Single fluid schemes that rely on an interface function for phase identification in multicomponent compressible flows are widely used to study hydrodynamic flow phenomena in several diverse applications. Simulations based on standard numerical implementation of these schemes suffer from an artificial increase in the width of the interface function owing to the numerical dissipation introduced by an upwind discretization of the governing equations. In addition, monotonicity requirements which ensure that the sharp interface function remains bounded at all times necessitate use of low-order accurate discretization strategies. This results in a significant reduction in accuracy along with a loss of intricate flow features. In this paper we dev...
We develop a shock- and interface-capturing numerical method that is suitable for the simulation of ...
We develop a shock- and interface-capturing numerical method that is suitable for the simulation of ...
International audienceTo design many industrial systems, accurate and efficient simulations of compl...
[[abstract]]A new reconstruction scheme of cell state variables is presented to solve the five equat...
Compressible multi-materialflows are encountered in a wide range of natural phenomena and industrial...
This paper develops methods for interface-capturing in multiphase flows. The main novelties of these...
This paper develops methods for interface-capturing in multiphase flows. The main novelties of these...
[[abstract]]In this study, the paper first proposes a sharp-interface cell interface variable recons...
This paper presents a new volume-of-fluid scheme (M-CICSAM), capable of capturing abrupt interfaces ...
This paper is concerned with numerical methods for compressible multicomponent fluids. The fluid com...
[[abstract]]In this study, we have implemented the sharp interface algorithm with the existing schem...
International audienceCompressible multi-material flows are omnipresent in scientifc and industrial ...
International audienceCompressible multi-material flows are omnipresent in scientifc and industrial ...
This paper presents a new volume-of-fluid scheme (M-CICSAM), capable of capturing abrupt interfaces ...
High-order accurate shock-capturing schemes are capable of properly resolving discontinuities with c...
We develop a shock- and interface-capturing numerical method that is suitable for the simulation of ...
We develop a shock- and interface-capturing numerical method that is suitable for the simulation of ...
International audienceTo design many industrial systems, accurate and efficient simulations of compl...
[[abstract]]A new reconstruction scheme of cell state variables is presented to solve the five equat...
Compressible multi-materialflows are encountered in a wide range of natural phenomena and industrial...
This paper develops methods for interface-capturing in multiphase flows. The main novelties of these...
This paper develops methods for interface-capturing in multiphase flows. The main novelties of these...
[[abstract]]In this study, the paper first proposes a sharp-interface cell interface variable recons...
This paper presents a new volume-of-fluid scheme (M-CICSAM), capable of capturing abrupt interfaces ...
This paper is concerned with numerical methods for compressible multicomponent fluids. The fluid com...
[[abstract]]In this study, we have implemented the sharp interface algorithm with the existing schem...
International audienceCompressible multi-material flows are omnipresent in scientifc and industrial ...
International audienceCompressible multi-material flows are omnipresent in scientifc and industrial ...
This paper presents a new volume-of-fluid scheme (M-CICSAM), capable of capturing abrupt interfaces ...
High-order accurate shock-capturing schemes are capable of properly resolving discontinuities with c...
We develop a shock- and interface-capturing numerical method that is suitable for the simulation of ...
We develop a shock- and interface-capturing numerical method that is suitable for the simulation of ...
International audienceTo design many industrial systems, accurate and efficient simulations of compl...