Reduction of thermal bridges
Baseline strategy · No scoreResolves facade, forging, roof, holes and structure encounters to avoid losses, condensations and mold.
Subject: Passive and Enveloping DesignContext: Buildings · Renovation · ConstructionCost: mediumEffort: highLevel: recommendedStage: design and constructionMaturity: established

How it works
Resolves facade, forging, roof, holes and structure encounters to avoid losses, condensations and mold.
It acts on the shape and envelope to moderate outdoor conditions before resorting to facilities. Measurements should work together, not as isolated pieces.
When does it make sense?
- In new construction or rehabilitation of the envelope
- After analyzing climate, orientation, use and humidity risks
- When it is possible to check the designed detail and execution
How to apply it
- 1
Defining what need resolves "thermal bridge reduction" and establishing a starting situation.
- 2
Compare alternatives and adapt design to climate, use, regulation, affected people and available resources.
- 3
Apply with clear responsibilities, check the actual result and correct unwanted effects.
Potential benefits
Lower thermal demand
Increased comfort and resilience
Lower equipment dependency
Limitations and precautions
- The result depends on context, design, execution and how it is used and maintained.
- A poorly adapted passive solution can cause overheating, humidity or poor air quality.
- Performance depends on both implementation and concept.



