We present a new analytical equation of state (EOS), which correctly models high pressure theory and fits well to the experimental data of ɛ-Fe, SiO2, Mg2SiO4, and the Earth. The cold part of the EOS is modeled after the Varpoly EOS. The thermal part is based on a new formalism of the Gruneisen parameter, which improves behavior from earlier models and bridges the gap between elasticity and thermoelasticity. The EOS includes an expanded state model, which allows for the accurate modeling of material vapor curves. The EOS is compared to both the Tillotson EOS and ANEOS model, which are both widely used in planetary impact simulations. The complexity and cost of the EOS is similar to that of the Tillotson EOS, while showing improved behavior ...
New, shock-wave, equation-of-state measurements of lunar anorthosite 60025 (-18% initial porosity) a...
A simple caloric model of the equation of state is proposed to describe thermodynamic properties of ...
Understanding high pressure behavior of homogeneous as well as heterogeneous materials is necessary ...
We present a new analytical equation of state (EOS), which correctly models high pressure theory and...
We discuss major challenges in modeling giant impacts between planetary bodies, focusing on the equa...
The thermodynamic properties of SiO2 are approximated over a range of pressures and temperatures imp...
Current equation-of-state formulations, used for finite-difference cratering flow calculations, are ...
In this thesis we add a temperature dependence to the newly developed variable polytrope equation of...
AbstractThe Tillotson equation of state (EOS), which was originally developed for the hypervelocity ...
Observed FeO/MgO ratios in the Moon and Earth are inconsistent with simulations done with a single h...
A knowledge of the equation of state (EOS) of matter is necessary to describe the dependence of its ...
Two new theoretical methods for computing the equation of state of hot, dense matter are discussed.T...
Understanding high pressure behavior materials is necessary in order to address the physical process...
During modeling of the impact of a projectile on a target or other calculations that bring materials...
In this study a search for an equation of state (EOS) that accurately predicts solids behaviour at b...
New, shock-wave, equation-of-state measurements of lunar anorthosite 60025 (-18% initial porosity) a...
A simple caloric model of the equation of state is proposed to describe thermodynamic properties of ...
Understanding high pressure behavior of homogeneous as well as heterogeneous materials is necessary ...
We present a new analytical equation of state (EOS), which correctly models high pressure theory and...
We discuss major challenges in modeling giant impacts between planetary bodies, focusing on the equa...
The thermodynamic properties of SiO2 are approximated over a range of pressures and temperatures imp...
Current equation-of-state formulations, used for finite-difference cratering flow calculations, are ...
In this thesis we add a temperature dependence to the newly developed variable polytrope equation of...
AbstractThe Tillotson equation of state (EOS), which was originally developed for the hypervelocity ...
Observed FeO/MgO ratios in the Moon and Earth are inconsistent with simulations done with a single h...
A knowledge of the equation of state (EOS) of matter is necessary to describe the dependence of its ...
Two new theoretical methods for computing the equation of state of hot, dense matter are discussed.T...
Understanding high pressure behavior materials is necessary in order to address the physical process...
During modeling of the impact of a projectile on a target or other calculations that bring materials...
In this study a search for an equation of state (EOS) that accurately predicts solids behaviour at b...
New, shock-wave, equation-of-state measurements of lunar anorthosite 60025 (-18% initial porosity) a...
A simple caloric model of the equation of state is proposed to describe thermodynamic properties of ...
Understanding high pressure behavior of homogeneous as well as heterogeneous materials is necessary ...