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The figure below shows the geometry of a flow problem. a) Define and state all the boundary conditions for this problem with a sketch. b)

The figure below shows the geometry of a flow problem.

a) Define and state all the boundary conditions for this problem with a sketch.
b) Show how meshing can be done.
c) From your understanding of fluid mechanics, sketch the velocity profiles at different cross sections and in the outlet.
d) If you want to increase the flow velocity (Reynolds Number) what changes must be done for the solution of this flow simulation?

Inlet (A) (-5, 1) Inlet (-5, 0) (B) Simplified to 2D Outlet (0, 0) Inlet (0, -1) Outlet (10, 1) Outlet (10,

Inlet (A) (-5, 1) Inlet (-5, 0) (B) Simplified to 2D Outlet (0, 0) Inlet (0, -1) Outlet (10, 1) Outlet (10, -1) Inlet (A) (-5, 1) Inlet (-5, 0) (B) Simplified to 2D Outlet (0, 0) Inlet (0, -1) Outlet (10, 1) Outlet (10, -1)

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