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Vibration Problems in Machines explains how to infer information
about the internal operations of rotating machines from external
measurements through methods used to resolve practical plant
problems. Second edition includes summary of instrumentation,
methods for establishing machine rundown data, relationship between
the rundown curves and the ideal frequency response function. The
section on balancing has been expanded and examples are given on
the strategies for balancing a rotor with a bend, with new section
on instabilities. It includes case studies with real plant data,
MATLAB (R) scripts and functions for the modelling and analysis of
rotating machines.
Vibration Problems in Machines explains how to infer information
about the internal operations of rotating machines from external
measurements through methods used to resolve practical plant
problems. Second edition includes summary of instrumentation,
methods for establishing machine rundown data, relationship between
the rundown curves and the ideal frequency response function. The
section on balancing has been expanded and examples are given on
the strategies for balancing a rotor with a bend, with new section
on instabilities. It includes case studies with real plant data,
MATLAB (R) scripts and functions for the modelling and analysis of
rotating machines.
Vibration Problems in Machines: Diagnosis and Resolution explains
how to infer information about the internal operations of rotating
machines from external measurements. In doing so, the book examines
the vibration signals arising under various fault conditions, such
as rotor imbalance, misalignment, cracked rotors, gear wear,
whirling instabilities, and other problems. Covering a wide range
of techniques required in the monitoring, analysis, and diagnosis
of operational rotating machinery, this text: Discusses topics
ranging from the presentation of complex data to methods for
reconciling model and plant data Describes the physical basis of
fault signals as well as the necessary signal and data processing
techniques Delivers fresh insight into misalignment phenomena and
the future of smart machinery Vibration Problems in Machines:
Diagnosis and Resolution includes case studies with real plant
data, MATLAB (R) scripts and functions for the modelling and
analysis of rotating machines, end-of-chapter questions, and a
solutions manual with qualifying course adoption. The book provides
an invaluable resource for those seeking to optimize the use of
complex and often apparently contradictory data.
This book equips the reader to understand every important aspect of
the dynamics of rotating machines. Will the vibration be large?
What influences machine stability? How can the vibration be
reduced? Which sorts of rotor vibration are the worst? The book
develops this understanding initially using extremely simple models
for each phenomenon, in which (at most) four equations capture the
behavior. More detailed models are then developed based on finite
element analysis, to enable the accurate simulation of the relevant
phenomena for real machines. Analysis software (in MATLAB) is
associated with this book, and novices to rotordynamics can expect
to make good predictions of critical speeds and rotating mode
shapes within days. The book is structured more as a learning guide
than as a reference tome and provides readers with more than 100
worked examples and more than 100 problems and solutions.
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