نتایج جستجو برای: time fractional convection diffusion equation

تعداد نتایج: 2250089  

2004
R. K. SAXENA

Abstract. In earlier papers Saxena et al. (2002, 2003) derived the solutions of a number of fractional kinetic equations in terms of generalized Mittag-Leffler functions which extended the work of Haubold and Mathai (2000). The object of the present paper is to investigate the solution of a unified form of fractional kinetic equation in which the free term contains any integrable function f(t),...

2015
J. G. Zhou P. M. Haygarth P.J.A. Withers C.J.A. Macleod P. D. Falloon K. J. Beven M. C. Ockenden K. J. Forber M. J. Hollaway R. Evans A. L. Collins K. M. Hiscock C. Wearing R. Kahana M. L. Villamizar Velez

Mass transport such as movement of phosphorus in soils and solutes in rivers is a natural phenomenon and its study plays an important role in science and engineering. It is found that there are numerous practical diffusion phenomena that do not obey the classical advection-diffusion equation (ADE). Such diffusion is called abnormal or super diffusion and is well described using a fractional adv...

2014
S. HITTMEIR

In recent works it has been demonstrated that using an appropriate rescaling, linear Boltzmann-type equations give rise to a scalar fractional diffusion equation in the limit of a small mean free path. The equilibrium distributions are typically heavy-tailed distributions, but also classical Gaussian equilibrium distributions allow for this phenomena if combined with a degenerate collision freq...

2012
Wenyuan Liao Jianping Zhu

Convection-diffusion equations are widely used for modeling and simulations of various complex phenomena in science and engineering (Hundsdorfer & Verwer, 2003; Morton, 1996). Since for most application problems it is impossible to solve convection-diffusion equations analytically, efficient numerical algorithms are becoming increasingly important to numerical simulations involving convection-d...

Journal: :Contemporary mathematics 2023

Herein, we build and implement a combination of Lucas polynomials basis that fulfills the spatial homogenous boundary conditions. This is then used to solve time-fractional diffusion equation spectrally. The elements all spectral matrices are explicitly obtained in terms Gauss hypergeometric function. convergence error analysis proposed expansion studied. Numerical results indicate high accurac...

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