A new formulation of Kapila’s five-equation model for inviscid, non-heat-conducting, compressible two-fluid flow is derived, together with an appropriate numerical method. The new formulation uses flow equations based on conservation laws and exchange laws only. The two fluids exchange momentum and energy, for which exchange terms are derived from physical laws. All equations are written as a single system of equations in integral form. No equation is used to describe the topology of the two-fluid flow. Relations for the Riemann invariants of the governing equations are derived, and used in the construction of an Osher-type approximate Riemann solver. A consistent finite-volume discretization of the exchange terms is proposed. The exchange ...
A five-equation model for compressible two-fluid flow is proposed, that is based on physical flow eq...
A five-equation model for compressible two-fluid flow is proposed, that is based on physical flow eq...
Multi-fluid flows are found in many applications in engineering and physics. Examples of these flows...
A new formulation of Kapila’s five-equation model for inviscid, non-heat-conducting, compressible tw...
A new formulation of Kapila’s five-equation model for inviscid, non-heat-conducting, compressible tw...
A new formulation of Kapila’s five-equation model for inviscid, non-heat-conducting, compressible tw...
A new formulation of Kapila’s five-equation model for inviscid, non-heat-conducting, compressible tw...
A novel five-equation model for inviscid, non-heat-conducting, compressible two-fluid flow is derive...
A novel five-equation model for inviscid, non-heat-conducting, compressible two-fluid flow is derive...
This paper describes a five-equation model for compressible two-fluid flow, based on physical flow e...
This paper describes a five-equation model for compressible two-fluid flow, based on physical flow e...
An interface-capturing, five-equation model for compressible two-fluid flow is presented, that is ba...
A five-equation model for compressible two-fluid flow is proposed, that is based on physical flow eq...
A five-equation model for compressible two-fluid flow is proposed, that is based on physical flow eq...
A five-equation model for compressible two-fluid flow is proposed, that is based on physical flow eq...
A five-equation model for compressible two-fluid flow is proposed, that is based on physical flow eq...
A five-equation model for compressible two-fluid flow is proposed, that is based on physical flow eq...
Multi-fluid flows are found in many applications in engineering and physics. Examples of these flows...
A new formulation of Kapila’s five-equation model for inviscid, non-heat-conducting, compressible tw...
A new formulation of Kapila’s five-equation model for inviscid, non-heat-conducting, compressible tw...
A new formulation of Kapila’s five-equation model for inviscid, non-heat-conducting, compressible tw...
A new formulation of Kapila’s five-equation model for inviscid, non-heat-conducting, compressible tw...
A novel five-equation model for inviscid, non-heat-conducting, compressible two-fluid flow is derive...
A novel five-equation model for inviscid, non-heat-conducting, compressible two-fluid flow is derive...
This paper describes a five-equation model for compressible two-fluid flow, based on physical flow e...
This paper describes a five-equation model for compressible two-fluid flow, based on physical flow e...
An interface-capturing, five-equation model for compressible two-fluid flow is presented, that is ba...
A five-equation model for compressible two-fluid flow is proposed, that is based on physical flow eq...
A five-equation model for compressible two-fluid flow is proposed, that is based on physical flow eq...
A five-equation model for compressible two-fluid flow is proposed, that is based on physical flow eq...
A five-equation model for compressible two-fluid flow is proposed, that is based on physical flow eq...
A five-equation model for compressible two-fluid flow is proposed, that is based on physical flow eq...
Multi-fluid flows are found in many applications in engineering and physics. Examples of these flows...