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IUTAM Laminar-Turbulent Transition - 9th IUTAM Symposium, London, UK, September 2-6, 2019 (Hardcover, 1st ed. 2022): Spencer... IUTAM Laminar-Turbulent Transition - 9th IUTAM Symposium, London, UK, September 2-6, 2019 (Hardcover, 1st ed. 2022)
Spencer Sherwin, Peter Schmid, Xuesong Wu
R6,730 Discovery Miles 67 300 Ships in 10 - 15 working days

This volume comprises the carefully revised papers of the 9th IUTAM Symposium on Laminar-Turbulent Transition, held at the Imperial College, London, UK, in September 2019. The papers focus on the leading research in understanding transition to turbulence, which is a challenging topic of fluid mechanics and arises in many modern technologies as well as in nature. The proceedings are of interest for researchers in fluid mechanics and industry who have to handle these types of problems, such as in the aeronautical sector.

IUTAM Laminar-Turbulent Transition - 9th IUTAM Symposium, London, UK, September 2-6, 2019 (Paperback): Spencer Sherwin, Peter... IUTAM Laminar-Turbulent Transition - 9th IUTAM Symposium, London, UK, September 2-6, 2019 (Paperback)
Spencer Sherwin, Peter Schmid, Xuesong Wu
R6,674 Discovery Miles 66 740 Ships in 10 - 15 working days
Spectral/hp Element Methods for Computational Fluid Dynamics - Second Edition (Hardcover, 2nd Revised edition): George... Spectral/hp Element Methods for Computational Fluid Dynamics - Second Edition (Hardcover, 2nd Revised edition)
George Karniadakis, Spencer Sherwin
R6,240 Discovery Miles 62 400 Ships in 10 - 15 working days

Spectral methods have long been popular in direct and large eddy simulation of turbulent flows, but their use in areas with complex-geometry computational domains has historically been much more limited. More recently the need to find accurate solutions to the viscous flow equations around complex configurations has led to the development of high-order discretization procedures on unstructured meshes, which are also recognized as more efficient for solution of time-dependent oscillatory solutions over long time periods. Here Karniadakis and Sherwin present a much-updated and expanded version of their successful first edition covering the recent and significant progress in multi-domain spectral methods at both the fundamental and application level. Containing over 50% new material, including discontinuous Galerkin methods, non-tensorial nodal spectral element methods in simplex domains, and stabilization and filtering techniques, this text aims to introduce a wider audience to the use of spectral/hp element methods with particular emphasis on their application to unstructured meshes. It provides a detailed explanation of the key concepts underlying the methods along with practical examples of their derivation and application, and is aimed at students, academics and practitioners in computational fluid mechanics, applied and numerical mathematics, computational mechanics, aerospace and mechanical engineering and climate/ocean modelling.

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