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Original Articles

Effects of subgrid-scale modeling on Lagrangian statistics in large-eddy simulation

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Article: N8 | Published online: 19 Feb 2008
 

Abstract

The application of large-eddy simulation (LES) to turbulent transport processes requires accurate prediction of the Lagrangian statistics of flow fields. However, in most existing SGS models, no explicit consideration is given to Lagrangian statistics. In this paper, we focus on the effects of SGS modeling on Lagrangian statistics in LES ranging from statistics determining single-particle dispersion to those of pair dispersion and multiparticle dispersion. Lagrangian statistics in homogeneous isotropic turbulence are extracted from direct numerical simulation (DNS) and the LES with a spectral eddy-viscosity model. For the case of longtime single-particle dispersion, it is shown that, compared to DNS, LES overpredicts the time scale of the Lagrangian velocity correlation but underpredicts the Lagrangian velocity fluctuation. These two effects tend to cancel one another leading to an accurate prediction of the longtime turbulent dispersion coefficient. Unlike the single-particle dispersion, LES tends to underestimate significantly the rate of relative dispersion of particle pairs and multiple-particles, when initial separation distances are less than the minimum resolved scale due to the lack of subgrid fluctuations. The overprediction of LES on the time scale of the Lagrangian velocity correlation is further confirmed by a theoretical analysis using a turbulence closure theory.

Acknowledgment

This work was supported by Chinese Academy of Sciences under the innovative project ‘Multi-scale modelling and simulation in complex systems’ (KJCX-SW-L08) and National Natural Science Foundation of China under the project nos. 10325211 and 10628206. LPW acknowledges support from US National Science Foundation (ATM-0527140) and the National Center for Atmospheric Research (NCAR).

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