Electricity and operation & maintenance From $2000

Course Date

2026-10-19
2027-01-18
2027-04-19
2027-07-19

Course Cost

Note / Price varies according to the selected city

Price per participant, per week $2000

Register 3 participants on the same course and pay for 2 only

Members NO. : 1
$2000

Members NO. : 2
$4000

Members NO. : 3
$4000 (pay for 2)

Categories

Designing Low-Energy Buildings: An Energy Efficiency Training Course (Online / Remote)


Summary

A poorly designed building keeps paying for its mistakes for decades — every winter it loses heat through a weak envelope, every summer it fights to stay cool, and every month the energy bill reflects choices that were locked in before construction even started. Energy-efficient design is how architects and engineers avoid that trap from day one.

Buildings account for a huge share of global energy consumption and carbon emissions, which makes design decisions — the envelope, the insulation, the systems, the materials — some of the most consequential choices in the fight against climate change and rising operating costs alike.

The Arab British Fellowship Training Academy's "Designing Low-Energy Buildings: An Energy Efficiency Training Course" gives architects, engineers and design professionals the practical knowledge to design buildings that use less energy, cost less to run, and stay comfortable — from passive design fundamentals through to renewable energy integration.

Objectives and target group

What You Will Gain

  • A firm grasp of the fundamental concepts and principles behind energy-efficient building design.
  • The ability to analyse how the building envelope, insulation and material choices shape energy performance.
  • Skills for evaluating energy-efficient technologies, building systems and renewable energy sources for integration into a design.
  • Practical strategies for cutting energy consumption without compromising comfort or functionality.
  • An understanding of how to weave sustainability — environmental and economic — into building design, and familiarity with international energy efficiency standards and certification systems.

Who Should Attend

  • Architects and building designers looking to incorporate energy-efficient principles into their projects.
  • Civil and mechanical engineers involved in designing, constructing or renovating energy-efficient buildings.
  • Sustainability consultants, building inspectors and project managers seeking a deeper, practical understanding of energy efficiency in building codes and standards.
  • Students in relevant fields looking to build practical knowledge of energy-efficient building design.

Course Content

Module 1: The Case for Energy-Efficient Buildings

  • The environmental and economic benefits energy-efficient buildings deliver.
  • How energy efficiency in buildings connects to climate change and broader sustainability goals.
  • Global energy consumption trends and what they mean for how buildings are designed today.

Module 2: Core Design Principles: Passive and Active Strategies

  • Passive design strategies that make the most of natural heating, cooling and lighting.
  • Active design strategies: integrating energy-efficient systems and technologies into a building.
  • Striking the right balance between energy efficiency, cost-effectiveness and occupant comfort.

Module 3: Energy Codes, Standards and Certifications

  • An overview of international energy efficiency standards such as LEED, BREEAM and Energy Star.
  • How local and national building regulations push energy-efficient design forward.
  • What it takes to meet the requirements for energy-efficient building certification.

Module 4: The Building Envelope: Walls, Roofs, Floors and Windows

  • How the building envelope shapes energy efficiency and thermal comfort.
  • The components of a high-performance envelope: walls, roofs, floors and windows.
  • Strategies for optimising the envelope to conserve energy.

Module 5: Insulation and Moisture Control

  • Why insulation matters for reducing heat loss and heat gain.
  • Types of insulation materials — fibreglass, cellulose, spray foam, reflective insulation — and how to choose between them for different climates and building types.
  • Air sealing, vapour barriers and moisture control techniques that protect building performance.

Module 6: Heating Systems That Save Energy

  • An overview of energy-efficient heating technologies: heat pumps, radiant heating and condensing boilers.
  • Matching the heating system to building size, climate and energy needs.
  • The benefits of zone heating and programmable thermostats.

Module 7: Cooling and Ventilation for Comfort and Efficiency

  • The role passive cooling plays in cutting energy consumption, alongside active systems such as energy-efficient air conditioning and evaporative cooling.
  • Design strategies for reducing cooling loads.
  • Why ventilation matters for indoor air quality, and how energy and heat recovery ventilation (ERV/HRV) systems support both efficiency and comfort.

Module 8: Choosing Sustainable Materials: Lifecycle, Local and Green Options

  • Selecting eco-friendly, energy-efficient construction materials and understanding their lifecycle impact on performance.
  • The role local materials play in reducing a building's carbon footprint.
  • The benefits of recycled and upcycled materials, including bamboo, cork, recycled steel and low-VOC products.

Module 9: Reflective, Insulating and Thermal Mass Materials

  • How reflective roofing and exterior materials contribute to energy conservation.
  • Insulating materials for energy-efficient windows and doors.
  • Using thermal mass in building materials to keep internal temperatures stable.

Module 10: Integrating Solar Power

  • The different solar technologies available: photovoltaic (PV) and solar thermal systems.
  • Design considerations for integrating solar panels into building roofs.
  • The benefits and challenges of solar energy for residential and commercial buildings.

Module 11: Wind and Geothermal Energy for Buildings

  • The potential of small-scale wind turbines in urban settings, and the design considerations involved.
  • Combining wind and solar systems for stronger overall energy performance.
  • Geothermal heating and cooling, including how ground-source heat pumps (GSHP) work and where they perform best.

Module 12: Smart Building Systems: Automation and Energy Storage

  • How Building Automation Systems (BAS) control energy use through smart thermostats, lighting systems and occupancy sensors.
  • The value of real-time monitoring and control in cutting consumption.
  • Energy storage options — batteries, thermal and mechanical storage — and how to integrate them with renewable energy systems.

Module 13: Buildings in the Smart Grid: Connectivity and Future Trends

  • How smart grids enable better energy management and demand response.
  • The role buildings play within the wider smart grid ecosystem.
  • Emerging trends in energy efficiency, including the growing role of the Internet of Things (IoT) in building design.

Related Course

In-Person

Designing Low-Energy Buildings: An Energy Efficiency Training Course

2026-10-19

2027-01-18

2027-04-19

2027-07-19

$4500