Title of article :
Some general properties of Eshelby’s tensor fields in transport phenomena and anti-plane elasticity
Author/Authors :
H. Le Quang and Z.-Q. Feng ، نويسنده , , Q.-C. He، نويسنده , , Q.-S. Zheng، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Abstract :
Consider an infinite thermally conductive medium characterized by Fourier’s law, in which a subdomain, called an
inclusion, is subjected to a prescribed uniform heat flux-free temperature gradient. The second-order tensor field relating
the gradient of the resulting temperature field over the medium to the uniform heat flux-free temperature gradient is
referred to as Eshelby’s tensor field for conduction. The present work aims at deriving the general properties of Eshelby’s
tensor field for conduction. It is found that: (i) the trace of Eshelby’s tensor field is equal to the characteristic function of
the inclusion, independently of the latter’s shape; (ii) the isotropic part of Eshelby’s tensor field over the inclusion of arbitrary
shape is identical to Eshelby’s tensor field over a 2D circular or 3D spherical inclusion; (iii) when the medium is made
of an isotropic material and when the inclusion has some specific rotational symmetries, the value of the Eshelby’s tensor
field evaluated at the inclusion gravity center and the symmetric average of Eshelby’s tensor fields are both equal to Eshelby’s
tensor field for a 2D circular or 3D spherical inclusion. These results are then extended, with the help of a linear transformation,
to the general case where the medium consists of an anisotropic conductive material. The method elaborated
and results obtained by the present work are directly transposable to the physically analogous transport phenomena of
electric conduction, dielectrics, magnetism, diffusion and flow in porous media and to the mathematically identical phenomenon
of anti-plane elasticity.
Keywords :
transport phenomena , Eshelby problem , Eshelby tensor , anti-plane elasticity , inclusions , Anisotropy , thermal conduction
Journal title :
International Journal of Solids and Structures
Journal title :
International Journal of Solids and Structures