This work systematically simulates the external mass transfer from/to a spherical drop and solid particle suspended in a nonlinear uniaxial extensional creeping flow. The mass transfer problem is governed by three dimensionless parameters: the viscosity ratio (lambda), the Peclet number (Pe), and the nonlinear intensity of the flow (E). The existing mass transfer theory, valid for very large Peclet numbers only, is expanded, by numerical simulations, to include a much larger range of Peclet numbers (1 10(3)). Only when E > 5/4, the simulated Sh for a solid sphere in the nonlinear uniaxial extensional flow is larger than theoretical results because the theory neglects the effect of the vortex formed outside the particle on the rate of mass ...
Using laboratory experiments and numerical simulations, we examine the transfer of soluble material ...
In this study, an efficient ghost cell‐based immersed boundary method is used to perform direct nume...
In this work, the rate of mass transfer from an ensemble of mono-size spherical Newtonian droplets (...
This work systematically simulates the external mass transfer from/to a spherical drop and solid par...
Mass transfer around a slender drop in a nonlinear extensional and creeping flow is theoretically st...
The first detailed numerical investigation on the mass and heat transfer both outside and inside a s...
The unsteady conjugate mass/heat transfer from/to a prolate droplet suspended in uniaxial extensiona...
This paper presents the detailed numerical investigation on the unsteady conjugate mass transfer fro...
This work studied numerically the internal mass/heat transfer of a deformable droplet immersed in a ...
This work studied numerically the internal mass/heat transfer of a deformable droplet immersed in a ...
The steady convective mass transfer from ensembles of mono-size Newtonian fluid spheres to power-law...
The paper considers the process of external mass transfer between the surface of the particles and t...
By coupling direct numerical simulation of homogeneous isotropic turbulence with a localised solutio...
The problem of mass transfer from a solid sphere to a viscoelastic fluid has been examined theoretic...
Using laboratory experiments and numerical simulations, we examine the transfer of soluble material ...
Using laboratory experiments and numerical simulations, we examine the transfer of soluble material ...
In this study, an efficient ghost cell‐based immersed boundary method is used to perform direct nume...
In this work, the rate of mass transfer from an ensemble of mono-size spherical Newtonian droplets (...
This work systematically simulates the external mass transfer from/to a spherical drop and solid par...
Mass transfer around a slender drop in a nonlinear extensional and creeping flow is theoretically st...
The first detailed numerical investigation on the mass and heat transfer both outside and inside a s...
The unsteady conjugate mass/heat transfer from/to a prolate droplet suspended in uniaxial extensiona...
This paper presents the detailed numerical investigation on the unsteady conjugate mass transfer fro...
This work studied numerically the internal mass/heat transfer of a deformable droplet immersed in a ...
This work studied numerically the internal mass/heat transfer of a deformable droplet immersed in a ...
The steady convective mass transfer from ensembles of mono-size Newtonian fluid spheres to power-law...
The paper considers the process of external mass transfer between the surface of the particles and t...
By coupling direct numerical simulation of homogeneous isotropic turbulence with a localised solutio...
The problem of mass transfer from a solid sphere to a viscoelastic fluid has been examined theoretic...
Using laboratory experiments and numerical simulations, we examine the transfer of soluble material ...
Using laboratory experiments and numerical simulations, we examine the transfer of soluble material ...
In this study, an efficient ghost cell‐based immersed boundary method is used to perform direct nume...
In this work, the rate of mass transfer from an ensemble of mono-size spherical Newtonian droplets (...