Share

Non-Body Conformal Grid Methods for Large-Eddy Simulations of Compressible Flows and Their Applications in Computational Aeroacoustics

Download Non-Body Conformal Grid Methods for Large-Eddy Simulations of Compressible Flows and Their Applications in Computational Aeroacoustics PDF Online Free

Author :
Release : 2015
Genre :
Kind : eBook
Book Rating : /5 ( reviews)

GET EBOOK


Book Synopsis Non-Body Conformal Grid Methods for Large-Eddy Simulations of Compressible Flows and Their Applications in Computational Aeroacoustics by : Jee-Whan Nam

Download or read book Non-Body Conformal Grid Methods for Large-Eddy Simulations of Compressible Flows and Their Applications in Computational Aeroacoustics written by Jee-Whan Nam. This book was released on 2015. Available in PDF, EPUB and Kindle. Book excerpt: In the applications of computational aeroacoustics (CAA) involving far-field noise predictions, the most common solution strategy is the \textit{hybrid method} which combines a computational fluid dynamics (CFD) solver for the sound source field with an acoustic solver for the acoustic far-field. Hybrid CAA methods provide flexibility to select the most appropriate methods to compute the sound source and the acoustic fields, respectively, to suit various aeroacoustic problems. The present study reports the development of a hybrid large-eddy simulation (LES)-acoustic analogy method to effectively predict the noise of viscous flow over complex geometries. With complex geometries, difficulties arise with numerical methods based on body fitted grids. Generating good quality body fitted grids around complex geometries is challenging and time-consuming. Alternatively, numerical methods based on non-body conformal grids can deal with bodies of almost any arbitrary shape. Although the present research was initially motivated for CAA applications, most of the contributions and the novelty of the work is in the development of efficient, easy-to-implement and more accurate non-body conformal methods that can be used for flow over complex geometries. To date, most of the listed work on non-body conformal methods is applied to incompressible flows. The use of non-body conformal methods for compressible turbulent flows is still rare and immature. Two non-body conformal grid methods are developed and assessed in this work: the ghost-cell based immersed boundary method (GC-IBM) and the ghost-cell based cut-cell method (GC-CCM). In both methods, the boundary conditions on the immersed boundary are enforced through the use of ``ghost cells'' located inside the solid body. Variables on these ghost cells are computed using linear interpolation schemes. The implementation using GC-IBM is simpler; however, the exact shape of the fluid cells in the vicinity of the solid boundary is not detailed, which results in the loss or gain of mass and momentum. As such, sufficiently refined meshing is required in the vicinity of the solid boundary to mitigate the error on mass conservation. The implementation using GC-CCM requires more work; however, the underlying conservation laws is guaranteed by introducing ``cut cells''. A cell-merging approach is used to address the \textit{small-cell problem} associated with a Cartesian cut-cell method, which, if untreated, results in the numerical instability and stiffness of the system of equations. The applicability of the developed non-body conformal methods is investigated in the compressible LES framework. Turbulent flows in various complex geometric settings are simulated using these non-body conformal methods for a wide range of Reynolds numbers and Mach numbers. For high Reynolds number flows, the developed non-body conformal methods employ a wall model to approximate the wall-shear stress, thus avoiding a requirement for severe grid resolution near the wall. No previously published work involves LES of high Reynolds number compressible flows using a wall model and a non-body conformal method. This research uses a simple wall model based on a wall function to approximate the near wall behaviour, but this approach can be extended to other wall models if necessary. Better wall modelling strategies should be investigated in the future. The numerical results demonstrate that the GC-CCM is capable of capturing near-wall flows relatively well despite the simple wall model used. GC-CCM also provides relatively accurate results compared to other non-body conformal methods. Returning to the original research efforts for aeroacoustic applications, the GC-CCM is finally benchmarked for the prediction of far-field radiated noise from a flow over a circular cylinder. Of many hybrid approaches available in CAA, Ffowcs-Williams and Hawkings (FW-H) approach is selected to explore the far-field acoustic calculation. Comparison of the results to the experimental data shows that the developed hybrid LES-acoustic analogy method is capable of accurately predicting the sound spectrum for this case of three-dimensional flow over a cylinder in the sub-critical regime. Large-eddy simulations with more complex geometries, such as wings or high-lift systems, have not been performed as a part of this research. Further work is encouraged in order to conclude the research direction originally envisioned by the author.

A Non-body Conformal Grid Method for Simulations of Laminar and Turbulent Flows with a Compressible Large Eddy Simulation Solver

Download A Non-body Conformal Grid Method for Simulations of Laminar and Turbulent Flows with a Compressible Large Eddy Simulation Solver PDF Online Free

Author :
Release : 2009
Genre :
Kind : eBook
Book Rating : /5 ( reviews)

GET EBOOK


Book Synopsis A Non-body Conformal Grid Method for Simulations of Laminar and Turbulent Flows with a Compressible Large Eddy Simulation Solver by : Wen Wang

Download or read book A Non-body Conformal Grid Method for Simulations of Laminar and Turbulent Flows with a Compressible Large Eddy Simulation Solver written by Wen Wang. This book was released on 2009. Available in PDF, EPUB and Kindle. Book excerpt:

Entropy-stable Hybridized Discontinuous Galerkin Methods for Large-eddy Simulation of Transitional and Turbulent Flows

Download Entropy-stable Hybridized Discontinuous Galerkin Methods for Large-eddy Simulation of Transitional and Turbulent Flows PDF Online Free

Author :
Release : 2019
Genre :
Kind : eBook
Book Rating : /5 ( reviews)

GET EBOOK


Book Synopsis Entropy-stable Hybridized Discontinuous Galerkin Methods for Large-eddy Simulation of Transitional and Turbulent Flows by : Pablo Fernández

Download or read book Entropy-stable Hybridized Discontinuous Galerkin Methods for Large-eddy Simulation of Transitional and Turbulent Flows written by Pablo Fernández. This book was released on 2019. Available in PDF, EPUB and Kindle. Book excerpt: The use of computational fluid dynamics (CFD) in the aerospace industry is limited by the inability to accurately and reliably predict complex transitional and turbulent flows. This has become a major barrier to further reduce the costs, times and risks in the design process, further optimize designs, and further reduce fuel consumption and toxic emissions. Large-eddy simulation (LES) is currently the most promising simulation technique to accurately predict transitional and turbulent flows. LES, however, remains computationally expensive and often suffers from accuracy and robustness issues to the extent that it is still not practical for most applications of interest. In this thesis, we develop a series of methods and techniques to improve efficiency, accuracy and robustness of large-eddy simulations with the goal of making CFD a more powerful tool in the aerospace industry. First, we introduce a new class of high-order discretization schemes for the Euler and Navier-Stokes equations, referred to as the entropy-stable hybridized discontinuous Galerkin (DG) methods. As hybridized methods, they are amenable to static condensation and hence to more efficient implementations than standard DG methods. As entropy-stable methods, they are superior to conventional (non-entropy stable) methods for LES of compressible flows in terms of stability, robustness and accuracy. Second, we develop parallel iterative methods to efficiently and scalably solve the nonlinear system of equations arising from the discretization. The combination of hybridized DG methods with the proposed solution method provides excellent parallel scalability up to petascale and, for moderately high accuracy orders, leads to about one order of magnitude speedup with respect to standard DG methods. Third, we introduced a non-modal analysis theory that characterizes the numerical dissipation of high-order discretization schemes, including hybridized DG methods. Non-modal analysis provides critical guidelines on how to define the polynomial approximation space and the Riemann solver to improve accuracy and robustness in LES. Forth, we investigate how to best account for the effect of the subgrid scales (SGS) that, by definition, exist in LES. Numerical and theoretical results show the Riemann solver in the DG scheme plays the role of an implicit SGS model. More importantly, a change in the current best practices for SGS modeling is required in the context of high-order DG methods. And fifth, we present a physics-based shock capturing method for LES of high-Mach-number and high-Reynolds-number flows. The shock capturing method performs robustly from transonic to hypersonic regimes, provides sharp shock profiles, and has a small impact on the resolved turbulent structures. These are all critical ingredients to advance the state-of-the-art of high-order methods for LES, both in terms of methodology and understanding the relationship between the physics and the numerics.

A New Approach to the Large-Eddy Simulation of High-Speed Compressible Flows

Download A New Approach to the Large-Eddy Simulation of High-Speed Compressible Flows PDF Online Free

Author :
Release : 1998
Genre :
Kind : eBook
Book Rating : /5 ( reviews)

GET EBOOK


Book Synopsis A New Approach to the Large-Eddy Simulation of High-Speed Compressible Flows by :

Download or read book A New Approach to the Large-Eddy Simulation of High-Speed Compressible Flows written by . This book was released on 1998. Available in PDF, EPUB and Kindle. Book excerpt: All entirely new approach to the large-eddy simulation (LES) of high speed compressible turbulent flows is presented. In this new approach to large-eddy simulations, subgrid scale stress models go continuously to Reynolds stress models in the coarse mesh/infinite Reynolds number limit, where a Reynolds stress calculation (RANS) is done in parallel with the LES to get an estimate of the Kolmogorov length scale. Hence, this formally constitutes a combined LES/time dependent RANS capability. Here, the Reynolds stress model that is recovered in the coarse mesh limit has a dependence on rotational strains through strain-dependent coefficients as well as through anisotropic eddy viscosity terms which are usually neglected in subgrid scale models. Unlike in existing subgrid scale models, this new model has the correct dependence on the mesh size through the dimensionless ratio of the computational mesh size to the Kolmogorov length scale. It is this ratio that determines how well-resolved a computation is in the numerical simulation of turbulence and should be used to parameterize subgid scale models. Use is made of the Morkovin hypothesis in the formulation of compressible subgrid scale models. This allows for the description of supersonic turbulent flows provided that they are not in the hypersonic flow regime. A critical assessment of this new approach is provided along with a discussion of traditional approaches and the prospects for future applications to the high-speed compressible flows of technological importance.

A Parallel Finite Volume Algorithm for Large-eddy Simulation of Turbulent Flows

Download A Parallel Finite Volume Algorithm for Large-eddy Simulation of Turbulent Flows PDF Online Free

Author :
Release : 1998
Genre : Parallel computers
Kind : eBook
Book Rating : /5 ( reviews)

GET EBOOK


Book Synopsis A Parallel Finite Volume Algorithm for Large-eddy Simulation of Turbulent Flows by : Trong T. Bui

Download or read book A Parallel Finite Volume Algorithm for Large-eddy Simulation of Turbulent Flows written by Trong T. Bui. This book was released on 1998. Available in PDF, EPUB and Kindle. Book excerpt:

You may also like...