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Uncertainty Quantification in Comput...
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Uncertainty Quantification in Computational Fluid Dynamics and Aircraft Engines
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Uncertainty Quantification in Computational Fluid Dynamics and Aircraft Engines/ edited by Francesco Montomoli.
other author:
Montomoli, Francesco.
Description:
X, 198 p. 88 illus., 52 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Aerospace engineering. -
Online resource:
https://doi.org/10.1007/978-3-319-92943-9
ISBN:
9783319929439
Uncertainty Quantification in Computational Fluid Dynamics and Aircraft Engines
Uncertainty Quantification in Computational Fluid Dynamics and Aircraft Engines
[electronic resource] /edited by Francesco Montomoli. - 2nd ed. 2019. - X, 198 p. 88 illus., 52 illus. in color.online resource.
Introduction -- Chapter 1. Manufacturing/in Service Uncertainty and Impact on Life and Performance of Gas Turbines/Aircraft Engines -- Chapter 2. Why Uncertainty Quantification in CFD? The Matrix of Knowledge -- Chapter 3. Mathematical Formulation -- Chapter 4. Uncertainty Quantification Applied to Gas Turbine Components -- Chapter 5. Future developments.
This book introduces design techniques developed to increase the safety of aircraft engines, and demonstrates how the application of stochastic methods can overcome problems in the accurate prediction of engine lift caused by manufacturing error. This in turn addresses the issue of achieving required safety margins when hampered by limits in current design and manufacturing methods. The authors show that avoiding the potential catastrophe generated by the failure of an aircraft engine relies on the prediction of the correct behaviour of microscopic imperfections. This book shows how to quantify the possibility of such failure, and that it is possible to design components that are inherently less risky and more reliable. This new, updated and significantly expanded edition gives an introduction to engine reliability and safety to contextualise this important issue, evaluates newly-proposed methods for uncertainty quantification as applied to jet engines. Uncertainty Quantification in Computational Fluid Dynamics and Aircraft Engines will be of use to gas turbine manufacturers and designers as well as CFD practitioners, specialists and researchers. Graduate and final year undergraduate students in aerospace or mathematical engineering may also find it of interest.
ISBN: 9783319929439
Standard No.: 10.1007/978-3-319-92943-9doiSubjects--Topical Terms:
686400
Aerospace engineering.
LC Class. No.: TL787-4050.22
Dewey Class. No.: 629.1
Uncertainty Quantification in Computational Fluid Dynamics and Aircraft Engines
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Introduction -- Chapter 1. Manufacturing/in Service Uncertainty and Impact on Life and Performance of Gas Turbines/Aircraft Engines -- Chapter 2. Why Uncertainty Quantification in CFD? The Matrix of Knowledge -- Chapter 3. Mathematical Formulation -- Chapter 4. Uncertainty Quantification Applied to Gas Turbine Components -- Chapter 5. Future developments.
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This book introduces design techniques developed to increase the safety of aircraft engines, and demonstrates how the application of stochastic methods can overcome problems in the accurate prediction of engine lift caused by manufacturing error. This in turn addresses the issue of achieving required safety margins when hampered by limits in current design and manufacturing methods. The authors show that avoiding the potential catastrophe generated by the failure of an aircraft engine relies on the prediction of the correct behaviour of microscopic imperfections. This book shows how to quantify the possibility of such failure, and that it is possible to design components that are inherently less risky and more reliable. This new, updated and significantly expanded edition gives an introduction to engine reliability and safety to contextualise this important issue, evaluates newly-proposed methods for uncertainty quantification as applied to jet engines. Uncertainty Quantification in Computational Fluid Dynamics and Aircraft Engines will be of use to gas turbine manufacturers and designers as well as CFD practitioners, specialists and researchers. Graduate and final year undergraduate students in aerospace or mathematical engineering may also find it of interest.
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