![]() ![]() In this sense, WRF is a modular model that can be adapted for different applications depending on the scale of the atmospheric movements, surface boundaries and thermal characteristic of the air masses, etc. ![]() However, equally as relevant as this non-linear approach, is how the model includes other relevant factors such as radiation, thermal effects, air-sea-land interactions. The usual truncation, or simplification, of the equations that control atmospheric movements of air masses, is definitively small in WRF when compared to other lighter atmospheric codes. The WRF model is the result of years of development by the atmospheric research community combined with additional experience from the extended use for weather forecast applications and modelling wind resource data. WRF accuracy is based on the ability to portray the different mechanisms that interact at each one of the relevant atmospheric scales. WRF is neither a microscale nor large-scale model but is a one-in-all. ![]() 12, the wedge produces slightly higher maximum lift. Compared to the wing-type vortex generator with wedge, as seen in Fig. Vortex’s system core, WRF, is a sophisticated code that has been effectively employed to describe the physics and dynamics of atmospheric circulations with a significant degree of realism at a wide range of scales. The drag with this vortex generator at C L > 11 is less than that of the plain airfoil, but at its cruising incidence C D with the vortex generator is slightly greater by about 0002. ![]()
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