TRAINING.

Design of Foundations for Dynamically Loaded Equipment

Fee: $1,645.00 (Other options available) / Online /
Apr 7 - 9, 2027 /
Course Code: 17-0426-ONL27

REGISTER NOW
The confirmation of this course depends on early registration; Register early to avoid the postponement or cancellation of a course.
  • Overview
  • Syllabus
  • Instructor

Overview

Please note, This instructor-led course has specific dates and times:
This course is held online over 3 days on the following schedule (All times in Eastern Time Zone):
11 am to 5:10 pm Eastern Time

Daily Course Breakdown:
11:00 – 2:15, including one 15-minute break
40-minute lunch
2:55 – 5:10, including one 15-minute break

You have the option to attend only Part 1 Intro, or the entire course.

By the end of this course, you will be able to:

  • Calculate dynamic loads generated by common types of machinery
  • Select appropriate foundation systems based on performance and soil conditions
  • Analyze the dynamic response of shallow and pile-supported foundations
  • Design tabletop structures to support equipment under dynamic loading
  • Diagnose vibration issues and implement effective mitigation strategies

Description

When designing equipment foundations, you are responsible for ensuring stable performance under dynamic loads while accounting for soil behaviour, structural response, and vibration risks. Inadequate analysis or design decisions can lead to excessive movement, equipment damage, or long-term operational failures, particularly in challenging conditions such as frozen or expansive soils.

This course equips you with the practical tools and frameworks needed to evaluate and design foundations for dynamically loaded equipment. You will work through how machinery induces loads, how those loads interact with soils and structural systems, and how different foundation types perform under varying conditions. Emphasis is placed on analyzing dynamic response, selecting appropriate design approaches, and addressing vibration-related issues that affect reliability and safety.

Through applied examples and real-world case studies, you will learn how to model and verify foundation behaviour using industry software such as DYNA 6.1, alongside manual and finite-element approaches. By the end of the course, you will be able to confidently assess design options, validate results, and make informed engineering decisions that improve the performance and longevity of equipment foundation systems.

Who Should Attend

This course is designed for:

  • Structural and consulting engineers involved in design of foundation for vibratory or moving equipment
  • Field engineers working with industrial vibratory equipment
  • Intermediate to senior professionals seeking to enhance their expertise in the subject with advanced knowledge and practical design skills.

Special Features

This course is presented in two syllabi: Introductory and Advanced. The Introductory course (I) covers the basic concepts of the design of equipment foundations, the use of DYNA 6.1 software for their dynamic analysis, calculation of dynamic loads for the most common types of machinery, and vibration damage risk assessment and prevention.

The Advanced course (A) targets skilled designers who want to learn how to solve complex design problems with a full understanding of structural behaviour. Participants will work on several examples under the instructor's guidance.

You have the option to attend only Part 1 Intro, or the entire course.

More Information

Time: 11:00 AM - 5:10 PM Eastern Time


Please note: You can check other time zones here.

Syllabus

Day I

Welcome, Introduction, Course Preview, and Learning Objectives

Introduction to Design of Equipment Foundations (Introduction, Advanced)
Design objectives, design procedure, degrees of freedom, pure and coupled modes of vibration, free and forced vibrations, and resonance. Types of foundations and their uses: rigid block foundations, mat foundations, deep foundations, and the significance of damping. Anchorages for vibrating machinery.

Dynamic Soil Properties (Introduction, Advanced)
Small strain elastic moduli of soil, shear wave, compression wave, methods of soil exploration for dynamic problems, method of dynamic impedance

Methods of Analysis (based on example) - oil pump on pile foundation (Introduction, Advanced)
Demonstration of computer analysis using DYNA 6 software, its capabilities and limitations

Design of Shallow Foundations (Introduction, Advanced)
Theory of isotropic elastic half-space, the response of circular footings, shape factors for the response of non-circular footings, stiffness and damping functions, the effect of footing embedment, proximity of bedrock layers

Design Example (Introduction, Advanced)
Free vibration analysis of a rigid block foundation

Design of Shallow Foundations - additional chapters (Advanced)
Theory of layered elastic half-space, complex stiffness and damping functions, frequency dependence

Dynamically Loaded Foundations on Frozen and Expansive Soils (Advanced)
Frost effects, dynamic properties of frozen soil, design considerations, static and dynamic design criteria. Expansive soils, principles of foundation construction on expansive soils, types of foundations for dynamic machinery

Adjournment

Day II

Design of Pile Foundations - Single Piles (Introduction, Advanced)
Examples of piles applications, the effect of vibration on static pile design, stiffness and damping of single piles,

Design Example (Introduction, Advanced)
Common pump foundation on piles (illustrates the concept of “good” vs “bad” speed range for rotary machinery)

Dynamic Response of Vibratory Machinery Foundations (Introduction, Advanced)
Dynamic forces from reciprocating machinery, dynamic forces from rotary machinery, high-tuned and low-tuned foundations, normal and abnormal regimes

Dynamic Response of Impact Machinery Foundations (Introduction, Advanced)
Types of impact machinery, foundations for impact machinery, design criteria, derivation of impact forces, mathematical models and methods of solution, propagation of vibrations in the soil

Vibration Damage and Taking Suitable Remedial Measures (Introduction, Advanced)
Design criteria, resonance separation, admissible dynamic amplitudes and velocities, stationary and transitional resonance, problem assessment and evaluation, remedial principles and techniques

Design of Pile Foundations - Single Piles - additional chapters (Advanced)
Pile dynamic response - analytical methods, pile dynamic response using common FE software

Design of Pile Foundations - Pile Groups (Advanced)
Pile-soil-pile interaction, understanding of dynamic group effects, group factors calculation

Design Example - pile foundations - special chapters (Advanced)
Pump foundation on piles - case of layered and irregular soils

Dynamic Response of Vibratory Machinery Foundations - specialty chapters (Advanced)
Basics of rotor dynamics, critical and tripping speeds, dynamic loads from multiple pieces of equipment

Adjournment

Day III

Tabletop Structures (Advanced)
Definitions, modes of oscillation, foundation-structure interaction, stiffness and damping, static and dynamic design criteria, method of symbolic dynamic models

Methods of Analysis (based on example) - tabletop-mounted, turbine-driven centrifugal compressor (Advanced)
Hand analysis using MS Excel: generalized dynamic models, equations for free vibrations, equations for forced vibrations, interpretation of results

Methods of Analysis (based on example) - tabletop-mounted, turbine-driven centrifugal compressor (Advanced)
Demonstration of computer analysis using common FE software

Methods of Analysis (based on example) - skid-mounted reciprocating compressor (Advanced)
Hand analysis partially automated using common FE software: derivation of stiffness and inertial properties, pile group effects, equations for free vibrations, assessment of damping, equations for forced vibrations, interpretation of results, mitigation of excessive vibration

Open Forum

Questions and Answers and Feedback to Participants on Achievement of Learning Objectives

Instructor

Konstantin Ashkinadze, Ph. D., P.Eng.

Konstantin is the founder and principal of Pro Dynamic Solutions Inc, a research and industrial consulting company from Edmonton, AB.

Previous employment included senior and principal structural engineer positions with Jacobs Canada Ltd., ECO-Technica, Bantrel, Colt Engineering (presently Worley Parsons), Stantec Consulting and CoSyn Technology. He participated in major projects of expansion and construction of Alberta's oil and gas and petrochemical facilities. Konstantin graduated with honours from Moscow State Construction University, Faculty of Civil and Industrial Construction.

He studied at the graduate school of Central Research and Design Institute for Dwellings, Moscow. His Ph.D. thesis was devoted to the strength and seismic resistance of intercrossing (T-sectioned) load-bearing reinforced concrete structural walls in residential high-rise buildings. He conducts active, self-directed structural research driven by practical problems in industrial facilities design.

Konstantin is the author of more than 35 technical publications and has participated in numerous international conferences.




The Engineering Institute of Canada
REGISTER NOW
NOT INTERESTED IN THIS COURSE?

We always want to improve the quality of our courses. Please select any reasons why you feel this course is inadequate (check all that apply).

Please check this box:
Course Rating
4.3 out of 5

Overall rating of this course by its previous attendees!

There are 2 pricing options for this course and they are listed below.
Attend Full Course

$1645 + taxes

  • 1.5 Continuing Education Units (CEUs)
  • 15 Continuing Professional Development Hours (PDHs/CPDs)
  • ECAA Annual Professional Development Points
Register




Attend Part 1-Intro Only

$795 + taxes

  • 0.75 Continuing Education Units (CEUs)
  • 7.5 Continuing Professional Development Hours (PDHs/CPDs)
  • ECAA Annual Professional Development Points
Register




Group Training
This course can be customized and delivered to your group of staff at your facility, saving time and money.

Sign-up for our newsletter
Government Funding
The cost of this course could be covered by the Workforce Development Agreements (WDAs).

Your company may be eligible for funding! LEARN MORE
Top