One of the fields between medical and mechanical sciences is the analysis of blood flow in the veins. In regards to identifying the physical properties of blood and body tissues, it can simulate interactions using numerical software and analyze the responses.
In this project, the reaction and the temperature response of the blood vessel flow in the vicinity of spherical tissue, with the energy source in the center of tissues and the transfer of heat between them and the blood artery, are instability simulated by Ansys Fluent software.
The geometry required for this analysis was generated by Ansys Design Modeler software, and the meshing required for this analysis was also generated by Ansys Meshing software. The grid type used in this analysis is unstructural and the total number of cells produced for this geometry is 717087 cells.
In this analysis, the K-epsilon Standard viscosity model was used to check the fluid flow. The Standard Wall function is also used near the wall. It is clear that the energy equation is also influential in this simulation therefore it is solved in simulation.
The capillary flow input is defined as Velocity Inlet, and its value is 8 cm/s for the blood flow. The inlet of the flow around the capillary is defined as Velocity Inlet and its value is 0.035 mm/s.
In the outputs, the Pressure Outlet condition has been used.
In this analysis, the SIMPLE algorithm is used to discretize the coupled velocity and pressure equations. The momentum and energy equations are also discretized as Second Order Upwind.
The results are presented as velocity contours as well as streamlines.
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