Wall shear rates and pressure developed in blood vessels play an important role on the development of some clinical problems such as atherosclerosis and thrombosis. In the present work, blood flow behaviour was numerically studied in simplified domains and several relevant local properties were determined. We believe that the obtained results will be useful in the interpretation of some phenomena associated to some clinical problems. To describe the rheological behaviour of blood, three constitutive equations were used – constant viscosity, power-law and Carreau model. Numerical predictions for the blood flow in stenosed channels were in good agreement with analytical results, indicating that the computational model used to describe the stu...
The numerical simulation of blood flow in arteries using non-Newtonian viscosity model, presents two...
Arthrosclerosis means literally “arteries hardening”. However, arthrosclerosis it is a generic term ...
Purpose: Abnormalities in blood vessels by virtue of complex blood flow dynamics is being supported ...
Wall shear rates and pressure developed in circulatory system play an important role on the developm...
Atherosclerosis is a life-threatening disease of the human circulatory system. It can lead to blocka...
Atherosclerosis is a life-threatening disease of the human circulatory system. It can lead to blocka...
The behavior of blood during its flow in human arteries has always been a subject of keen interest. ...
Medicine is one of the branches of scientific research in which numerical simulation can give a grea...
The behavior of blood during its flow in human arteries has always been a subject of keen interest. ...
This article focuses on the transient behaviour of blood flow in stenotic arteries. Human blood is ...
This article focuses on the transient behaviour of blood flow in stenotic arteries. Human blood is ...
This article focuses on the transient behaviour of blood flow in stenotic arteries. Human blood is ...
This article focuses on the transient behaviour of blood flow in stenotic arteries. Human blood is ...
This article focuses on the transient behaviour of blood flow in stenotic arteries. Human blood is ...
A thesis Submitted in Partial Fulfillment of the Requirements for the Degree of MASTER of SCIENCE in...
The numerical simulation of blood flow in arteries using non-Newtonian viscosity model, presents two...
Arthrosclerosis means literally “arteries hardening”. However, arthrosclerosis it is a generic term ...
Purpose: Abnormalities in blood vessels by virtue of complex blood flow dynamics is being supported ...
Wall shear rates and pressure developed in circulatory system play an important role on the developm...
Atherosclerosis is a life-threatening disease of the human circulatory system. It can lead to blocka...
Atherosclerosis is a life-threatening disease of the human circulatory system. It can lead to blocka...
The behavior of blood during its flow in human arteries has always been a subject of keen interest. ...
Medicine is one of the branches of scientific research in which numerical simulation can give a grea...
The behavior of blood during its flow in human arteries has always been a subject of keen interest. ...
This article focuses on the transient behaviour of blood flow in stenotic arteries. Human blood is ...
This article focuses on the transient behaviour of blood flow in stenotic arteries. Human blood is ...
This article focuses on the transient behaviour of blood flow in stenotic arteries. Human blood is ...
This article focuses on the transient behaviour of blood flow in stenotic arteries. Human blood is ...
This article focuses on the transient behaviour of blood flow in stenotic arteries. Human blood is ...
A thesis Submitted in Partial Fulfillment of the Requirements for the Degree of MASTER of SCIENCE in...
The numerical simulation of blood flow in arteries using non-Newtonian viscosity model, presents two...
Arthrosclerosis means literally “arteries hardening”. However, arthrosclerosis it is a generic term ...
Purpose: Abnormalities in blood vessels by virtue of complex blood flow dynamics is being supported ...