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Propulsion and power = an exploratio...
~
Halliwell, Ian.
Propulsion and power = an exploration of gas turbine performance modeling /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Propulsion and power/ by Joachim Kurzke, Ian Halliwell.
Reminder of title:
an exploration of gas turbine performance modeling /
Author:
Kurzke, Joachim.
other author:
Halliwell, Ian.
Published:
Cham :Springer International Publishing : : 2018.,
Description:
xxiv, 755 p. :ill., digital ; : 24 cm.;
Contained By:
Springer eBooks
Subject:
Gas-turbines - Performance. -
Online resource:
http://dx.doi.org/10.1007/978-3-319-75979-1
ISBN:
9783319759791
Propulsion and power = an exploration of gas turbine performance modeling /
Kurzke, Joachim.
Propulsion and power
an exploration of gas turbine performance modeling /[electronic resource] :by Joachim Kurzke, Ian Halliwell. - Cham :Springer International Publishing :2018. - xxiv, 755 p. :ill., digital ;24 cm.
Simulation tasks: New engine design -- Engine families -- Modeling an engine -- Engine model examples -- Model-based performance analysis -- Inlet flow distortion -- Transient performance simulation -- Preliminary design:- Compressor -- Turbines -- Mechanical design -- Off-design: Component performance -- Understanding off-design behavior -- Basics: Gas properties and standard atmosphere -- Spreadsheet calculations -- Non-dimensional performance -- Reynolds number corrections -- Efficiency of a cooled turinbe -- Secondary air system -- Mathematics -- Optimization -- Monte Carlo simulations -- Appendix.
The book is written for engineers and students who wish to address the preliminary design of gas turbine engines, as well as the associated performance calculations, in a practical manner. A basic knowledge of thermodynamics and turbomachinery is a prerequisite for understanding the concepts and ideas described. The book is also intended for teachers as a source of information for lecture materials and exercises for their students. It is extensively illustrated with examples and data from real engine cycles, all of which can be reproduced with GasTurb (TM) It discusses the practical application of thermodynamic, aerodynamic and mechanical principles. The authors describe the theoretical background of the simulation elements and the relevant correlations through which they are applied, however they refrain from detailed scientific derivations.
ISBN: 9783319759791
Standard No.: 10.1007/978-3-319-75979-1doiSubjects--Topical Terms:
1204868
Gas-turbines
--Performance.
LC Class. No.: TJ778
Dewey Class. No.: 621.433
Propulsion and power = an exploration of gas turbine performance modeling /
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Simulation tasks: New engine design -- Engine families -- Modeling an engine -- Engine model examples -- Model-based performance analysis -- Inlet flow distortion -- Transient performance simulation -- Preliminary design:- Compressor -- Turbines -- Mechanical design -- Off-design: Component performance -- Understanding off-design behavior -- Basics: Gas properties and standard atmosphere -- Spreadsheet calculations -- Non-dimensional performance -- Reynolds number corrections -- Efficiency of a cooled turinbe -- Secondary air system -- Mathematics -- Optimization -- Monte Carlo simulations -- Appendix.
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The book is written for engineers and students who wish to address the preliminary design of gas turbine engines, as well as the associated performance calculations, in a practical manner. A basic knowledge of thermodynamics and turbomachinery is a prerequisite for understanding the concepts and ideas described. The book is also intended for teachers as a source of information for lecture materials and exercises for their students. It is extensively illustrated with examples and data from real engine cycles, all of which can be reproduced with GasTurb (TM) It discusses the practical application of thermodynamic, aerodynamic and mechanical principles. The authors describe the theoretical background of the simulation elements and the relevant correlations through which they are applied, however they refrain from detailed scientific derivations.
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Engineering (Springer-11647)
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