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On some issues concerning the modeling of the motion of fluids

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
We address some issues regarding the use of the Lagrangian description and convected frames in describing fluid motions. We also discuss the implications of Brownian motion on modeling the macroscopic motion of fluids and the schemes of filtered simulations. The relevance of these issues to the modeling of turbulence is discussed in detail.
Rocznik
Strony
475--487
Opis fizyczny
Bibliogr. 28 poz., rys., wykr.
Twórcy
  • Department of Mechanical Engineering Texas A&M University College Station, Texas 77843-3123, USA
autor
  • Department of Mechanical Engineering Texas A&M University College Station, Texas 77843-3123, USA
autor
  • Department of Mechanics and Engineering Science Peking University, Beijing 100871, CHINA
Bibliografia
  • [1] Anguelov R.: Dedekind order completion of C(X) by Hausdorff continuous functions (to appear).
  • [2] Anguelov R. and Rosinger E. E.: Solution of nonlinear P DEs by Hausdorff continuous functions (to appear).
  • [3] Basu S., Foufoula-Georgiou E. and Porte-Agel F. (2004): Synthetic turbulence, fractal interpolation, and large-eddy simulation. - Phys. Rev. E, vol.70, 026310.
  • [4] Da Prato G. and Tubaro L. (Eds.) (2002): Stochastic Partial Differential Equations and Applications. - New York: Marcel Dekker Inc.
  • [5] Domaradzki J.A. and Saiki E.M. (1997): A subgrid-scale model based on the estimation of unresolved scales of turbulence. - Phys. Fluids, vol.9, pp.2148-2164.
  • [6] Ferziger J.H. (1996): Large Eddy Simulation, in Simulation and Modeling of Turbulent Flows (T.B. Gatski, M.Y. Hussaini and J.L. Lumley, Eds.). - Oxford: Oxford University Press, pp.109-154.
  • [7] Forster D., Nelson D.R. and Stephen M.J. (1977): Large-distance and long-time properties of a randomly stirred fluid. - vol.16, pp.732-749.
  • [8] Friedrich R. and Rodi W. (Eds.) (2002): Advances in LES of complex flows. - Proceedings of the Euromech Colloquium 412, Munich, Germany, October 4-6,2000, Boston: Kluwer Academic Publishers.
  • [9] Frisch U. (1995): Turbulence: the legacy of A. N. Kolmogorov. - New York: Cambridge University Press.
  • [10] Funaki T. and Woyczynski W.A. (Eds.) (1996) Nonlinear Stochastic PDEs: Hydrodynamic Limits and Burgers' Turbulence. - New York: Springer.
  • [11] Gardiner C.W. (1985): Handbook of Stochastic Methods for Physice, Chemistry and the Natural Sciences. - New York: Springer- Verlag.
  • [12] Germano M., Piomelli U., Moin P. and Cabot W.H. (1991): A dynamic subgrid-scale eddy viscosity model. - Phys. Fluids, vol.3, pp.1760-1765.
  • [13] Ghosal S. (1999): Mathematical and physical constraints on large-eddy simulation of turbulence. - AIAA J., vol.37, pp.425-433.
  • [14] Hinze J.O. (1959): Turbulence. An Introduction to its Mechanism and Theory. - New York: McGraw-Hill.
  • [15] Launder B.E. (1996): An introduction to single-point closure methodology. In Simulation and Modeling of Turbulent Flows (T.B. Gatski, M.Y. Hussaini and J.L. Lumley, Eds.). - New York: Oxford University Press, pp.243-310.
  • [16] Meneveau C. and Katz J. (2000): Scale-invariance and turbulence models for large-eddy simulation. - Annu. Rev. Fluid Mech., vol.32, pp.1-32.
  • [17] Monin A.S. and Yaglom A.M. (1971): Statistical Fluid Mechanics: Mechanics of Turbulence. - Cambridge, Massachusetts: MIT Press.
  • [18] Oldroyd J.G. (1950): On the formulation of rheological equations of state. - Proc. Roy. Soc.A, vol.200, pp.523-541.
  • [19] Perrin J. (1923): Atoms. - London: Constable and Company Ltd.
  • [20] Piomelli U. (1999): Large-eddy simulation: achievements and challenges. - Progress in Aerospace Sciences, vol.35, pp.335-362.
  • [21] Pope S.B. (2004): Ten questions concerning the large-eddy simulation of turbulent flows. - New J. Phys., vol.6, pp.1-24.
  • [22] Rajagopal K.R. and Tao L. (2002): Modeling of the microwave drying process of aqueous dielectries. - ZAMP, vol.53, pp.923-948.
  • [23] Rajagopal K.R., Tao L. and Chen G.Q. (2004): Some issues in constitutive modeling. - Communications in Nonlinear Science and Numerical Simulation, vol.9, pp.305-312.
  • [24] Scotti A. and Meneveau C. (1999): A fractal model for large eddy simulation of turbulent flow. - Physica D, vol.127, pp.l98-232.
  • [25] Speziale C.C. (1996): Modeling of turbulent transport equations. In: Simulation and Modeling of Turbulent Flows (T.B. Galski, M.Y. Hussaini and J.L. Lumley, Eds.). - New York: Oxford University Press, pp.185-242.
  • [26] Stevens B. and Lenschow D.H. (2001): Observations, experiments, and large eddy simulation. - Bull. Amer. Meteor. Soc, vol.82, pp.283-294.
  • [27] Wolf-Gladrow D.A. (2000): Lattice-Gas Cellular Automata and Lattice Boliz-mann Models: An Introduction. - New York: Springer-Verlag.
  • [28] Yakhot V. and Orszag S. (1986): Renormalization group analysis of turbulence. -I. Basic Theory, vol. 1, pp.3-51.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ2-0015-0007
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