The Resource Blade design and analysis for steam turbines, Murari P. Singh, George M. Lucas
Blade design and analysis for steam turbines, Murari P. Singh, George M. Lucas
Resource Information
The item Blade design and analysis for steam turbines, Murari P. Singh, George M. Lucas represents a specific, individual, material embodiment of a distinct intellectual or artistic creation found in Brigham Young University.This item is available to borrow from 1 library branch.
Resource Information
The item Blade design and analysis for steam turbines, Murari P. Singh, George M. Lucas represents a specific, individual, material embodiment of a distinct intellectual or artistic creation found in Brigham Young University.
This item is available to borrow from 1 library branch.
- Summary
-
- "THE LATEST STEAM TURBINE BLADE DESIGN AND ANALYTICAL TECHNIQUESBlade Design and Analysis for Steam Turbines provides a concise reference for practicing engineers involved in the design, specification, and evaluation of industrial steam turbines, particularly critical process compressor drivers. A unified view of blade design concepts and techniques is presented. The book covers advances in modal analysis, fatigue and creep analysis, and aerodynamic theories, along with an overview of commonly used materials and manufacturing processes. This authoritative guide will aid in the design of powerful, efficient, and reliable turbines.COVERAGE INCLUDES: Performance fundamentals and blade loading determination Turbine blade construction, materials, and manufacture System of stress and damage mechanisms Fundamentals of vibration Damping concepts applicable to turbine blades Bladed disk systems Reliability evaluation for blade design Blade life assessment aspects Estimation of risk"--Provided by publisher
- "Blade Design and Analysis for Steam Turbines details blade functionality and how it fits in relation to the complete steam turbine system as well as construction materials and methods, manufacturing processes, and design methods to estimate reliability of blades under fatigue and vibration. Blades are at the heart of process steam turbines used to generate electricity from wind, steam, gas, and solar hydrogen. The information in this book helps turbine designers, mechanical engineers, process equipment design/maintenance engineers, and buyers of turbines estimate the reliability of blades"--Provided by publisher
- Language
- eng
- Extent
- xv, 364 p.
- Contents
-
- Machine generated contents note: Chapter 1. Introduction
- Chapter 2. Steam Turbine Design Process, Performance Estimation, and Determination of Blade Loads
- Chapter 3. Turbine Blade Construction, Materials, and Manufacture
- Chapter 4. System of Stress and Damage Mechanisms
- Chapter 5. Review of Fundamentals of Vibration
- Chapter 6. Damping Concepts
- Chapter 7. Vibration Behavior of Bladed Disk System
- Chapter 8. Reliability Evaluation for Blade Design
- Chapter 9. Estimation of Risk
- Appendix: Fourier Series
- Bibliography
- Index
- Isbn
- 9780071635745
- Label
- Blade design and analysis for steam turbines
- Title
- Blade design and analysis for steam turbines
- Statement of responsibility
- Murari P. Singh, George M. Lucas
- Language
- eng
- Summary
-
- "THE LATEST STEAM TURBINE BLADE DESIGN AND ANALYTICAL TECHNIQUESBlade Design and Analysis for Steam Turbines provides a concise reference for practicing engineers involved in the design, specification, and evaluation of industrial steam turbines, particularly critical process compressor drivers. A unified view of blade design concepts and techniques is presented. The book covers advances in modal analysis, fatigue and creep analysis, and aerodynamic theories, along with an overview of commonly used materials and manufacturing processes. This authoritative guide will aid in the design of powerful, efficient, and reliable turbines.COVERAGE INCLUDES: Performance fundamentals and blade loading determination Turbine blade construction, materials, and manufacture System of stress and damage mechanisms Fundamentals of vibration Damping concepts applicable to turbine blades Bladed disk systems Reliability evaluation for blade design Blade life assessment aspects Estimation of risk"--Provided by publisher
- "Blade Design and Analysis for Steam Turbines details blade functionality and how it fits in relation to the complete steam turbine system as well as construction materials and methods, manufacturing processes, and design methods to estimate reliability of blades under fatigue and vibration. Blades are at the heart of process steam turbines used to generate electricity from wind, steam, gas, and solar hydrogen. The information in this book helps turbine designers, mechanical engineers, process equipment design/maintenance engineers, and buyers of turbines estimate the reliability of blades"--Provided by publisher
- Cataloging source
- DLC
- Dewey number
- 621.1/65
- Illustrations
- illustrations
- Index
- index present
- LC call number
- TJ737
- LC item number
- .S56 2011
- Literary form
- non fiction
- Nature of contents
- bibliography
- Label
- Blade design and analysis for steam turbines, Murari P. Singh, George M. Lucas
- Bibliography note
- Includes bibliographical references and index
- Carrier category
- volume
- Carrier MARC source
- rdacarrier
- Content category
- text
- Content type MARC source
- rdacontent
- Contents
- Machine generated contents note: Chapter 1. Introduction -- Chapter 2. Steam Turbine Design Process, Performance Estimation, and Determination of Blade Loads -- Chapter 3. Turbine Blade Construction, Materials, and Manufacture -- Chapter 4. System of Stress and Damage Mechanisms -- Chapter 5. Review of Fundamentals of Vibration -- Chapter 6. Damping Concepts -- Chapter 7. Vibration Behavior of Bladed Disk System -- Chapter 8. Reliability Evaluation for Blade Design -- Chapter 9. Estimation of Risk -- Appendix: Fourier Series -- Bibliography -- Index
- Dimensions
- 24 cm.
- Extent
- xv, 364 p.
- Isbn
- 9780071635745
- Isbn Type
- (hardback)
- Lccn
- 2011008219
- Media category
- unmediated
- Media MARC source
- rdamedia
- Other physical details
- ill.
- System control number
-
- (OCoLC)ocn659763988
- UtOrBLW
- (OCoLC)ocn725438707
- Label
- Blade design and analysis for steam turbines, Murari P. Singh, George M. Lucas
- Bibliography note
- Includes bibliographical references and index
- Carrier category
- volume
- Carrier MARC source
- rdacarrier
- Content category
- text
- Content type MARC source
- rdacontent
- Contents
- Machine generated contents note: Chapter 1. Introduction -- Chapter 2. Steam Turbine Design Process, Performance Estimation, and Determination of Blade Loads -- Chapter 3. Turbine Blade Construction, Materials, and Manufacture -- Chapter 4. System of Stress and Damage Mechanisms -- Chapter 5. Review of Fundamentals of Vibration -- Chapter 6. Damping Concepts -- Chapter 7. Vibration Behavior of Bladed Disk System -- Chapter 8. Reliability Evaluation for Blade Design -- Chapter 9. Estimation of Risk -- Appendix: Fourier Series -- Bibliography -- Index
- Dimensions
- 24 cm.
- Extent
- xv, 364 p.
- Isbn
- 9780071635745
- Isbn Type
- (hardback)
- Lccn
- 2011008219
- Media category
- unmediated
- Media MARC source
- rdamedia
- Other physical details
- ill.
- System control number
-
- (OCoLC)ocn659763988
- UtOrBLW
- (OCoLC)ocn725438707
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<div class="citation" vocab="http://schema.org/"><i class="fa fa-external-link-square fa-fw"></i> Data from <span resource="http://link.lib.byu.edu/portal/Blade-design-and-analysis-for-steam-turbines/ww3o6tSC8DE/" typeof="Book http://bibfra.me/vocab/lite/Item"><span property="name http://bibfra.me/vocab/lite/label"><a href="http://link.lib.byu.edu/portal/Blade-design-and-analysis-for-steam-turbines/ww3o6tSC8DE/">Blade design and analysis for steam turbines, Murari P. Singh, George M. Lucas</a></span> - <span property="potentialAction" typeOf="OrganizeAction"><span property="agent" typeof="LibrarySystem http://library.link/vocab/LibrarySystem" resource="http://link.lib.byu.edu/"><span property="name http://bibfra.me/vocab/lite/label"><a property="url" href="http://link.lib.byu.edu/">Brigham Young University</a></span></span></span></span></div>