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    Experimental study on cavitation behavior of propellers in the uniform flow and in the wake field

    , Article Journal of the Brazilian Society of Mechanical Sciences and Engineering ; Volume 38, Issue 6 , 2016 , Pages 1585-1592 ; 16785878 (ISSN) Alimirzazadeh, S ; Roshan, S. Z ; Seif, M. S ; Sharif University of Technology
    Springer Verlag 
    Abstract
    Cavitation behavior of fully submerged propellers is an important issue in the marine engineering field. Cavitation tunnel is usually used for studying hydrodynamic performances and cavitation behavior of a propeller. In the present study, the cavitation behavior of the DTMB P4119 propeller was studied both in a uniform flow and in the wake field of a specific vessel. Considering the dimensions of the test section of K23 cavitation tunnel of Sharif University of Technology and related blockage effects, the propeller was scaled so that the model was 0.195 (m) in diameter. A wake screen was used to generate the desired wake field, which itself was primarily determined by CFD simulations around... 

    Impact of nonlinear absorption on propagation of microwave in a plasma filled rectangular waveguide

    , Article Waves in Random and Complex Media ; Volume 26, Issue 3 , 2016 , Pages 272-283 ; 17455030 (ISSN) Sobhani, H ; Vaziri, M ; Rooholamininejad, H ; Bahrampour, A. R ; Sharif University of Technology
    Taylor and Francis Ltd 
    Abstract
    In collisional and ponderomotive predominant regimes, the propagation of microwave in rectangular waveguide filled with collisional plasma is investigated numerically. The dominant mode is excited through an evacuated waveguide and then enters a similar and co-axis waveguide filled with plasma. In collisional predominant regime, the amplitude of electric field is oscillated along propagation path; outset of propagation path due to the electron-ion collision, the intensity oscillations are reduced. Afterward, under competition between the collisional nonlinearity and absorption, the intensity is increased, so the electron density peak is created in middle of waveguide. In ponderomotive... 

    Relativistic Gaussian laser beam self-focusing in collisional quantum plasmas

    , Article Laser and Particle Beams ; Volume 33, Issue 3 , 2015 , Pages 397-403 ; 02630346 (ISSN) Zare, S ; Rezaee, S ; Yazdani, E ; Anvari, A ; Sadighi Bonabi, R ; Sharif University of Technology
    Cambridge University Press  2015
    Abstract
    Propagation of Gaussian X-ray laser beam is presented in collisional quantum plasma and the beam width oscillation is studied along the propagation direction. It is noticed that due to energy absorption in collisional plasma, the laser energy drops to an amount less than the critical value of the self-focusing effect and consequently, the laser beam defocuses. It is found that the oscillation amplitude of the laser spot size enhances while passing through collisional plasma. For the greater values of collision frequency, the beam width oscillates with higher amplitude and defocuses in a shallower plasma depth. Also, it is realized that in a dense plasma environment, the laser self-focusing... 

    Nonlinear interaction of intense hypergeometric Gaussian subfamily laser beams in plasma

    , Article Optics and Laser Technology ; Volume 81 , 2016 , Pages 40-45 ; 00303992 (ISSN) Sobhani, H ; Vaziri, M. (Khamedi) ; Rooholamininejad, H ; Bahrampour, A. R ; Sharif University of Technology
    Elsevier Ltd 
    Abstract
    Propagation of Hypergeometric-Gaussian laser beam in a nonlinear plasma medium is investigated by considering the Source Dependent Expansion method. A subfamily of Hypergeometric-Gaussian beams with a non-negative, even and integer radial index, can be expressed as the linear superposition of finite number of Laguerre-Gaussian functions. Propagation of Hypergeometric-Gaussian beams in a nonlinear plasma medium depends on the value of radial index. The bright rings' number of these beams is changed during the propagation in plasma medium. The effect of beam vortex charge number l and initial (input) beam intensity on the self-focusing of Hypergeometric-Gaussian beams is explored. Also, by... 

    The effect of shear flow and the density gradient on the Weibel instability growth rate in the dense plasma

    , Article Physics of Plasmas ; Volume 25, Issue 2 , February , 2018 ; 1070664X (ISSN) Amininasab, S ; Sadighi Bonabi, R ; Khodadadi Azadboni, F ; Sharif University of Technology
    American Institute of Physics Inc  2018
    Abstract
    Shear stress effect has been often neglected in calculation of the Weibel instability growth rate in laser-plasma interactions. In the present work, the role of the shear stress in the Weibel instability growth rate in the dense plasma with density gradient is explored. By increasing the density gradient, the shear stress threshold is increasing and the range of the propagation angles of growing modes is limited. Therefore, by increasing steps of the density gradient plasma near the relativistic electron beam-emitting region, the Weibel instability occurs at a higher stress flow. Calculations show that the minimum value of the stress rate threshold for linear polarization is greater than... 

    Electron trajectory evaluation in laser-plasma interaction for effective output beam

    , Article Chinese Physics B ; Volume 19, Issue 6 , 2010 ; 16741056 (ISSN) Zobdeh, P ; Sadighi Bonabi, R ; Afarideh, H ; Sharif University of Technology
    2010
    Abstract
    Using the ellipsoidal cavity model, the quasi-monoenergetic electron output beam in laser-plasma interaction is described. By the cavity regime the quality of electron beam is improved in comparison with those generated from other methods such as periodic plasma wave field, spheroidal cavity regime and plasma channel guided acceleration. Trajectory of electron motion is described as hyperbolic, parabolic or elliptic paths. We find that the self-generated electron bunch has a smaller energy width and more effective gain in energy spectrum. Initial condition for the ellipsoidal cavity is determined by laser-plasma parameters. The electron trajectory is influenced by its position, energy and...