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    Numerical investigations in turbomachinery: The state of the art article pay-per-view 25€/article

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    The objective of these Lecture Series notes is to review the latest developments and achievements in the field of computational techniques as applied to turbomachinery flows. Standard and advanced techniques currently used on a routine basis both in the academic and industrial environment are revised, and their merits and shortcoming analyzed on the basis of test problems of practical engineering relevance.

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    Turbulent combustion article pay-per-view 25€/article

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    The objective of these Lecture Series proceedings on Turbulent Combustion is to present the state-of-the-art review of on-going activities in turbulent combustion and to outline current research directions. Introductory lecture notes on the fundamentals of combustion, and in particular of turbulent combustion, are followed by up-to-date reviews on numerical modeling and experimental results in single and two-phase flows.

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    Advanced high-temperature instrumentation for gas turbine applications article pay-per-view 25€/article

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    In aero-engines as well as industrial gas turbines, the drive to higher efficiency is steadily raising the pressures and temperatures in the engines, and this further increases the challenge to instrumentation. Accurate measurements in the hot components of gas turbines (including combustion diagnostics) are recognized as a major need for the assessment of engine component health and performance. High temperature instrumentation is required not only during product development for the validation of new designs or component life prediction methods, but also in service for health monitoring and optimum engine control.

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    30th Computational Fluid Dynamics article pay-per-view 25€/article

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    The aim of the annual lecture series in Computational Fluid Dynamics (CFD) is to provide in-depth presentations of established methods and recent advances in numerical flow simulation.

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    High-performance computing of industrial flows article pay-per-view 25€/article

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    The objective of these proceedings is to provide a state of the art of High Performance Computing strategy applied in Computational Fluid Dynamics.

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    Liquid fragmentation in high-speed flow article pay-per-view 25€/article

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    Liquid injection into compressible crossflow has several interesting applications such as fuel injection in supersonic or hypersonic scramjet engines, thrust vector maneuvering of high speed aerial or space vehicles, and film cooling used in the thermal protection systems of space vehicles that experience atmospheric entry. The field involves many disciplines, and it is a complicated multi-phase flow field especially for compressible crossflow cases, with a unique flow topology including shock-shock and shock-boundary layer interactions. High aerodynamic shear forces, fragmentation, penetration and atomization of the liquid jet are important features that deserve detailed analyses.

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    Aerodynamic noise from wall-bounded flows article pay-per-view 25€/article

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    Flow control is a key issue for the improvement of the next generation of airplanes, cars and energy generation for a safe and clean environment.

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    Flow control: fundamentals, advances and applications article pay-per-view 25€/article

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    Flow control is a key issue for the improvement of the next generation of airplanes, cars and energy generation for a safe and clean environment.

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    Particle image velocimetry: general introduction to the technique article pay-per-view 25€/article

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    Particle Image Velocimetry (PIV) has appeared 25 years ago and since the beginning it has drastically improved in all fields. At the same time this technique becomes became more and more utilized in fluid dynamic laboratories from research institutes and industry and it is used now in a very large range of applications. After its first appearance in the laboratories, the PIV technique has benefited of the progress in the LASER technologies as well as electronic image recording, which considerably enhanced its potential. PIV has also taken advantage of several developments made in the processing algorithms in these two decades. This spectacular evolution has been largely supported through European collaborative projects such as EuroPIV and PivNet.

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    35Th CFD/ADIGMA course on very high order discretization methods article pay-per-view 25€/article

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    Schemes with order of accuracy higher than two have become an important subject of research in CFD, and the perspective of applying them in industrial aeronautical context is realistic within the next decade. In these course notes the basics and state of the art of the following methods are discussed in detail: Discontinuous Galerkin Finite Element methods; Spectral Element and Spectral Finite Volume methods; Residual Distribution methods. An effort was made to introduce the methods on model problems before applying them to the compressible and incompressible Navier-Stokes equations. Basic ideas like convergence analysis, a priori and duality based error estimates or adjoint consistency and shock capturing are discussed in much detail. Implementation issues are treated, such as efficient quadrature, parallelization, memory consumption and treatment of curved walls. Applications targeted are mainly in the area of steady and unsteady compressible aerodynamics, including transonic and supersonic flow.

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Items 41 to 50 of 315 total

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