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    Small scale effects on the stability of carbon nano-peapods under radial pressure

    , Article Physica E: Low-Dimensional Systems and Nanostructures ; Volume 43, Issue 5 , March , 2011 , Pages 1050-1055 ; 13869477 (ISSN) Asghari, M ; Naghdabadi, R ; Rafati Heravi, J ; Sharif University of Technology
    2011
    Abstract
    In this paper, a nonlocal elasticity formulation is presented for analyzing the instability of nano-peapods by modeling the nanotube as a shell. Using the nonlocal elasticity theory, the small scale characteristics of Carbon Nano-Peapods (CNPs) are taken into account. While the classical elastic shell model overestimates the critical pressure for the onset of structural instability of carbon nanotubes, the obtained results show that the nonlocal elastic shell model for nano-peapods can potentially provide better predictions. According to the results, it is concluded that the presence of C 60 inside (10,10) Carbon Nanotubes (CNTs) significantly increases the stability resistance of the single... 

    Characterization of basic properties for pure substances and petroleum fractions by neural network

    , Article Fluid Phase Equilibria ; Volume 231, Issue 2 , 2005 , Pages 188-196 ; 03783812 (ISSN) Boozarjomehry, R. B ; Abdolahi, F ; Moosavian, M. A ; Sharif University of Technology
    2005
    Abstract
    A set of conventional feedforward multilayer neural networks have been proposed to predict basic properties (e.g., critical temperature (T c), critical pressure (Pc), critical volume (V c), acentric factor (ω) and molecular weight (MW)) of pure compounds and petroleum fractions based on their normal boiling point (T b) and liquid density at 293 K. The accuracy of the method is evaluated by its application for basic property estimation of various components not used in the development of the method. Furthermore, the performance of the method is compared against the performance of the other alternatives reported as the most accurate and general methods for basic property prediction. Results of... 

    Effects of Blood Pressure on Venous Tortuosity and Valves

    , M.Sc. Thesis Sharif University of Technology Mazrooei, Mohammad Amin (Author) ; Fallah Rajabzadeh, Famida (Supervisor)
    Abstract
    Blood vessels are subjected to complex mechanical loads, including internal pressure, external pressure, axial stress due to connection to tissues, and the twist caused by movement of the body. The veins and venous valves, which are responsible for returning blood to the heart, become bent and twisted (tortuosity) for various reasons. This venous tortuosity causes valve insufficiency and changes the hemodynamic pattern of blood flow and varicose veins. Studies show that more than a third of old people suffer from varicose veins. These injuries have made it important to study the physical mechanism of venous tortuosity and the function of venous valves.The purpose of this study is to... 

    Axial enrichment profile in advance nuclear energy power plant at supercritical-pressures

    , Article Kerntechnik ; Volume 80, Issue 6 , 2015 , Pages 541-544 ; 09323902 (ISSN) Tashakor, S ; Zarifi, E ; Salehi, A. A ; Sharif University of Technology
    Carl Hanser Verlag  2015
    Abstract
    The High-Performance Light Water Reactor (HPLWR) is the European version of the advance nuclear energy power plant at Supercritical-pressure. A light water reactor at supercritical pressure, being currently under design, is the new generation of nuclear reactors. The aim of this study is to predict the HPLWR neutronic behavior of the axial enrichment profile with an average enrichment of 5 w/o U-235. Neutronic calculations are performed using WIMS and CITATION codes. Changes in neutronic parameter, such as Power Peaking Factor (PPF) are discussed in this paper  

    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... 

    Thermal-hydraulic analysis of HPLWR fuel assembly cluster

    , Article Journal of Supercritical Fluids ; Volume 77 , May , 2013 , Pages 91-99 ; 08968446 (ISSN) Tashakor, S ; Salehi, A. A ; Jahanfarnia, G ; Sharif University of Technology
    2013
    Abstract
    The High-Performance Light Water Reactor (HPLWR) is the European version of the Supercritical-pressure Water Cooled Reactor (SCWR). Light water reactors at supercritical pressure, being currently under design, are the new generation of nuclear reactors. The present article is a thermal-hydraulic analysis of the HPLWR fuel assembly cluster. The existing thermal hydraulic codes are not capable of analyzing and designing the HPLWR fuel assembly. It is necessary to introduce a new thermal-hydraulic code that can incorporate the parameters and specifications of the HPLWR fuel assembly. The governing equations include energy, mass and momentum equations beside thermal-hydraulic equations are... 

    Sustainable superhydrophobic branched hierarchical ZnO nanowires: Stability and wettability phase diagram

    , Article Applied Surface Science ; Volume 561 , 2021 ; 01694332 (ISSN) Ebrahimi, M ; Bayat, A ; Rahemi Ardekani, S ; Saievar Iranizad, E ; Zaker Moshfegh, A ; Sharif University of Technology
    Elsevier B.V  2021
    Abstract
    Stability of Cassie-Baxter (CB) state is very critical in application of superhydrophobic surfaces. The most industrial applications of superhydrophobic surfaces are limited by the transition from the CB state to Wenzel (W) state. In this research, CB state stability of branched hierarchical ZnO nanowires (BH-ZnO NWs) was investigated as compared with ZnO nanowires (ZnO NWs) by using theoretical and experimental approaches. For this purpose, surface of the BH-ZnO NWs and ZnO NWs were modified by thin layers of methyltrimethoxysilane (MTMS). The MTMS thickness was optimized by varying NH4F (0, 5, 10, 20 μL) as used catalyst. The highest water contact angle (WCA) was measured at about 153 ± 3°... 

    Effect of high energy ball milling on compressibility and sintering behavior of alumina nanoparticles

    , Article Ceramics International ; Volume 38, Issue 4 , May , 2012 , Pages 2627-2632 ; 02728842 (ISSN) Eskandari, A ; Aminzare, M ; Razavi Hesabi, Z ; Aboutalebi, S. H ; Sadrnezhaad, S. K ; Sharif University of Technology
    2012
    Abstract
    The effect of high-energy ball milling on the textural evolution of alumina nanopowders (compaction response, sinter-ability, grain growth and the degree of agglomeration) during post sintering process is studied. The applied pressure required for the breakage of the agglomerates (P y) during milling was estimated and the key elements of compressibility (i.e. critical pressure (P cr) and compressibility (b)) were calculated. Based on the results, the fracture point of the agglomerates decreased from 150 to 75 MPa with prolonged milling time from 3 to 60 min. Furthermore, the powders were formed by different shaping methods such as cold isostatic press (CIP) and uniaxial press (UP) to better... 

    Thermal–hydraulic analysis of nanofluids as the coolant in supercritical water reactors

    , Article Journal of Supercritical Fluids ; Volume 128 , 2017 , Pages 47-56 ; 08968446 (ISSN) Rahimi, M. H ; Jahanfarnia, G ; Vosoughi, N ; Sharif University of Technology
    Elsevier B.V  2017
    Abstract
    Supercritical water reactor is one of the generation IV reactors which is basically a creative mixture of conventional PWRs and supercritical pressure steam boilers. Application of nanoparticles provides an effective way of improving heat transfer characteristics of conventional coolants; thus, utilization of a nanofluid coolant in the conceptual design of this reactors is quite reasonable and inevitable. Reactor coolant at supercritical pressure dose not experience any phase change and is heated up to 500 °C in three pass core design. In this paper, thermal–hydraulic analysis of applying a water base Al2O3 nanofluid with different nanoparticle mass fractions were investigated using a porous... 

    Numerical study of the pseudo-boiling phenomenon in the transcritical liquid oxygen/gaseous hydrogen flame

    , Article Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering ; 2020 Zeinivand, H ; Farshchi, M ; Sharif University of Technology
    SAGE Publications Ltd  2020
    Abstract
    The interactions and effects of turbulent mixing, pseudo-boiling phenomena, and chemical reaction heat release on the combustion of cryogenic liquid oxygen and gaseous hydrogen under supercritical pressure conditions are investigated using RANS simulations. Comparisons of the present numerical simulation results with available experimental data reveal a reasonably good prediction of a supercritical axial shear hydrogen-oxygen flame using the standard k-ε turbulence model and the eddy dissipation concept combustion model with a 23 reaction steps kinetics for H2-O2 reaction. The present simulation qualitatively reproduced oxygen injection and its reaction with the co-flowing hydrogen, which is...