Generalized Energy Budget Equations for Large-Eddy Simulations of Scalar Turbulence

被引:0
|
作者
Gauding, Michael [1 ]
Wick, Achim [2 ]
Goebbert, Jens Henrik [3 ]
Hempel, Markus [1 ]
Peters, Norbert [2 ]
Hasse, Christian [1 ]
机构
[1] TU Bergakad Freiberg, Chair Numer Thermofluid Dynam, Freiberg, Germany
[2] Rhein Westfal TH Aachen, Inst Combust Technol, Aachen, Germany
[3] Juelich Aachen Res Alliance, Julich, Germany
来源
NEW RESULTS IN NUMERICAL AND EXPERIMENTAL FLUID MECHANICS X | 2016年 / 132卷
关键词
STATISTICS;
D O I
10.1007/978-3-319-27279-5_11
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The energy transfer between different scales of a passive scalar advected by homogeneous isotropic turbulence is studied by an exact generalized transport equation for the second moment of the scalar increment. This equation can be interpreted as a scale-by-scale energy budget equation, as it relates at a certain scale r terms representing the production, turbulent transport, diffusive transport and dissipation of scalar energy. These effects are analyzed by means of direct numerical simulation where each term is directly accessible. To this end, a variation of the Taylor microscale based Reynolds number between 88 and 754 is performed. Understanding the energy transport between scales is crucial for Large-Eddy Simulation (LES). For an analysis of the energy transfer in LES, a transport equation for the second moment of the filtered scalar increment is introduced. In this equation new terms appear due to the interaction between resolved and unresolved scales, which are analyzed in the context of an a priori and an a posteriori test. It is further shown that LES using an eddy viscosity approach is able to fulfill the correct inter-scale energy transport for the present configuration.
引用
收藏
页码:123 / 133
页数:11
相关论文
共 50 条
  • [21] A scalar subgrid model with flow structure for large-eddy simulations of scalar variances
    Flohr, P
    Vassilicos, JC
    JOURNAL OF FLUID MECHANICS, 2000, 407 : 315 - 349
  • [22] Mixing, scalar boundedness, and numerical dissipation in large-eddy simulations
    Sharan, Nek
    Matheou, Georgios
    Dimotakis, Paul E.
    JOURNAL OF COMPUTATIONAL PHYSICS, 2018, 369 : 148 - 172
  • [23] Scalar subgrid model with flow structure for large-eddy simulations of scalar variances
    Flohr, P
    Vassilicos, JC
    ADVANCES IN TURBULENCE VII, 1998, 46 : 565 - 566
  • [24] Determination of subfilter energy in large-eddy simulations
    Meyers, J
    Baelmans, M
    JOURNAL OF TURBULENCE, 2004, 5
  • [25] Energy backscatter in large-eddy simulations of three-dimensional incompressible isotropic turbulence
    Ossia, S
    Lesieur, M
    JOURNAL OF TURBULENCE, 2000, 1 : 1 - 11
  • [26] Kinetic and internal energy transfer in implicit large-eddy simulations of forced compressible turbulence
    Schmidt, Wolfram
    Grete, Philipp
    PHYSICAL REVIEW E, 2019, 100 (04)
  • [27] Large-eddy simulation of the influence of a wavy lower boundary on the turbulence kinetic energy budget redistribution
    Lu Zongze
    Fan Wei
    Li Shuang
    Ge Jianzhong
    JOURNAL OF OCEANOLOGY AND LIMNOLOGY, 2018, 36 (04) : 1178 - 1188
  • [28] Large-eddy simulation of the influence of a wavy lower boundary on the turbulence kinetic energy budget redistribution
    陆宗泽
    樊伟
    李爽
    葛建忠
    JournalofOceanologyandLimnology, 2018, 36 (04) : 1178 - 1188
  • [29] Large-eddy simulation of the influence of a wavy lower boundary on the turbulence kinetic energy budget redistribution
    Zongze Lu
    Wei Fan
    Shuang Li
    Jianzhong Ge
    Journal of Oceanology and Limnology, 2018, 36 : 1178 - 1188
  • [30] Inlet grid-generated turbulence for large-eddy simulations
    Blackmore, T.
    Batten, W. M. J.
    Bahaj, A. S.
    INTERNATIONAL JOURNAL OF COMPUTATIONAL FLUID DYNAMICS, 2013, 27 (6-7) : 307 - 315