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The energy spectrum of stochastic eddies with gamma distribution

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Kara, Rukiye

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English

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Abstract

Çinlar velocity field which is based on eddies of rotational form is a promising subgrid velocity model for its use in large eddy simulation (LES). This has been confirmed by data analysis of high frequency radar observations. The energy spectrum plays a central role for representing the subgrid scales in filtered Navier-Stokes equations used in LES. We consider a truncated Gamma distribution for eddy sizes to replicate the subgrid scale energy spectrum analytically. Kolmogorov proposed a form of the spectrum that extends to the inertial scale. Lundgren vortex has a spectrum involving an exponential function and has been used in LES. Çinlar velocity spectrum which is based on the truncated Gamma distribution indicates a good match with the spectrum estimated from real data. The results of this study can be used for designing a method for representing the small scale structures in LES by modeling the subgrid stress.

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Applied Mathematics and Information Sciences

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Natural Sciences Publishing

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Mathematics, Applied mathematics, Physics, Applied physics

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