
    The bonding temperature is an important parameter for optimization of the Transient Liquid Phase (TLP) bonding process in order to achieve a sound joint with good mechanical properties. However, the bonding temperature used can also be restricted by the microstructural stability of the base metal. In this study, the effect of bonding temperature (1050-1200 °C) on the joint microstructure and mechanical properties was studied for TLP bonding of FSX-414 superalloy using MBF-80 interlayer with thickness of 50 μm. Increasing bonding temperature from 1050 to 1150 °C caused reduction in the time required for complete isothermal solidification in agreement with models based on the diffusion induced...