株式会社極東書店トップ商品一覧TILDA: Towards Industrial LES/DNS in Aeronautics: Paving the Way for Future Accurate CFD - Results of the H2020 Research Project TILDA, Funded by the European Union, 2015 -2018. 2021 ed.

商品詳細

TILDA: Towards Industrial LES/DNS in Aeronautics: Paving the Way for Future Accurate CFD - Results of the H2020 Research Project TILDA, Funded by the European Union, 2015 -2018. 2021 ed.

TILDA: Towards Industrial LES/DNS in Aeronautics: Paving the Way for Future Accurate CFD - Results of the H2020 Research Project TILDA, Funded by the European Union, 2015 -2018. 2021 ed.

・ISBN 978-3-030-62050-9 paper EUR 199.99

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お気に入り
著者・編者Hirsch, Charles / Hillewaert, Koen / Hartmann, Ralf / Couaillier, Vincent / Boussuge, Jean-Francois / Chalot, Frederic / Bosniakov, Sergey / Haase, Werner (eds.),
シリーズ (Notes on Numerical Fluid Mechanics and Multidisciplinary Design)
出版社 (Springer Nature Switzerland AG, SZ)
出版年月2022
ページ数550 pp.
言語ENG
ニュース番号<A02-86367>

解説

This book offers detailed insights into new methods for high-fidelity CFD, and their industrially relevant applications in aeronautics. It reports on the H2020 TILDA project, funded by the European Union in 2015-2018. The respective chapters demonstrate the potential of high-order methods for enabling more accurate predictions of non-linear, unsteady flows, ensuring enhanced reliability in CFD predictions.

The book highlights industrially relevant findings and representative test cases on the development of high-order methods for unsteady turbulence simulations on unstructured grids; on the development of the LES/DNS methodology by means of multilevel, adaptive, fractal and similar approaches for applications on unstructured grids; and on leveraging existent large-scale HPC networks to facilitate the industrial applications of LES/DNS in daily practice. Furthermore, the book discusses multidisciplinary applications of high-order methods in the area of aero-acoustics. All in all, it offers timely insights into the application and performance of high-order methods for CFD, and an extensive reference guide for researchers, graduate students, and industrial engineers whose work involves CFD and turbulence modeling.