
Facade Engineering Course
Master the full scope of facade engineering, from structural behaviour and thermal performance to fabrication, installation, and advanced system design. This course gives architects, engineers, and facade specialists the technical depth to design, detail, and deliver high-performance building envelopes. Build expertise that applies directly to real projects, from concept through construction.
What you'll learn:
This course covers every major discipline within facade engineering, including structural analysis, thermal and energy design, air and water performance, materials selection, and construction detailing. You will learn how to evaluate loads on facade systems, calculate thermal transmittance, manage condensation risk, and specify sealant and glazing products. The curriculum also addresses fabrication processes, site installation, BIM coordination, fire safety, and lifecycle management. Advanced topics include double-skin facades, building-integrated photovoltaics, adaptive systems, and computational design tools. By the end, you will have the technical knowledge to contribute confidently to complex facade projects at any stage of delivery.
How you study in practice Facade Engineering Course
How you practise Facade Engineering Course
For businesses looking to train their team
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Facade Engineering
Foundations of Facade Engineering
Lesson 1 • Key Physical Principles
Introduces heat transfer, air and moisture movement, and solar radiation as drivers of facade design decisions.
Lesson 2 • Standards and Approval Frameworks
Explains how performance standards, building codes, and third-party testing govern facade acceptance without referencing specific code identifiers.
Lesson 3 • Role of the Building Envelope
Defines the facade as a climate separator, structural interface, and aesthetic surface. Connects envelope performance to occupant comfort and energy use.
Lesson 4 • Stakeholders and Project Delivery
Maps the roles of architects, facade engineers, contractors, and fabricators within typical project delivery models.
Lesson 5 • Facade System Typologies
Surveys stick, unitised, panelised, and structural glazing systems. Provides a classification framework used throughout the course.
Chapter 2HideHide detailsSee detailsStructural Behaviour of Facade Systems
Structural Behaviour of Facade Systems
Lesson 1 • Connection Design Principles
Examines anchor, bracket, and splice connections that transfer facade loads to the primary structure. Addresses tolerance accommodation and movement.
Lesson 2 • Framing Member Behaviour
Covers bending, shear, and deflection in mullions and transoms under lateral and gravity loads. Links member sizing to serviceability limits.
Lesson 3 • Facade-to-Structure Interface
Addresses inter-storey drift, slab edge conditions, and differential movement between facade and primary structure.
Lesson 4 • Load Types Acting on Facades
Identifies wind, gravity, seismic, thermal, and blast loads relevant to facade design. Establishes load combinations used in structural checks.
Lesson 5 • Glazing Structural Behaviour
Analyses glass as a structural element under wind, thermal, and impact loads. Covers glass type selection and edge support conditions.
Chapter 3HideHide detailsSee detailsThermal Performance and Energy Design
Thermal Performance and Energy Design
Lesson 1 • Thermal Transmittance Calculations
Teaches U-value calculation for opaque and glazed facade elements using isothermal planes and numerical methods.
Lesson 2 • Condensation Risk Assessment
Applies dew-point analysis and interstitial condensation checks to facade cross-sections to prevent moisture damage.
Lesson 3 • Thermal Bridging Analysis
Identifies linear and point thermal bridges at brackets, frames, and penetrations and quantifies their impact on overall performance.
Lesson 4 • Solar Control Strategies
Evaluates shading devices, solar control glazing, and dynamic systems for reducing solar heat gain while maintaining daylight.
Lesson 5 • Whole-Facade Energy Modelling
Integrates thermal, solar, and ventilation parameters into energy simulation to predict annual facade energy contribution.
Chapter 4HideHide detailsSee detailsAir, Water, and Acoustic Performance
Air, Water, and Acoustic Performance
Lesson 1 • Sealant and Gasket Systems
Compares sealant types, gasket profiles, and their compatibility with substrates and movement requirements.
Lesson 2 • Water Management Design
Covers drainage planes, weep systems, and sill flashings that direct water out of the facade without interior penetration.
Lesson 3 • Acoustic Performance Principles
Introduces sound transmission loss, flanking paths, and facade acoustic ratings relevant to urban and airport-adjacent buildings.
Lesson 4 • Air Infiltration Control
Explains pressure-equalised and face-sealed design strategies and their effect on air leakage rates and energy performance.
Lesson 5 • Performance Testing Protocols
Details laboratory and field testing for air, water, and acoustic performance, linking test results to design acceptance criteria.
Chapter 5HideHide detailsSee detailsMaterials Selection and Durability
Materials Selection and Durability
Lesson 1 • Glazing Products and Properties
Compares monolithic, laminated, insulating, and coated glass products for structural, thermal, and optical performance.
Lesson 2 • Stone and Masonry Cladding
Addresses granite, limestone, and terracotta cladding systems, including anchor design and long-term durability risks.
Lesson 3 • Metal Cladding Materials
Covers steel, zinc, copper, and composite panel systems, addressing corrosion mechanisms and protective strategies.
Lesson 4 • Material Compatibility and Longevity
Evaluates chemical compatibility, UV degradation, and thermal cycling effects on multi-material facade assemblies.
Lesson 5 • Aluminium Framing Systems
Examines alloy selection, extrusion profiles, anodising, and paint finishes for aluminium curtain wall and cladding frames.
Chapter 6HideHide detailsSee detailsFacade Detailing and Documentation
Facade Detailing and Documentation
Lesson 1 • Specification Writing for Facades
Teaches performance and prescriptive specification formats, including material standards, testing requirements, and submittals.
Lesson 2 • Tolerance and Buildability
Addresses manufacturing, erection, and structural tolerances and how adjustable connections absorb cumulative variation.
Lesson 3 • BIM Coordination for Facades
Applies building information modelling to facade design, clash detection, and fabrication data extraction.
Lesson 4 • Critical Interface Details
Focuses on head, sill, jamb, corner, and floor-line details that govern performance and constructability.
Lesson 5 • Drawing Hierarchy and Conventions
Establishes the relationship between general arrangement, assembly, and detail drawings in a facade drawing package.
Chapter 7HideHide detailsSee detailsFacade Fabrication and Installation
Facade Fabrication and Installation
Lesson 1 • Logistics and Site Delivery
Addresses packaging, transport, and site storage of facade panels to prevent damage before installation.
Lesson 2 • Erection Sequence and Methods
Details anchor installation, panel hoisting, stacking, and alignment procedures for unitised and stick systems.
Lesson 3 • Site Quality and Commissioning
Covers site inspection, field testing, defect recording, and handover documentation to confirm installed performance.
Lesson 4 • Fabrication Processes and Quality
Covers extrusion, cutting, machining, and assembly processes in the facade fabrication shop and their quality control requirements.
Lesson 5 • Glazing and Sealing in the Shop
Describes factory glazing, structural silicone bonding, and insulating glass unit installation within unitised panel production.
Chapter 8HideHide detailsSee detailsAdvanced Facade Systems and Innovation
Advanced Facade Systems and Innovation
Lesson 1 • Adaptive and Kinetic Facades
Analyses motorised shading, responsive louvers, and shape-memory systems that adjust to environmental conditions.
Lesson 2 • High-Performance Glazing Systems
Evaluates vacuum glazing, aerogel panels, and triple-glazed units for ultra-low thermal transmittance applications.
Lesson 3 • Circular Economy in Facade Design
Applies design-for-disassembly, material reuse, and embodied carbon reduction strategies to facade system selection.
Lesson 4 • Double-Skin Facade Systems
Examines corridor, multi-storey, and shaft-box double-skin configurations for thermal, acoustic, and ventilation performance.
Lesson 5 • Building-Integrated Photovoltaics
Covers BIPV module types, electrical integration, structural support, and energy yield estimation for facade-mounted systems.
Your valid completion certificate
This course is for you:
Architectural designer: ready to take ownership of envelope performance decisions.
Structural engineer: expanding practice into specialized facade and cladding work.
Building envelope consultant: seeking a rigorous framework to sharpen technical judgment.
Construction project manager: overseeing facade packages and needing deeper technical fluency.
Mechanical engineer: integrating energy and thermal goals with facade system design.
Career changer: moving from general construction into facade engineering as a specialty.
What our students say
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