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1

Center, Ames Research, ed. Finite element aircraft simulation of turbulence. Ames Research Center, 1995.

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2

1959-, Jauberteau François, and Temam Roger, eds. Dynamic multilevel methods and the numerical simulation of turbulence. Cambridge University Press, 1999.

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3

Davidson, Moreira, and Vilhena Marco, eds. Air pollution and turbulence: Modeling and applications. Taylor & Francis, 2010.

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4

T, Dubois, Temam Roger, and Langley Research Center, eds. The nonlinear Galerkin method: A multi-scale method applied to the simulation of homogeneous turbulent flows. National Aeronautics and Space Administration, Langley Research Center, 1993.

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5

Davidson, Moreira, and Vilhena Marco, eds. Air pollution and turbulence: Modeling and applications. Taylor & Francis, 2010.

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6

A, Ostrovskiĭ L., and Environmental Technology Laboratory (Oceanic and Atmospheric Research Laboratories), eds. Laboratory modeling of interactions between waves and flows in the upper ocean. U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Oceanic and Atmospheric Research Laboratories, Environmental Technology Laboratory, 2000.

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7

ERCOFTAC, Workshop (1990 Lausanne Switzerland). Numerical simulation of unsteady flows and transition to turbulence: Proceedings of the ERCOFTAC Workshop held at EPFL, 26-28 March 1990, Lausanne, Switzerland. Cambridge University Press, 1992.

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8

COSPAR, ed. Multiscale magnetospheric processes: Theory, simulations, and multipoint observations. published for the Committee on Space Research [by] Elsevier, 2008.

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9

Johan, Meyers, Geurts Bernard, and Sagaut Pierre 1967-, eds. Quality and reliability of large-eddy simulations. Springer, 2008.

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10

A, Ostrovskiĭ L., and Environmental Technology Laboratory (Environmental Research Laboratories), eds. Laboratory modeling and theoretical studies of wave processes in the ocean. U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Environmental Technology Laboratory, 1997.

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11

A, Ostrovskiĭ L., and Environmental Technology Laboratory (Oceanic and Atmospheric Research Laboratories), eds. Laboratory modeling and theoretical studies of hydrodynamic motions around a sphere moving in a thermocline. U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Oceanic and Atmospheric Research Laboratories, Environmental Technology Laboratory, 2001.

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12

V, Pogorelov Nikolai, Audit Edouard, Zank G. P, and Astronomical Society of the Pacific., eds. Numerical modeling of space plasma flows: ASTRONUM-2007 : proceedings of the 2nd International Conference held at Hotel Concorde Montparnasse, Paris, France, 10-15 June 2007. Astronomical Society of the Pacific, 2008.

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13

Jiang, Xi. Numerical techniques for direct and large-eddy simulations. Taylor & Francis, 2009.

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14

United States. National Aeronautics and Space Administration. Scientific and Technical Information Branch., ed. Adding computationally efficient realism to Monte Carlo turbulence simulation. National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1985.

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15

Luo, Li-Shi. Applications of the Lattice Boltzmann method to complex and turbulent flows. ICASE, NASA Langley Research Center, 2002.

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16

Bardina, Jorge E. Turbulence modeling ; Turbulence compressibility corrections ; Three-dimensional Navier-Stokes method with two-equation turbulence models for efficient numerical simulation of hypersonic flows ; Three-dimensional Navier-Stokes simulations with two-equation turbulence models of intersecting shock-waves/turbulent boundary layer at Mach 8.3. MCAT Institute, 1995.

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17

Laurien, Eckart. Numerische simulation zur aktiven Beeinflussung des laminar- turbulenten Ubergangs in der Plattengrenzschichtstromung. DFVLR, 1986.

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18

O, Demuren Ayodeji, and Langley Research Center, eds. Numerical simulation of turbulent jets with rectangular cross-section. National Aeronautics and Space Administration, Langley Research Center, 1997.

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19

O, Demuren A., and Langley Research Center, eds. Numerical simulation of turbulent jets with rectangular cross-section. National Aeronautics and Space Administration, Langley Research Center, 1997.

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20

Center, NASA Glenn Research, ed. A hybrid numerical method for turbulent mixing layers. National Aeronautics and Space Administration, Glenn Research Center, 2001.

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21

NASA Dryden Flight Research Center., ed. A parallel, finite-volume algorithm for large-eddy simulation of turbulent flows. National Aeronautics and Space Administration, Dryden Flight Research Center, 1999.

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22

Bui, Trong T. A parallel, finite-volume algorithm for large-eddy simulation of turbulent flows. National Aeronautics and Space Administration, Dryden Flight Research Center, 1999.

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23

NASA Dryden Flight Research Center., ed. A parallel, finite-volume algorithm for large-eddy simulation of turbulent flows. National Aeronautics and Space Administration, Dryden Flight Research Center, 1999.

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24

NASA Dryden Flight Research Center., ed. A parallel, finite-volume algorithm for large-eddy simulation of turbulent flows. National Aeronautics and Space Administration, Dryden Flight Research Center, 1999.

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25

NASA Dryden Flight Research Center., ed. A parallel, finite-volume algorithm for large-eddy simulation of turbulent flows. National Aeronautics and Space Administration, Dryden Flight Research Center, 1999.

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26

Garrood, Stuart Thomas. The refinement and testing of a method for the augmentation of flight simulator motion due to turbulence. Dept. of Aerospace Science and Engineering, University of Toronto, 1992.

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27

Reister, Heinrich. Numerische Simulation der Wechselwirkung von Druckwellen mit laminaren und turbulenten Grenzschichten. DFVLR, 1987.

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28

Center, Lewis Research, ed. Improved modeling of finite-rate turbulent combustion processes in research combustors. National Aeronautics and Space Administration, Lewis Research Center, 1998.

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29

Garrood, Stuart Thomas. The refinement and testing of a method for the augmentation of flight simulator motion due to turbulence. National Library of Canada = Bibliothèque nationale du Canada, 1993.

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30

Center, Lewis Research, ed. A control-volume method for analysis of unsteady thrust augmenting ejector flows. Lewis Research Center, National Aeronautics and Space Administration, 1988.

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31

Center, Lewis Research, ed. A control-volume method for analysis of unsteady thrust augmenting ejector flows. Lewis Research Center, National Aeronautics and Space Administration, 1988.

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32

Moser, Robert D. Numerical Methods in Turbulence Simulation. Academic Press, 2022.

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33

Moser, Robert D. Numerical Methods in Turbulence Simulation. Elsevier Science & Technology Books, 2022.

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34

Moreira, Davidson, and Marco Vilhena. Air Pollution and Turbulence. Taylor & Francis Group, 2019.

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35

Tang, Lin. Simulation of multiphase free shear layers. 1990.

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36

Moreira, Davidson, and Marco Vilhena. Air Pollution and Turbulence: Modeling and Applications. Taylor & Francis Group, 2009.

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37

CFD Module. Mercury Learning & Information, 2015.

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38

CFD Module. de Gruyter GmbH, Walter, 2015.

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39

CFD Module. de Gruyter GmbH, Walter, 2015.

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40

Succi, Sauro. Lattice Boltzmann for Turbulence Modeling. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199592357.003.0024.

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This chapter introduces the main ideas behind the application of LBE methods to the problem of turbulence modeling, namely the simulation of flows which contain scales of motion too small to be resolved on present-day and foreseeable future computers. Many real-life flows of practical interest exhibit Reynolds numbers far too high to be directly simulated in full resolution on present-day computers and arguably for many years to come. This raises the challenge of predicting the behavior of highly turbulent flows without directly simulating all scales of motion which take part to turbulence dyn
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41

Moreira, Davidson, and Marco Vilhena. Air Pollution and Turbulence. Taylor & Francis Group, 2009.

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42

Gatski, Thomas B., M. Yousuff Hussaini, and John L. Lumley, eds. Simulation and Modeling of Turbulent Flows. Oxford University Press, 1996. http://dx.doi.org/10.1093/oso/9780195106435.001.0001.

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This book provides students and researchers in fluid engineering with an up-to-date overview of turbulent flow research in the areas of simulation and modeling. A key element of the book is the systematic, rational development of turbulence closure models and related aspects of modern turbulent flow theory and prediction. Starting with a review of the spectral dynamics of homogenous and inhomogeneous turbulent flows, succeeding chapters deal with numerical simulation techniques, renormalization group methods and turbulent closure modeling. Each chapter is authored by recognized leaders in thei
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43

Moreira, Davidson, and Marco Vilhena. Air Pollution and Turbulence: Modeling and Applications. Taylor & Francis Group, 2009.

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44

Air Pollution and Turbulence: Modeling and Applications. CRC Press LLC, 2009.

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45

Computational methods in water resources. Computational Mechanics Publications, 1988.

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46

Sagaut, P., Eric Garnier, and Nikolaus Adams. Large Eddy Simulation for Compressible Flows. Springer, 2009.

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47

Sagaut, P., Eric Garnier, and Nikolaus Adams. Large Eddy Simulation for Compressible Flows. Springer, 2012.

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48

Large Eddy Simulation For Compressible Flows. Springer, 2009.

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49

Largeeddy Simulation In Hydraulics. Taylor & Francis Ltd, 2013.

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50

Rodi, Wolfgang. Large-Eddy Simulation in Hydraulics. Taylor & Francis Group, 2013.

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