Unidad de Bibliotecas

Imagen de Google Jackets

Flow-induced vibration handbook for nuclear and process equipment / [edited by] Michel J. Pettigrew, Colette E. Taylor, Nigel J. Fisher.

Colaborador(es): Detalles de publicación: Hoboken, NJ : John Wiley & Sons, Inc., 2022.Edición: First editionDescripción: xix, 471 pages : illustrations, chartsISBN:
  • 9781119810964
  • 9781119810995
Materia(s): Clasificación:
  • 532.5 23/eng/20211108
Contenidos parciales:
Flow considerations / John M. Pietralik, Liberat N. Carlucci, Colette E. Taylor, and Michel J. Pettigrew -- Hydrodynamic mass, natural frequencies and mode shapes / Daniel J. Gorman, Colette E. Taylor, and Michel J. Pettigrew -- Damping of cylindrical structures in single-phase fluids / Michel J. Pettigrew.
Resumen: "Flow-induced vibration is the term for the phenomena of vibration and noise that is caused by fluid flow. Excessive flow-induced vibrations can cause fatigue or failure in process and plant equipment, which can in turn lead to operational disruptions, lost production, and costly repairs. Mechanical engineers can help avoid these issues by performing a flow-induced vibration analysis during the design phase of a project. Industries that employ plants with high capital costs, such as the nuclear, power, petrochemical, and aerospace industries, have a particular interest in understanding and mitigating flow-induced vibrations"-- Provided by publisher.
Copias
Tipo de ítem Biblioteca Colección Clasificación Copia Estado Código de barras
Libro Biblioteca Rancagua Colección General 532.5 P5111f 2022 1 Disponible 35672000808

Includes index.

Flow considerations / John M. Pietralik, Liberat N. Carlucci, Colette E. Taylor, and Michel J. Pettigrew -- Hydrodynamic mass, natural frequencies and mode shapes / Daniel J. Gorman, Colette E. Taylor, and Michel J. Pettigrew -- Damping of cylindrical structures in single-phase fluids / Michel J. Pettigrew.

"Flow-induced vibration is the term for the phenomena of vibration and noise that is caused by fluid flow. Excessive flow-induced vibrations can cause fatigue or failure in process and plant equipment, which can in turn lead to operational disruptions, lost production, and costly repairs. Mechanical engineers can help avoid these issues by performing a flow-induced vibration analysis during the design phase of a project. Industries that employ plants with high capital costs, such as the nuclear, power, petrochemical, and aerospace industries, have a particular interest in understanding and mitigating flow-induced vibrations"-- Provided by publisher.

Compartir