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    Boundary layer solution for the turbulent swirling decay flow through a fixed pipe: sbr at the inlet

    , Article 2003 ASME International Mechanical Engineering Congress, Washington, DC., 15 November 2003 through 21 November 2003 ; Volume 259 , 2003 , Pages 449-456 ; 08888116 (ISSN) Najafi, A. F ; Sadeghipour, M. S ; Saidi, M. H ; Souhar, M ; Sharif University of Technology
    American Society of Mechanical Engineers (ASME)  2003
    Abstract
    In this study the developing turbulent swirling pipe flow is investigated both numerically and analytically. Governing equations are derived accompanying the boundary layer assumptions. Uniform and solid body rotation (SBR) distributions are taken into account for the axial and tangential velocities at the inlet of the pipe, respectively. Beyond the boundary layers, the flow pattern is considered to be the potential flow. Making use of the fourth-order Runge-Kutta scheme, the numerical solution of the differential equations is obtained. Further more, by simplifying the governing equations for large Rossby number, the analytical solution is performed. The results of numerical and analytical... 

    Boundary layer solution for the turbulent swirling decay flow through a fixed pipe: SBR at the inlet

    , Article International Journal of Engineering Science ; Volume 43, Issue 1-2 , 2005 , Pages 107-120 ; 00207225 (ISSN) Najafi, A. F ; Saidi, M. H ; Sadeghipour, M. S ; Souhar, M ; Sharif University of Technology
    Elsevier Ltd  2005
    Abstract
    In this study the developing turbulent swirling pipe flow is investigated both numerically and analytically. Governing equations are derived accompanying the boundary layer assumptions. Uniform and solid body rotation (SBR) distributions are taken into account for the axial and tangential velocities at the inlet of the pipe, respectively. Beyond the boundary layers, the flow pattern is considered to be the potential flow. Making use of the fourth-order Runge-Kutta scheme, the numerical solution of the differential equations is obtained. Further more, by simplifying the governing equations for large Rossby number, the analytical solution is performed. The results of numerical and analytical... 

    Analytical investigation of boundary layer growth and swirl intensity decay rate in a pipe

    , Article Archive of Applied Mechanics ; Volume 81, Issue 4 , 2011 , Pages 489-501 ; 09391533 (ISSN) Maddahian, R ; Kebriaee, A ; Farhanieh, B ; Firoozabadi, B ; Sharif University of Technology
    Abstract
    In this research, the developing turbulent swirling flow in the entrance region of a pipe is investigated analytically by using the boundary layer integral method. The governing equations are integrated through the boundary layer and obtained differential equations are solved with forth-order Adams predictor-corrector method. The general tangential velocity is applied at the inlet region to consider both free and forced vortex velocity profiles. The comparison between present model and available experimental data demonstrates the capability of the model in predicting boundary layer parameters (e.g. boundary layer growth, shear rate and swirl intensity decay rate). Analytical results showed... 

    Numerical analysis of turbulent swirling decay pipe flow

    , Article International Communications in Heat and Mass Transfer ; Volume 32, Issue 5 , 2005 , Pages 627-638 ; 07351933 (ISSN) Najafi, A. F ; Saidi, M. H ; Sadeghipour, M. S ; Souhar, M ; Sharif University of Technology
    2005
    Abstract
    Turbulent swirling decay pipe flow has been investigated numerically in a vertical straight fixed pipe. The swirling flow is created by means of a rotating honeycomb which produces the solid body rotation at the inlet of the fixed pipe. Since there are no experimental data at the inlet of the fixed pipe; different axi-symmetric approaches may be considered to model the honeycomb effects at the downstream flow. Considering the appropriate approach and using the resulting flow field properties from the exit of the modeled swirl generator which are applied as the inlet boundary condition for the fixed pipe, several high Reynolds turbulence models are used to predict this type of the swirling... 

    Turbulent flow in converging nozzles, part one: Boundary layer solution

    , Article Applied Mathematics and Mechanics (English Edition) ; Volume 32, Issue 5 , 2011 , Pages 645-662 ; 02534827 (ISSN) Maddahian, R ; Farhanieh, B ; Firoozabadi, B ; Sharif University of Technology
    2011
    Abstract
    The boundary layer integral method is used to investigate the development of the turbulent swirling flow at the entrance region of a conical nozzle. The governing equations in the spherical coordinate system are simplified with the boundary layer assumptions and integrated through the boundary layer. The resulting sets of differential equations are then solved by the fourth-order Adams predictor-corrector method. The free vortex and uniform velocity profiles are applied for the tangential and axial velocities at the inlet region, respectively. Due to the lack of experimental data for swirling flows in converging nozzles, the developed model is validated against the numerical simulations. The... 

    Laser-induced photo transmutation of 126Sn - A hazardous nuclear waste product-into short-lived nuclear medicine of 125Sn

    , Article Energy Conversion and Management ; Volume 64 , 2012 , Pages 466-472 ; 01968904 (ISSN) Irani, E ; Sadighi, S. K ; Zare, S ; Sadighi Bonabi, R ; Sharif University of Technology
    2012
    Abstract
    Relativistic electrons, generated in the interaction of an ultra-intense laser pulse with plasma in front of a high-Z solid target, when passing near the nuclei of the solid target produce several MeV highly collimated Bremsstrahlung gamma beam, which can be used to induce photo-nuclear reactions. In this work the possibility of photo-induced transmutation (γn) of a nuclear waste of 126Sn with a half-life of 100,000 years into 125Sn with a half-life of 9.64 days was investigated for the first time. Calculations based on the available experimental data show that the Bremsstrahlung γ beam generated by irradiating a 2 mm thick tantalum target as a converter with 1020Wcm-2μm2 and 10 Hz table-top... 

    A bending theory for beams with vertical edge crack

    , Article International Journal of Mechanical Sciences ; Volume 52, Issue 7 , July , 2010 , Pages 904-913 ; 00207403 (ISSN) Ebrahimi, A ; Behzad, M ; Meghdari, A ; Sharif University of Technology
    2010
    Abstract
    In this paper a linear continuous theory for bending analysis of beams with an edge crack perpendicular to the neutral plane subject to bending has been developed. The model assumes that the displacement field is a superposition of the classical EulerBernoulli beam's displacement and of a displacement due to the crack. It is assumed that in bending the additional displacement due to crack decreases exponentially with distance from the crack tip. The strain and stress fields have been calculated using this displacement field and the bending equation has been obtained using equilibrium equations. Using a fracture mechanics approach the exponential decay rate has been calculated. There is a...