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Best Practices for Energy-Efficient Heating, Ventilation, and Air Conditioning banner
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Best Practices for Energy-Efficient Heating, Ventilation, and Air Conditioning

Best Practices for Energy-Efficient Heating, Ventilation, and Air Conditioning banner
Preview this course
Self-paced Beginner

Best Practices for Energy-Efficient Heating, Ventilation, and Air Conditioning

4(69)
3 enrolled
1279 views
FREE
82 min
Anytime
English
1279 views
Yogesh Kulkarni
Yogesh Kulkarni
  • Lifetime access
  • Certificate of completion
  • Foundational Learning
  • Access to Study Materials
Volume pricing for groups of 5+

Why enroll

Is your HVAC system an untapped goldmine of efficiency? Join our exclusive online workshop, "Energy Efficiency in HVAC: Strategies and Best Practices," where we’ll reveal how optimized HVAC operations can reduce costs and improve sustainability across commercial spaces, hotels, hospitals, and more!

Is this course for you?

You should take this if

  • You work in HVAC
  • You're a Chemical & Process / Electrical Engineering professional
  • You prefer self-paced learning you can revisit

You should skip if

  • You need a different specialisation outside Chemical & Process
  • You need live interaction with an instructor

Course details

This comprehensive course covers the latest strategies and best practices for achieving energy efficiency in Heating, Ventilation, and Air Conditioning (HVAC) systems.
🚀 What’s in it for you?
By attending, you’ll gain actionable insights into:-
-🌍 Reducing HVAC energy consumption and environmental impact, particularly in high-energy buildings like hotels and hospitals.
- 🏢 Addressing the hidden energy drain of aging HVAC systems and recognizing performance degradation factors.
- 🔧 Leveraging scheduled maintenance and retro-commissioning to enhance system performance and longevity.
- 💡 Implementing cutting-edge strategies that boost energy efficiency without compromising on comfort.
- 📈 Final recommendations to apply immediately, cutting costs while improving operational quality.

Course suitable for

Key topics covered

1. Introduction to Energy Efficiency in HVAC Systems
2. HVAC Energy Consumption in Commercial and Hotel Buildings
3. Energy Consumption in Old HVAC Systems
4. The Importance of Scheduled Maintenance and Retro-Commissioning, Old HVAC systems
5. Strategies to Improve Energy Efficiency in HVAC Systems
6. Research and Performance Degradation in HVAC Systems
7. Conclusion & Final Recommendations,

Course content

The course is readily available, allowing learners to start and complete it at their own pace.

8 lectures1 hr 22 min

Opportunities that await you!

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FREE

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Questions and Answers

A: Oversizing here drives chronic valve hunting and higher boiler cycling. The sensible load comes straight from m·cp·ΔT: 1,200/3,600 × 1.2 × 1.02 × 8, which lands near 3.3 kW. That keeps the reheat coil and control valve sized in a stable range instead of masking poor airside control with excess capacity.

A: Acting on the wrong assumption here ends with split coils and glycol spills. Without the low-limit safeguard, cold air keeps flowing across a wet coil at low load, dropping film temperature below freezing. Recognizing that risk is why freeze stats and bypass dampers exist, not to manage pressure or compressor behavior.

A: Underestimating this pushes you toward undersized VFDs and nuisance trips at SAT. Power follows Q·ΔP/η: 20,000/3,600 × 800 / 0.6 gives a result in the high single‑digit kW range. That sanity check keeps electrical and cooling loads aligned before detailed selection.

A: Reporting the wrong COP mislabels an efficient machine as a poor performer and derails M&V. COP is a simple ratio of cooling effect to electrical input in consistent units, so 500 divided by 100. That preserves comparability with ASHRAE benchmarks without unit gymnastics.