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Development Of A Recursion Rng Based Turbulence Model by Ye Zhou
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1DTIC ADA270206: Development Of A Recursion RNG-Based Turbulence Model
By Defense Technical Information Center
Reynolds stress closure models based on the recursion renormalization group theory are developed for the prediction of turbulent separated flows. The proposed model uses a finite wavenumber truncation scheme to account for the spectral distribution of energy. In particular, the model incorporates effects of both local and nonlocal interactions. The nonlocal interactions are shown to yield a contribution identical to that from the Epsilon-RNG, while the local interactions introduce higher order dispersive effects. A formal analysis of the model is presented and its ability to accurately predict separated flows is analyzed from a combined theoretical and computational stand point. Turbulent flow past a backward facing step is chosen as a test case and the results obtained based on detailed computations demonstrate that the proposed recursion -RNG model with finite cut-off wavenumber can yield very good predictions for the backstep problem. Reynolds stress model, Renormalization group, Turbulent separated flows.
“DTIC ADA270206: Development Of A Recursion RNG-Based Turbulence Model” Metadata:
- Title: ➤ DTIC ADA270206: Development Of A Recursion RNG-Based Turbulence Model
- Author: ➤ Defense Technical Information Center
- Language: English
“DTIC ADA270206: Development Of A Recursion RNG-Based Turbulence Model” Subjects and Themes:
- Subjects: ➤ DTIC Archive - Zhou, Ye - INSTITUTE FOR COMPUTER APPLICATIONS IN SCIENCE AND ENGINEERING HAMPTON VA - *TURBULENT FLOW - *FLOW SEPARATION - TEST AND EVALUATION - CLOSURES - EQUATIONS OF MOTION - STRESS ANALYSIS - REYNOLDS NUMBER - SPECTRAL ENERGY DISTRIBUTION - PREDICTIONS - MODELS - INTERACTIONS - ENERGY
Edition Identifiers:
- Internet Archive ID: DTIC_ADA270206
Downloads Information:
The book is available for download in "texts" format, the size of the file-s is: 20.14 Mbs, the file-s for this book were downloaded 58 times, the file-s went public at Mon Mar 12 2018.
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2NASA Technical Reports Server (NTRS) 19940009245: Development Of A Recursion RNG-based Turbulence Model
By NASA Technical Reports Server (NTRS)
Reynolds stress closure models based on the recursion renormalization group theory are developed for the prediction of turbulent separated flows. The proposed model uses a finite wavenumber truncation scheme to account for the spectral distribution of energy. In particular, the model incorporates effects of both local and nonlocal interactions. The nonlocal interactions are shown to yield a contribution identical to that from the epsilon-renormalization group (RNG), while the local interactions introduce higher order dispersive effects. A formal analysis of the model is presented and its ability to accurately predict separated flows is analyzed from a combined theoretical and computational stand point. Turbulent flow past a backward facing step is chosen as a test case and the results obtained based on detailed computations demonstrate that the proposed recursion -RNG model with finite cut-off wavenumber can yield very good predictions for the backstep problem.
“NASA Technical Reports Server (NTRS) 19940009245: Development Of A Recursion RNG-based Turbulence Model” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 19940009245: Development Of A Recursion RNG-based Turbulence Model
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 19940009245: Development Of A Recursion RNG-based Turbulence Model” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - BACKWARD FACING STEPS - RENORMALIZATION GROUP METHODS - REYNOLDS STRESS - SEPARATED FLOW - TURBULENCE MODELS - TURBULENT FLOW - EDDY VISCOSITY - STRESS ANALYSIS - Zhou, YE - Vahala, George - Thangam, S.
Edition Identifiers:
- Internet Archive ID: NASA_NTRS_Archive_19940009245
Downloads Information:
The book is available for download in "texts" format, the size of the file-s is: 27.72 Mbs, the file-s for this book were downloaded 62 times, the file-s went public at Tue Oct 04 2016.
Available formats:
Abbyy GZ - Animated GIF - Archive BitTorrent - DjVuTXT - Djvu XML - Item Tile - Metadata - Scandata - Single Page Processed JP2 ZIP - Text PDF -
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