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Item #: ODDYN-2017
Member Price: $111.75
Non-member Price: $149.00
  (min 1, max 1)

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This course reviews the ANSI/HI 9.6.8 guideline, Rotodynamic Pumps: Guideline for Dynamics of Pumping Machinery. The course explains how the need for dynamic analysis for pumping machinery is determined and which types should be performed on various types of pumps. Attendees will also learn how to specify the right level of dynamic analysis to ensure the suitability of pumping machinery design. The three levels of analysis are explained in detail, and work examples are used to demonstrate the principles and methods used for each level of analysis.

Learning Objectives:

  • Understand how the need for dynamic analysis of pumping machinery is determined in order to mitigate risk
  • Learn which types of dynamic analyses are to be performed on which type of pump installation
  • Be able to use the Guideline for Dynamics of Pumping Machinery to specify the right level of dynamic analysis and ensure the suitability of pumping machinery design
  • Be familiar with key concepts and terminology as applied to Level 2 rotodynamic pump dynamic analysis
  • Be able to apply Level 2 “moderate capability” analytical tools and techniques to identify potential problems in higher-risk situations
  • Understand and be able to apply the major methods and tools relevant to Level 3 analyses, including lateral and torsional rotodynamic analyses and structural analyses
  • Be familiar with the distinguishing factors to be considered in shaft lateral rotodynamic and torsional analysis, versus dynamic analysis of stationary structures and systems
Please note, you have 4 days from the first day of access to complete the viewing of this on-demand webinar series4
Time: Runs Approximately 293 Minutes
Presenter(s): Jack Claxton, Vice President of Engineering – Patterson Pump Company; Mick Cropper, Director of Technology – Sulzer Pumps; Bill Marscher, P.E., President and Technical Director – Mechanical Solutions, Inc.; Eric J. Olson, Vice President – Mechanical Solutions, Inc.; Paul Boyadjis, Director of Structural Analysis – Mechanical Solutions, Inc.
HI Contact: training@pumps.org


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