The study of the movement of air particles and, in general, the air flow around different objects can provide very useful results for scientists and enthusiasts in the field of mechanical engineering science. These studies can be used in important stages, such as the design or construction of objects that are exposed to airflow. Therefore, due to the advancement of mechanical science and in particular the computational fluid dynamics, these studies and simulations have been more and more widely considered and tried to be done from all angles.
In this analysis, the Simulation of air flow in contact with a body having an air inlet valve inside has been analyzed using Ansys Fluent software.
The geometry required for this analysis was generated by Ansys Design Modeler software. The meshing required for this analysis was also generated by Ansys Meshing software. The mesh type used in this analysis unstructured. The total number of cells produced for this geometry is 803616 cells.
In this analysis, the turbulence viscosity model K-epsilon Standard was used to check the fluid flow. In this analysis, pressure-based solver is used.
The inlet for this analysis is defined as Velocity Inlet, and its value is 1.7 m/s for air fluid. The outlet of the solution is also set to Pressure Outlet.
In this analysis, the SIMPLE algorithm is used for the formulation of the discretization of equations. The flow equation is discretized as Second Order Upwind.
The results are presented as velocity contours as well as streamlines.
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