Envelope Engineering/Pillar 01/Envelope atelier

Building envelopeengineering practice& complex facades.

A standard building envelope engineering practice delivers calculations. We deliver complete mastery, technical, economic, industrial, of a project's facade, from preliminary design to handover. Our scope covers facade engineering (structural, thermal, weatherproofing, acoustic), design integrity, real industrial cost engineering, carbon strategy, DFMA and file-to-factory, through to site supervision. All from a position of trusted third party, with no manufacturer affiliation, no stake in any proprietary solution.

This pillar addresses owners, architects and general contractors seeking to master the envelope package, which concentrates the financial and technical risks of a complex project.

§ 01TECHNICAL ENGINEERINGSIA · EUROCODES§ 02DESIGN INTEGRITYINTENT§ 03PROJECT ECONOMICSSHADOW PRICING§ 04CARBON STRATEGYPARAM. LCA§ 05INDUSTRIALISATIONDFMA · F2FINTEGRATED SYSTEMFIG. 015 strataof the envelopeSDCD
15–25 %
envelope share of construction cost
05strata
disciplines covered in parallel
08expertises
state-of-the-art specialties available
03profiles
owners, architects, general contractors
01· Plate, what we do

What we do in Envelope Engineering.

Envelope Engineering is the discipline that takes on a building's envelope as an integrated system, not as an addition of separate trade packages. We cover the full chain, from concept stage through to defect liability close-out.

§ 01Exclusive envelope scope

A specialised building envelope engineering practice stands apart from a generalist engineering office through its exclusive scope. We do not cover MEP, we do not cover primary structure, we do not cover electrical. We only do the envelope, and we do it completely.

Our technical scope covers aluminium curtain walls (stick and unitised), Structural Sealant Glazing (SSG/VEC), complex glass roofs and skylights, composite-panel facades, ventilated facades in stone, terracotta, glass, ETFE and PTFE membranes, double-skin facades, and hybrid wood-aluminium or steel-glass systems.

§ 02Five disciplines in parallel

Each component is treated in parallel, not in sequence. That is what distinguishes a systemic engineering practice from a discipline-by-discipline one. When the thermal engineer and the cost engineer work simultaneously on the same native 3D model, trade-offs are settled at design stage, not on site, where they cost ten times more.

On every system, we master the two dimensions that few teams handle simultaneously: normative technical rigour (SIA, Eurocodes, DTU, ASTM) and real industrial economics, not cost-per-square-metre rules of thumb, but real fabrication, transport and installation costs given current market capacities at the time of the project.

Exclusive scopeVertical specialisationSystemic method
§ Angle 01

Complete chain coverage

Technical engineering, design integrity, project economics, carbon strategy, industrialisation. Five strata treated simultaneously from concept stage through to defect liability close-out.

→ Concept → CD
§ Angle 02 · Active

Vertical vs lateral

Our position is vertical, not lateral. We only cover one domain, and we cover it in depth. No MEP, no primary structure, no electrical.

→ Specialisation
§ Angle 03

Shared native 3D model

The thermal engineer and the cost engineer work simultaneously on the same model. Trade-offs are settled at design stage, not on site, where they cost ten times more.

→ Upstream trade-offs
Video · 04:32BETB Guide, Building Envelope Thermal Bridging Guide (CA)

Institutional source Canada, verified 2026-04-24.

02· Plate, position vs generalist practice

Our position is vertical, not lateral.

A generalist engineering office handles the envelope as one competence among many. Its engineers know the principles ; they do not know the manufacturers, the real production tolerances, the installation prices by geography, or the contractual traps specific to facade packages.

Our DNA

Trusted third party, no manufacturer affiliation.

Our revenue does not depend on the solution recommended. We take no manufacturer commission, no rebate on sourcing. This financial independence is the structural condition of our technical neutrality.

01 / 01Concrete consequence

Specifications aligned with industry

Our specifications reflect what manufacturers can actually produce.

Our specifications are aligned with the industrial reality of the market, not with what a textbook says they should be: machining tolerances of selected suppliers, accessible transport formats, installation sequences that actually work on site.

Industrial tenderReal tolerancesSpecific market
02 / 02Concrete consequence

Cost engineering at real manufacturer prices

Not catalogue prices, real prices.

Our cost engineering reflects real manufacturer prices, not catalogue prices. This makes it possible to compare design variants on their real cost, not on their assumed cost.

Shadow pricingComparable variantsP&L protected
03 / 03Concrete consequence

Neutral recommendations

We recommend a system because it fits the project, not because we know it better.

Vertical specialisation makes it possible to identify risks that generalist engineering offices do not see: incompatibilities between systems, exposure to contractual claims, dependencies on fragile sources of supply.

Risk readSourcing auditClaim anticipation
03· Plate, the heart of the practice

Five disciplines in parallel.

Each is a service in itself, available separately. But their structural value is in working together, on a single native 3D model, from preliminary design onwards. Click on a discipline to read its full argument.

01
Technical
engineering

Calculations on the real geometry, not rules of thumb.

Facade engineering covers the calculations that guarantee the envelope holds its performance over time and in real operating conditions.

Our technical scope includes facade mechanics (wind, seismic, snow loads under local codes), building physics (detailed thermal calculation, thermal bridges, condensation, facade acoustics), air and water tightness (joint system selection, EN 12152/12153 or ASTM E283/E331 testing), and computational design for complex geometries.

We do not use simplified methods or standard rules of thumb on complex projects. Every calculation is run on the real project geometry, with the actual climatic conditions of the site and the construction systems actually selected.

Technical engineering, our approach in detail →

Standards
SIA 261 · SIA 380/1 · EN 13830 · ASTM E1300
Tests
EN 12152/12153 · ASTM E283/E331
Phase
SD → CD
Wind · seismic · snowDetailed thermalAcousticsAir/water tightnessComplex geometry
§ Structural equation
Five disciplines treated in parallel on the same native 3D model, from preliminary design stage, infused by our computational practice (digital, algorithm, AI), so that trade-offs are settled at design stage and not on site, where they cost ten times more.
§ Plate 04 · State-of-the-art specialties

Vertical expertises available.

08 expertises

Some projects mobilise technical specialties that go beyond standard facade engineering. Our atelier masters these vertical expertises and integrates them into the project approach when the brief justifies them. They do not bolt on top of the core scope ; they integrate into the design from preliminary stage, while integration is still possible without disproportionate over-cost.

01 / / 05SMART SKIN

Smart skin & electrochromic glass

Variable-tint glazing, embedded sensors, BMS integration.

Variable glazingBMSSensors
En savoir plus
02 / / 05BIPV

BIPV, energy-generating facade

Photovoltaic integration into the facade, facade as energy generator.

PhotovoltaicActive facade
En savoir plus
03 / / 05JUMBO GLAZ.

Structural glass

Jumbo SSG, high-strength laminated glass, point-fixed.

Jumbo SSGHR laminatedPoint-fixed
En savoir plus
04 / / 05RESILIENCE

Extreme resilience

Bomb blast (levels 1 to 4 GSA/ASTM), anti-intrusion (RC4 to RC6).

GSA 1-4ASTM blastRC4-RC6
En savoir plus
05 / / 05COMPLIANCE

Energy compliance

MoPEC, CECB, Minergie-P, SIA 380/1, RE2020.

MoPECCECBMinergie-PRE2020
En savoir plus
05· Plate, for whom

For whom: owners, architects, GCs/TCs.

Three profiles call upon our building envelope engineering practice, for different reasons. Each profile looks for something specific ; our intervention adapts to that demand.

01 / 01Primary profile

Owners & investors

Look for budget mastery and asset security.

Owners and investors look for budget mastery and asset security. We act as Owner's Engineer: we represent their interests vis-à-vis contractors, oversee facade tenders, and guarantee that the thermal performance and weather-tightness promised are actually delivered at handover.

Posture
Owner's Engineer
Horizon
Pre-design → handover
Link
Owner solutions
Owner's EngineerTender oversightHandover guaranteeAsset security
02 / 02Primary profile

Signature architects

Look for a technical partner who understands the design and does not sacrifice it.

Architects look for a technical partner who understands the design and does not sacrifice it at the first budget constraint. We bring industrial feasibility to their intentions, without stripping the project of what makes it singular. The discipline of design integrity (cf. Plate 03 §02) is our specific answer to that demand.

Posture
Technical partner
Pivot discipline
Design integrity
Link
Architect solutions
Design integrityIndustrial feasibilityIntent preserved
03 / 03Primary profile

General & Total Contractors

Look to master the facade package, which concentrates hard-to-predict risks.

General and Total Contractors look to master the facade package, which concentrates hard-to-predict risks: building tolerances, interfaces with other trades, dependencies on fabrication lead times. We help them prepare tenders, qualify subcontractors and oversee execution.

Posture
Risk partner
Scope
Tender → execution → handover
Link
All our solutions
Tender preparationSubcontractor qualificationExecution oversightInterface risks
06· Plate, browse the practice

Browse the Envelope Engineering practice.

The Envelope Engineering practice covers complete building envelope engineering. Technical engineering as the pivot service, around which connected services articulate ; and a transverse computational engineering stratum that infuses the four worlds of the project (architecture, engineering, fabrication, installation).

07· Plate, sister practices

Transverse readings.

Four entry points to explore the rest of the site: the state-of-the-art technical specialties, the Business Engineering practice that addresses envelope companies, and the two Solutions pages by profile.

An envelope project to scope?

Every complex envelope project hinges on the precision of its initial scoping: nature of the system, climatic constraints of the site, accessible manufacturer capabilities, level of architectural integration targeted. Describe the context of your project in a few lines, we come back to scope a first conversation.

Project brief
Shili & PartnersA Shili Build Ventures company