We present a study of cooling in radiative shocks simulated with smoothed particle hydrodynamics and adaptive mesh refinement codes. We obtain a similarity solution for a shock-tube problem in the presence of radiative cooling, and test how well the solution is reproduced in GADGET and FLASH. Shock broadening governed by the details of the numerical scheme (artificial viscosity or Riemann solvers) leads to potentially significant overcooling in both codes. We interpret our findings in terms of a resolution criterion, and apply it to realistic simulations of cosmological accretion shocks on to galaxy haloes, cold accretion and thermal feedback from supernovae or active galactic nuclei (AGN). To avoid numerical overcooling of accretion shocks...
We compare the mass cooling rates and cumulative cooled-down masses predicted by several semi-analyt...
A general analysis is presented of the structure of a steady state, plane-parallel shock wave in whi...
Recent measurements of the K-band luminosity function now provide us with strong, reliable constrain...
In this thesis I examine supernova feedback in hydrodynamical simulations of galaxy disks. Understan...
We address a numerical instability that arises in the directionally split computation of hydrodynami...
We have simulated the formation of a massive galaxy cluster (M_{200}^crit = 1.1 × 1015 h-1 M☉) in a ...
We use a three-dimensional hydrodynamical code to simulate the effect of energy injection on cooling...
Hydrodynamical shocks are a manifestation of the non-linearity of the Euler equations and play a fun...
Unopposed radiative cooling of plasma would lead to the cooling catastro‐phe, a massive inflow of co...
Energy loss through optically thin radiative cooling plays an important part in the evolution of ast...
We perform adaptive mesh refinement (AMR) and smoothed particle hydrodynamics (SPH) cosmological zoo...
We test and improve the numerical schemes in our smoothed particle hydrodynamics (SPH) code for cosm...
Radiative shock waves show a strong cooling instability at temperatures above approximately 2 times ...
We describe similarity solutions that characterize the collapse of collisional gas onto scalefree pe...
Atomic physics calculations of radiative cooling are used to calculate criteria for the overstabilit...
We compare the mass cooling rates and cumulative cooled-down masses predicted by several semi-analyt...
A general analysis is presented of the structure of a steady state, plane-parallel shock wave in whi...
Recent measurements of the K-band luminosity function now provide us with strong, reliable constrain...
In this thesis I examine supernova feedback in hydrodynamical simulations of galaxy disks. Understan...
We address a numerical instability that arises in the directionally split computation of hydrodynami...
We have simulated the formation of a massive galaxy cluster (M_{200}^crit = 1.1 × 1015 h-1 M☉) in a ...
We use a three-dimensional hydrodynamical code to simulate the effect of energy injection on cooling...
Hydrodynamical shocks are a manifestation of the non-linearity of the Euler equations and play a fun...
Unopposed radiative cooling of plasma would lead to the cooling catastro‐phe, a massive inflow of co...
Energy loss through optically thin radiative cooling plays an important part in the evolution of ast...
We perform adaptive mesh refinement (AMR) and smoothed particle hydrodynamics (SPH) cosmological zoo...
We test and improve the numerical schemes in our smoothed particle hydrodynamics (SPH) code for cosm...
Radiative shock waves show a strong cooling instability at temperatures above approximately 2 times ...
We describe similarity solutions that characterize the collapse of collisional gas onto scalefree pe...
Atomic physics calculations of radiative cooling are used to calculate criteria for the overstabilit...
We compare the mass cooling rates and cumulative cooled-down masses predicted by several semi-analyt...
A general analysis is presented of the structure of a steady state, plane-parallel shock wave in whi...
Recent measurements of the K-band luminosity function now provide us with strong, reliable constrain...