Page 38 - 2016 NAmer Autumn TD
P. 38
eLEARNING
Two-Phase Flow and Heat Transfer Hydraulic Design of Liquid or Water Piping
Systems
Online Instructor-Supported Course EL510
This course studies two-phase flow and heat transfer at a practical level, Online Self-Study Course EL539
seeking to balance theory and analysis with a phenomenological This course covers the basic fundamentals and flow equations used
understanding of the fundamental dynamics. Emphasis is placed on for sizing flow lines or solving the line pressure drop of steady-state
sorting the myriad correlations offered for specific situations, and simple hydraulic systems flowing non-flashing incompressible Newtonian
estimating the effect of a two-phase flow in common processes with liquids or water. The industry’s generally accepted fundamental Darcy’s
simple mathematics. equation and the empirical Hazen-Williams formula for water flows are
introduced as the models of calculating the frictional pressure drop. Also
You Will Learn To presented are the underlying principles and commonly used one-dimen-
• Explain the fundamentals of boiling sional Newtonian isothermal incompressible equations for practicing
• Explain the process of boiling on external and internal surfaces engineers to perform steady-state hydraulic analysis and calculations for
• Describe two-phase flow patterns and pressure loss the liquid and water piping systems.
FLUIDS AND HEAT TRANSFER eLearning
• Identify critical heat flux and burnout
• Describe flow instability in two-phase systems and cavitation
You Will Learn To
22.5 Hours, 2.3 CEUs, 23 PDHs • Explain the basic principles that govern the fluid flow in pipes
Member $595 / List Price $695 • Perform calculations for various aspects of piping systems
• Describe pressure drop and flow resistance
Heating, Ventilation and Air-Conditioning (HVAC) • Describe the process for pipe selection
Online Self-Study Course EL538 Who Should Attend
This course is a review of the basic principles of HVAC, including New practicing engineers or experienced engineers entering a new area
psychometrics, sensible heating and cooling, dehumidification and of practice or seeking a refresher course in fluid flow or pipe hydraulics
humidification, the adiabatic mixing process, air washers, cooling 10 PDHs
towers, ventilation and infiltration load calculations, control components, Member $295 / List Price $395
refrigeration cycles, heat pumps and refrigeration equipment. The
course will test your knowledge with question sets and a final exam.
Introduction to the Selection of Pumps NEW!
You Will Learn To
• Describe the properties of moist air Online Assessment Based Course ZABC42
• Explain sensible heating and cooling This course provides an introduction to pumps – the way they work,
• Describe the process of humidification and dehumidification different types, and some basic applications. It discusses the flow of flu-
• Explain the adiabatic mixing process ids through pipes, as well as the variables that affect the flow, and it takes
• Calculate loads for ventilation, infiltration, heating and cooling a close look at centrifugal and positive displacement pumps.
• Explain the different types of refrigeration cycles 2 PDHs Price $195
• Describe the heat pump and a typical refrigeration system
15 PDHs Introduction to the Selection of Valves NEW!
Member $295 / List Price $395
Online Assessment Based Course ZABC43
Introduction to Computational Fluid Dynamics This course introduces the different types of valves – the way they work
and some of the basic applications. It provides an overview of
Online Instructor-Supported Course EL513 the considerations involved when choosing the appropriate valves
This course has six modules and provides detailed explanation of how or a system.
to set up, run and interpret the results of CFD models for eight different
case studies and covers all the necessary theoretical background for 2 PDHs Price $195
industrial applications of computational fluid dynamics. It is estimated
that in total, the course will require approximately 24 hours of work on
the part of the student, over the duration of the six-week course.
You Will Learn To
• Set up the most appropriate CFD model for the problem in hand
• Set up the most appropriate turbulence model for applications
• Explain steady state and transient fluid flow simulations
• Solve both isothermal and non-isothermal thermo-fluid applications
• Solve incompressible and compressible fluid flow applications
• Solve fluid flow through porous media and through rotating machinery
• Extract the required results and plots at the solution stage
22.5 Hours, 2.3 CEUs, 23 PDHs
Member $595 / List price $695
36