We proposed that the use of an approximate “jump condition” at the solar transition region permits fast and accurate numerical solutions of the one dimensional hydrodynamic equations when the corona undergoes impulsive heating. In particular, it eliminates the need for the very short timesteps imposed by a highly resolved numerical grid. This paper presents further examples of the applicability of the method for cases of non-uniform heating, in particular, nanoflare trains (uniform in space but non-uniform in time) and spatially localised impulsive heating, including at the loop apex and base of the transition region. In all cases the overall behaviour of the coronal density and temperature shows good agreement with a fully resolved one dim...
We have demonstrated that the transition region adaptive conduction (TRAC) method permits fast and a...
We present a new version of the Palermo-Harvard hydrodynamic model of plasma confined in coronal loo...
Numerical simulations of the dynamics and radiation in a solar Ñare loop are presented. The heating ...
We proposed that the use of an approximate “jump condition” at the solar transition region permits f...
We proposed that the use of an approximate “jump condition” at the solar transition region permits f...
This project has received funding from the Science and Technology Facilities Council (UK) through th...
We present a new computational approach that addresses the difficulty of obtaining the correct inter...
We present a new computational approach that addresses the difficulty of obtaining the correct inter...
C.D.J. acknowledges the financial support of the Carnegie Trust for the Universities of Scotland. Th...
This thesis presents a new computationally efficient method for modelling the response of the solar ...
Modelling the solar Transition Region with the use of an Adaptive Conduction (TRAC) method permits f...
Context.This paper addresses the impulsive heating of very diffuse coronal loops, such as can occur ...
The brightness of the emission from coronal loops in the solar atmosphere is strongly dependent on t...
Thermal non-equilibrium (TNE) is believed to be a potentially important process in understanding som...
The heating of the solar corona has been investigated during four of decades and several mechanisms ...
We have demonstrated that the transition region adaptive conduction (TRAC) method permits fast and a...
We present a new version of the Palermo-Harvard hydrodynamic model of plasma confined in coronal loo...
Numerical simulations of the dynamics and radiation in a solar Ñare loop are presented. The heating ...
We proposed that the use of an approximate “jump condition” at the solar transition region permits f...
We proposed that the use of an approximate “jump condition” at the solar transition region permits f...
This project has received funding from the Science and Technology Facilities Council (UK) through th...
We present a new computational approach that addresses the difficulty of obtaining the correct inter...
We present a new computational approach that addresses the difficulty of obtaining the correct inter...
C.D.J. acknowledges the financial support of the Carnegie Trust for the Universities of Scotland. Th...
This thesis presents a new computationally efficient method for modelling the response of the solar ...
Modelling the solar Transition Region with the use of an Adaptive Conduction (TRAC) method permits f...
Context.This paper addresses the impulsive heating of very diffuse coronal loops, such as can occur ...
The brightness of the emission from coronal loops in the solar atmosphere is strongly dependent on t...
Thermal non-equilibrium (TNE) is believed to be a potentially important process in understanding som...
The heating of the solar corona has been investigated during four of decades and several mechanisms ...
We have demonstrated that the transition region adaptive conduction (TRAC) method permits fast and a...
We present a new version of the Palermo-Harvard hydrodynamic model of plasma confined in coronal loo...
Numerical simulations of the dynamics and radiation in a solar Ñare loop are presented. The heating ...