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| # Overview | |
| The stackPlume case simulates the dispersion of smoke from a chimney stack in an | |
| atmospheric boundary layer. Lagrangian particle tracking and a 'scalarTransport' | |
| function object are used to simulate the trajectory of the plume and the | |
| deposition of particles at ground level. | |
| # Atmospheric boundary layer | |
| The atmospheric boundary layer is based on a logarithmic velocity profile with | |
| parameters defined in 'setAtmBoundaryLayerDict'. The atmospheric boundary layer | |
| is applied to the flow both as an initial condition and a boundary condition on | |
| the sides of the domain. | |
| # Plume structure | |
| A function object 'Uyz' is used to extract the y and z components of velocity | |
| and create a new field 'Uyz'. Uyz can be used to visualize the components of | |
| velocity normal to the trajectory of the plume. | |