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As the inflow turbulence intensity increases, turbulent kinetic energy and turbulent diffusivity in the street canyon increases.
Turbulent flow structures of LES with and without inflow turbulence were completely different.
This paper presents a general inflow turbulence generator for numerical simulation of a spatially correlated turbulent flow field.
This study investigates the sensitivity on inflow turbulence profiles for predicting the downstream wind velocity and turbulent kinetic energy profiles within the street arrays of urban environments.
Then, the techniques of aligning and remapping are incorporated in the inflow turbulence generator for generation of an inhomogeneous and anisotropic turbulent flow field following arbitrary target spectra in three orthogonal directions.
Furthermore, inflow turbulence intensity also influenced the wake recovery.
The inflow turbulence was generated through a separate precursor simulation.
Thus, LES calculations with/without inflow turbulence were conducted.
The inflow turbulence intensity and length scale were set to be 3%% and 0.3 m, respectively.
Several remedial measures were presented to improve the performances of these inflow turbulence generation methods.
It is thus necessary to evaluate the performances of different inflow turbulence generation techniques.
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