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Blade Design and Analysis for Steam Turbines ReviewThe book "Blade Design and Analysis for Steam Turbines" provides a unique compendium of all concepts, basic analytical formulas and techniques needed to cope with design of industrial steam turbines flowpath (blades) components.While there is a wider literature on large steam turbines applied in power generation, very few books are covering or focusing on industrial steam turbines for mechanical drive applications. Mechanical drive applications are especially demanding in requiring to steam turbines capability to adapt to variable speed and variable loads, challenging the design of flowpath components. Present book from Dr. Singh is one of the few books covering these challenges and presenting a very good summary of 30 years expertise achieved in mechanical drive steam turbines design.
The book "Blade Design and Analysis for Steam Turbines" is very well covering the challenges of design for dynamic behavior and vibration of industrial steam turbines blades. It moves from guidance to vibration behavior of bladed disk system (chapter 7), to damping concepts and damper system design (chapter 6), to methods (simplified and detailed) to estimate dynamic stresses (Chapter 7), to guidance to perform High Cycle Fatigue (HCF) assessment of blades including the effects of residual stresses and giving useful guidance on fatigue resistance correction factors (Chapter 8), to a review of manufacturing methods and design solutions (Chapter 3).
The book represents a basic reading for those who are approaching the design of blades for variable speed mechanical drive industrial steam turbines.Blade Design and Analysis for Steam Turbines Overview
THE LATEST STEAM TURBINE BLADE DESIGN AND ANALYTICAL TECHNIQUES
Blade 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
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