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Write a Methodology of this project that can be display into a power point presentation a In CV 222/ MM 222 project, you will be

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Write a Methodology of this project that can be display into a power point presentation a In CV 222/ MM 222 project, you will be required to conduct numerical work using ANSYS CFX which is Computational Fluid Dynamics (CFD) software to study flow phenomena. For numerical work, you will be required to convert the physical model to fluid domain using CAD software and run the simulations. The group is required to run simulation at different inlet velocities and different building orientations. You are to study the flow characteristics. In addition to this, you will also calculate the light force acting on the roof. Finally, the group will discuss in detail the aerodynamics of low-rise buildings. Model - 30 Degree Gable Orientation - 4 and 6 Velocity - 5 m/s and 15 m/s Simulation Details The boundary details for the simulation are given in table 1. Table 1. Boundary details Boundary Name Boundary Type Domain Side(s) Inflow Inlet INLET Outflow Outlet OUTLET TOP Duct Top Wall Duct Bottom Wall Duct Sides Wall TOP 2 GROUND GROUND 2 SIDE FRONT WALL REAR WALL SIDE_1 SIDE 2 FRONT ROOF REAR ROOF House Walls Wall Front Roof Wall Wall Rear Roof Write a Methodology of this project that can be display into a power point presentation a In CV 222/ MM 222 project, you will be required to conduct numerical work using ANSYS CFX which is Computational Fluid Dynamics (CFD) software to study flow phenomena. For numerical work, you will be required to convert the physical model to fluid domain using CAD software and run the simulations. The group is required to run simulation at different inlet velocities and different building orientations. You are to study the flow characteristics. In addition to this, you will also calculate the light force acting on the roof. Finally, the group will discuss in detail the aerodynamics of low-rise buildings. Model - 30 Degree Gable Orientation - 4 and 6 Velocity - 5 m/s and 15 m/s Simulation Details The boundary details for the simulation are given in table 1. Table 1. Boundary details Boundary Name Boundary Type Domain Side(s) Inflow Inlet INLET Outflow Outlet OUTLET TOP Duct Top Wall Duct Bottom Wall Duct Sides Wall TOP 2 GROUND GROUND 2 SIDE FRONT WALL REAR WALL SIDE_1 SIDE 2 FRONT ROOF REAR ROOF House Walls Wall Front Roof Wall Wall Rear Roof

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