This paper illustrates the use of moving mesh methods for solving partial differential equation (PDE) problems in Q-tensor theory of liquid crystals. We present the results of an initial study using a simple one-dimensional test problem which illustrates the feasibility of applying adaptive grid techniques in such situations. We describe how the grids are computed using an equidistribution principle, and investigate the comparative accuracy of adaptive and uniform grid strategies, both theoretically and via numerical examples
In this paper we discuss a two-dimensional adaptive grid method that is based on a tensor-product ap...
The key aim of this Thesis is the development and implementation of a set of simulation techniques f...
AbstractIn this paper we discuss a two-dimensional adaptive grid method that is based on a tensor-pr...
This paper illustrates the use of moving mesh methods for solving partial differential equation (PDE...
AbstractThis paper illustrates the use of an adaptive finite element method to solve a non-linear si...
In this paper we illustrate the suitability of an adaptive moving mesh method for modelling a one-di...
This paper describes a robust and efficient numerical scheme for solving the system of six coupled p...
The properties of liquid crystals can be modelled using an order parameter which describes the varia...
This paper illustrates the use of an adaptive finite element method to solve a non-linear singularly...
Nematic liquid crystals are fluids whose anisometric molecules show long range orientational order b...
AbstractNematic liquid crystals are aggregates of calamitic molecules and most related experimental ...
This paper aims to provide an introduction to a basic form of the Q-tensor approach to modelling liq...
We develop a fast and accurate approximation of the normally stiff equations which minimize the Land...
This thesis investigates numerical methods for various Q-tensor models of nematic liquid crystals. O...
Liquid crystals are a typical type of soft matter that are intermediate between conventional crystal...
In this paper we discuss a two-dimensional adaptive grid method that is based on a tensor-product ap...
The key aim of this Thesis is the development and implementation of a set of simulation techniques f...
AbstractIn this paper we discuss a two-dimensional adaptive grid method that is based on a tensor-pr...
This paper illustrates the use of moving mesh methods for solving partial differential equation (PDE...
AbstractThis paper illustrates the use of an adaptive finite element method to solve a non-linear si...
In this paper we illustrate the suitability of an adaptive moving mesh method for modelling a one-di...
This paper describes a robust and efficient numerical scheme for solving the system of six coupled p...
The properties of liquid crystals can be modelled using an order parameter which describes the varia...
This paper illustrates the use of an adaptive finite element method to solve a non-linear singularly...
Nematic liquid crystals are fluids whose anisometric molecules show long range orientational order b...
AbstractNematic liquid crystals are aggregates of calamitic molecules and most related experimental ...
This paper aims to provide an introduction to a basic form of the Q-tensor approach to modelling liq...
We develop a fast and accurate approximation of the normally stiff equations which minimize the Land...
This thesis investigates numerical methods for various Q-tensor models of nematic liquid crystals. O...
Liquid crystals are a typical type of soft matter that are intermediate between conventional crystal...
In this paper we discuss a two-dimensional adaptive grid method that is based on a tensor-product ap...
The key aim of this Thesis is the development and implementation of a set of simulation techniques f...
AbstractIn this paper we discuss a two-dimensional adaptive grid method that is based on a tensor-pr...