Training Course in Smart and Efficient Building Heating and Cooling Systems (Online / Remote)
1Summary
Heating and cooling account for a major share of a building's total energy bill, and in a world pushing hard toward decarbonisation, that single fact is reshaping how architects, facility managers and engineers approach temperature control. Passive design, renewable-powered systems and smart controls are no longer optional extras — they are becoming the baseline expectation for residential, commercial and industrial projects alike.
The Training Course in Smart and Efficient Building Heating and Cooling Systems, delivered by the Arab British Fellowship Training Academy, walks participants through this shift in practice. Rather than treating heating and cooling as separate disciplines, the course shows how passive strategies, renewable technologies (geothermal, solar thermal, heat pumps) and digital controls work together as one integrated system.
By the end of the programme, participants will be able to compare technologies on cost and performance grounds, apply passive design and insulation principles to cut demand before adding equipment, and align their projects with the regulations and certification schemes now shaping the sector.
2Objectives and target group
Target Audience
- Architects, engineers and construction project managers responsible for designing or retrofitting heating and cooling systems in residential, commercial and industrial buildings.
- Energy managers, consultants and facility managers tasked with lowering energy consumption and operating costs while keeping buildings comfortable.
- Sustainability and environmental consultants who advise on cutting a building's carbon emissions and resource use.
- Students, researchers and anyone building a career in green technology who wants a solid grounding in sustainable temperature control.
Course Objectives
- Explain the principles and technologies behind sustainable heating and cooling, and how they relate to thermal comfort and energy performance.
- Compare passive design strategies with active renewable technologies and choose the right mix for a given building type, climate and budget.
- Evaluate geothermal, solar thermal and heat-pump options, along with high-efficiency and evaporative cooling systems.
- Apply insulation, envelope and thermal-mass strategies to reduce heating and cooling loads before specifying equipment.
- Use smart controls and building management systems to keep performance optimised once a system is installed.
- Work within the regulations, standards and certification frameworks that govern sustainable heating and cooling projects today.
3Course Content
Module 1: Why Heating and Cooling Efficiency Matters Now
- The share of building energy consumption taken up by heating and cooling, and its environmental and economic cost.
- Why traditional systems fall short of today's sustainability and comfort expectations.
- Core principles of sustainable temperature control: balancing comfort, efficiency and environmental impact.
Module 2: Designing Buildings to Need Less Heating and Cooling
- Building orientation and passive solar design to cut energy demand before mechanical systems are involved.
- Insulation and building envelope performance, including air sealing and reducing thermal bridging.
- Using thermal mass and material choice to store and manage heat passively.
Module 3: Renewable Heat Sources: Geothermal and Solar Thermal
- Designing and integrating geothermal heat pump systems.
- Solar thermal energy for space heating and hot water production.
- Comparing the economics and environmental performance of both technologies.
Module 4: Heat Pumps and High-Efficiency Cooling
- Air-source and water-source heat pumps: how they work and how to size and install them.
- High-efficiency air conditioning systems and their comparative performance.
- Evaporative cooling for arid climates and its design considerations.
Module 5: Ventilation, Recovery and Hybrid Solutions
- Natural ventilation and heat recovery ventilators for reducing cooling loads.
- Combining renewable and conventional systems into hybrid setups for maximum savings.
- District heating and cooling as a scalable, urban-level solution.
Module 6: Smart Controls and Financial Justification
- Building management systems and smart sensors for optimising performance in real time.
- Cost-benefit analysis: initial investment versus long-term energy savings and payback period.
- Calculating carbon footprint reduction from sustainable heating and cooling upgrades.
Module 7: Meeting Regulations and Certification Requirements
- International and regional regulations for sustainable heating and cooling systems.
- Energy performance standards and certifications such as LEED and BREEAM.
- Ensuring ongoing compliance as regulations evolve.