
INDUSTRIAL THERMAL ENGINEERING CALCULATIONS PRACTICAL ENERGY OPTIMISATION FOR ENGINEERS
10 - 11 AUGUST 2026
16 CDP Approved by ST
COURSE INTRODUCTION
This calculation-focused programme helps engineers evaluate industrial thermal systems and identify practical energy-optimisation opportunities. Participants work with heat transfer, boilers, steam distribution, heat exchangers, heat loss, pinch analysis, heat pumps and cogeneration so they can quantify performance and support better engineering decisions. Practical examples and guided discussion help participants connect the subject to decisions and challenges in their own workplace.
COURSE OBJECTIVES
By the end of this programme, participants should be able to:
- Apply heat-transfer principles and engineering calculations to industrial thermal systems.
- Evaluate boiler combustion, steam generation and heat-recovery performance.
- Calculate steam-distribution, condensate and piping losses.
- Assess heat-exchanger duty, selection and energy-recovery opportunities.
- Quantify equipment heat loss and evaluate practical mitigation measures.
- Use pinch analysis, cogeneration and process calculations to prioritise optimisation projects.
WHO SHOULD ATTEND
This programme is suitable for energy Managers, Site Utility Engineers, Utility Project Engineers.
COURSE CONTENT
- Heat-transfer modes and engineering calculation methods
- Boiler combustion, steam generation and heat-recovery calculations
- Steam distribution, condensate systems and piping pressure loss
- Industrial heat-exchanger duty, selection and energy performance
- Equipment heat loss and practical mitigation measures
- Pinch analysis and heat-integration fundamentals
- Cogeneration and industrial-process thermal calculations
- Air-conditioning thermal calculations and optimisation opportunities






