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Street Canyon Modeling
(using Dr. Nenes Model ) Paula Agudelo Carlos Hoyos 11/26/2003
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The Idea H W Formulation of the problem geometry
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The Model “Eddy diffusivity”
Numerically solve the Navier-Stokes equations by using a finite volume descretization formulation. The k - epsilon model consists of the turbulent kinetic energy equation The codes are also capable of solving for turbulent flows: the standard two-parameter k-epsilon model can be used to estimate the Reynolds stresses. In the implementation of this model the Kolmogorov - Prandtl expression for the turbulent viscosity is used and the dissipation rate equation “Eddy diffusivity”
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Case 1
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Laminar Case
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Case 2
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Case 2 (V=3m/s)
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Laminar Case
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Case 3
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Case 4
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Case 5
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Case 6
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Case 6 (source away from the building )
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Scaling Under same atmospheric conditions building height becomes essential in the TKE generation!!
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Dispersion depending on W/H ratio
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Dispersion depending on Separation
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Comparison with The microscale model MIMO,
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