Numerical Analysis of Flow Around a Very High Turning Turbine Blade

Numerical Analysis of Flow Around a Very High Turning Turbine Blade
Title Numerical Analysis of Flow Around a Very High Turning Turbine Blade PDF eBook
Author Nath S. Gopalaswamy
Publisher
Pages 164
Release 1992
Genre Gas-turbines
ISBN

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Numerical Analysis of the Flow in a Turbulated Rectangular Duct Simulating the Cooling Passages in a Turbine Blade

Numerical Analysis of the Flow in a Turbulated Rectangular Duct Simulating the Cooling Passages in a Turbine Blade
Title Numerical Analysis of the Flow in a Turbulated Rectangular Duct Simulating the Cooling Passages in a Turbine Blade PDF eBook
Author Robert M. Palatka
Publisher
Pages 86
Release 1992
Genre
ISBN

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Numerical Analysis of Fluid Flow in an Internal Turbine Blade Cooling Passage

Numerical Analysis of Fluid Flow in an Internal Turbine Blade Cooling Passage
Title Numerical Analysis of Fluid Flow in an Internal Turbine Blade Cooling Passage PDF eBook
Author Marc L. Babich
Publisher
Pages 0
Release 1995
Genre
ISBN

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Presented at the International Gas Turbine and Aeroengine Congress and Exposition, Houston, Texas - June 5-8, 1995.

Impingement Jet Cooling in Gas Turbines

Impingement Jet Cooling in Gas Turbines
Title Impingement Jet Cooling in Gas Turbines PDF eBook
Author R.S. Amano
Publisher WIT Press
Pages 253
Release 2014-05-28
Genre Science
ISBN 1845649060

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Due to the requirement for enhanced cooling technologies on modern gas turbine engines, advanced research and development has had to take place in field of thermal engineering. Among the gas turbine cooling technologies, impingement jet cooling is one of the most effective in terms of cooling effectiveness, manufacturability and cost. The chapters contained in this book describe research on state-of-the-art and advanced cooling technologies that have been developed, or that are being researched, with a variety of approaches from theoretical, experimental, and CFD studies. The authors of the chapters have been selected from some of the most active researchers and scientists on the subject. This is the first to book published on the topics of gas turbines and heat transfer to focus on impingement cooling alone.

Numerical Analysis of Blade Tip Leakage Flow and Shroud Heat Transfer in Gas Turbine Engines

Numerical Analysis of Blade Tip Leakage Flow and Shroud Heat Transfer in Gas Turbine Engines
Title Numerical Analysis of Blade Tip Leakage Flow and Shroud Heat Transfer in Gas Turbine Engines PDF eBook
Author Md. Hamidur Rahman
Publisher
Pages 288
Release 2008
Genre
ISBN

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Unsteady Computational Fluid Dynamics in Aeronautics

Unsteady Computational Fluid Dynamics in Aeronautics
Title Unsteady Computational Fluid Dynamics in Aeronautics PDF eBook
Author P.G. Tucker
Publisher Springer Science & Business Media
Pages 432
Release 2013-08-30
Genre Technology & Engineering
ISBN 9400770499

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The field of Large Eddy Simulation (LES) and hybrids is a vibrant research area. This book runs through all the potential unsteady modelling fidelity ranges, from low-order to LES. The latter is probably the highest fidelity for practical aerospace systems modelling. Cutting edge new frontiers are defined. One example of a pressing environmental concern is noise. For the accurate prediction of this, unsteady modelling is needed. Hence computational aeroacoustics is explored. It is also emerging that there is a critical need for coupled simulations. Hence, this area is also considered and the tensions of utilizing such simulations with the already expensive LES. This work has relevance to the general field of CFD and LES and to a wide variety of non-aerospace aerodynamic systems (e.g. cars, submarines, ships, electronics, buildings). Topics treated include unsteady flow techniques; LES and hybrids; general numerical methods; computational aeroacoustics; computational aeroelasticity; coupled simulations and turbulence and its modelling (LES, RANS, transition, VLES, URANS). The volume concludes by pointing forward to future horizons and in particular the industrial use of LES. The writing style is accessible and useful to both academics and industrial practitioners. From the reviews: "Tucker's volume provides a very welcome, concise discussion of current capabilities for simulating and modellng unsteady aerodynamic flows. It covers the various pos sible numerical techniques in good, clear detail and presents a very wide range of practical applications; beautifully illustrated in many cases. This book thus provides a valuable text for practicing engineers, a rich source of background information for students and those new to this area of Research & Development, and an excellent state-of-the-art review for others. A great achievement." Mark Savill FHEA, FRAeS, C.Eng, Professor of Computational Aerodynamics Design & Head of Power & Propulsion Sciences, Department of Power & Propulsion, School of Engineering, Cranfield University, Bedfordshire, U.K. "This is a very useful book with a wide coverage of many aspects in unsteady aerodynamics method development and applications for internal and external flows." L. He, Rolls-Royce/RAEng Chair of Computational Aerothermal Engineering, Oxford University, U.K. "This comprehensive book ranges from classical concepts in both numerical methods and turbulence modelling approaches for the beginner to latest state-of-the-art for the advanced practitioner and constitutes an extremely valuable contribution to the specific Computational Fluid Dynamics literature in Aeronautics. Student and expert alike will benefit greatly by reading it from cover to cover." Sébastien Deck, Onera, Meudon, France

A Numerical Investigation of Time Resolved Flows Around Turbine Blades

A Numerical Investigation of Time Resolved Flows Around Turbine Blades
Title A Numerical Investigation of Time Resolved Flows Around Turbine Blades PDF eBook
Author Edward J. Brooksbank
Publisher
Pages
Release 2001
Genre
ISBN

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