This paper presents numerical results based on a macroscopic blood coagulation model coupled with a non-linear viscoelastic model for blood flow. The system of governing equations is solved using a central finite-volume scheme for space discretization and an explicit Runge-Kutta time-integration. An artificial compressibility method is used to resolve pressure and a non-linear TVD filter is applied for stabilization. A simple test case of flowing blood over a clotting surface in a straight 3D vessel is solved. This work presents a significant extension of the previous studies [10] and [9]
The thrombus formation in vessels is a very complex cascade process that is, amongst many other fact...
The mechanical properties determine to a large extent the functioning of a blood clot. These propert...
In this investigation, semiempirical and numerical studies of blood flow in a viscoelastic artery we...
The process of platelet activation and blood coagulation is quite complex and not yet completely und...
The rheological behaviour of coagulating human blood has been measured using a multiple frequency rh...
The main goal of this presentation is to demonstrate and discuss the dif-ferences between the result...
This paper is concerned with the numerical simulation of a thermodynamically compatible vi...
The hemostatic system is a highly complex multicomponent biosystem that under normal physiologic con...
A reliable and fast numerical scheme is crucial for the 1D simulation of blood flow. In this paper, ...
Blood coagulation is one of the important defense mechanisms preventing the loss of blood following ...
We drive a mathematical model of a part of the blood coagulation cascade set up in a perfusion exper...
The numerical simulation of blood flow in arteries using non-Newtonian viscosity model, presents two...
AbstractIn the past years multiphysics computational models aiming at describing clot formation and ...
A numerical investigation of the blood flow is presented in this paper. Human blood is assumed to be...
Blood coagulation is one of the important defense mechanisms preventing the loss of blood fol-lowing...
The thrombus formation in vessels is a very complex cascade process that is, amongst many other fact...
The mechanical properties determine to a large extent the functioning of a blood clot. These propert...
In this investigation, semiempirical and numerical studies of blood flow in a viscoelastic artery we...
The process of platelet activation and blood coagulation is quite complex and not yet completely und...
The rheological behaviour of coagulating human blood has been measured using a multiple frequency rh...
The main goal of this presentation is to demonstrate and discuss the dif-ferences between the result...
This paper is concerned with the numerical simulation of a thermodynamically compatible vi...
The hemostatic system is a highly complex multicomponent biosystem that under normal physiologic con...
A reliable and fast numerical scheme is crucial for the 1D simulation of blood flow. In this paper, ...
Blood coagulation is one of the important defense mechanisms preventing the loss of blood following ...
We drive a mathematical model of a part of the blood coagulation cascade set up in a perfusion exper...
The numerical simulation of blood flow in arteries using non-Newtonian viscosity model, presents two...
AbstractIn the past years multiphysics computational models aiming at describing clot formation and ...
A numerical investigation of the blood flow is presented in this paper. Human blood is assumed to be...
Blood coagulation is one of the important defense mechanisms preventing the loss of blood fol-lowing...
The thrombus formation in vessels is a very complex cascade process that is, amongst many other fact...
The mechanical properties determine to a large extent the functioning of a blood clot. These propert...
In this investigation, semiempirical and numerical studies of blood flow in a viscoelastic artery we...