Aerial view of Montreal's Olympic Stadium, showcasing new roof revamp integrating historic and modern elements.

Montreal’s Olympic Stadium: A Monumental Roof Revamp Combines History with Modern Engineering

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Written by John Oliver

2026-08-02

Revamping a visionary structure

GMP Architekten is part of a significant renovation at Montreal’s Olympic Stadium, tackling the longstanding issues with its roof. This ambitious project replaces the problematic membrane roof with a durable steel deck, ensuring protection from the infamous falling icicles.

Architectural team discussing renovation plans for the Olympic Stadium's new roof.
GMP Architekten is part of a team renovating the roof of the Montreal Olympic Stadium

A historical centerpiece

Constructed for the 1976 Summer Olympics, the stadium is a crucial part of Montreal’s Olympic Park. The original site, designed by French architect Roger Taillibert, included features like a velodrome, now the Montreal Biodome.

GMP Architekten has teamed up with Schlaich Bergermann & Partner, WSP Global, and Transsolar to redesign the stadium’s roof. The project aims to preserve its iconic design while addressing past challenges.

Construction of an inner roof inside the Montreal Olympic Stadium.
An inner roof is currently being built inside the stadium. Photo by GMP Architekten.

The quest for stability

The original Kevlar roof, retracted by cables from the stadium’s tower, presented continual difficulties. Because of this complexity, along with costs, union strikes and more, the roof was never fully operational. Even local authorities once considered demolishing it due to its issues.

GMP Architekten director Martin Glass notes the initial construction’s ambitious nature outpaced the 1970s Canadian construction capabilities.

Steel deck and cables will partially suspend the new roof's centrepiece.
The centrepiece will be capped with a steel deck and partially suspended by the structure’s 26 cables. Photo by GMP Architekten.

A modern solution

The team has devised a new approach, integrating a non-retractable steel cap with skylights. By suspending up to 90 percent of the new roof’s load via the original tower’s 26 cables, they ensure structural support.

Martin Glass explains that replacing the heavier concrete ring with a lightweight steel and aluminium framework affords the needed flexibility.

Concrete tower with cables extending downwards for support.
The cables extend downwards from the structure’s concrete tower

Innovative techniques

Currently, around 35 percent of the inner roof is complete, built on the stadium’s floor. Huge cranes will elevate this element into place. Once positioned, skylights will seal the space between the structural components.

Hydraulic cranes used to elevate the new roof structure into position.
Hydraulic cranes will push the roof upwards into place

“Once the roof is fully finalised on the floor, we will have these big mega cranes that will push the whole roof up to its correct height of around 50 to 60 metres,” Glass describes. The steel covering will solve the issues caused by the previous membrane.

Ongoing construction of the inner roof, expected completion by year's end.
The inner roof is slated to be completed by the end of the year. Photo by GMP Architekten.

Year-round functionality

Harsh winters once forced the stadium to close. The previous roof, plagued by punctures from icicles, proved unsustainable. The new steel deck with shock-absorbing cladding promises durability in cold weather.

“That will allow the client to use the stadium all year long without disruptions,” Glass states. This adjustment aims to safeguard its operation against financial setbacks linked to seasonal closures.

Workers assembling a light structural ring to support the new roof.
A major part of the project has been creating a new, light, structural ring to hold the roof

Light and life

The new design includes an illuminated underside with skylights, welcoming natural light inside. Glass emphasizes the benefits: “With the glazed ring we’re adding, the stadium will experience daylight, enhancing its usability for spectators and events.”

Improvements were announced in 2020, and include modernising the interior and tackling features like the existing cable car and glass observation deck.

Steel structure covered with aluminium panels forms part of the roof.
It is made of a steel structure that is covered in aluminium panels

“It will be a fresh chapter for the stadium, making it feel connected to its surroundings like never before,” Glass adds. These efforts stay true to the original design’s boldness and organic form, whilst addressing past concerns.

For more architectural transformations, discover how Nanjing Office revitalizes a historic minting site, blending history with modern design.

New outer ring design contributes to a lighter overall roof.
The new outer ring makes the entire roof lighter

Preserving architectural integrity

The project remains faithful to its visionary roots. “This building is already so strong, with its organic quality and sculptural expressiveness,” Glass says. Their goal: to enhance without overshadowing its historic architecture.

Patrick Beaudry of Snape Photo captures the evolution of this iconic landmark, illustrating both its challenges.

Cables support 90 percent of the new roof's weight.
90 per cent of the roof’s load will be suspended via cables. Photo by GMP Architekten.

As developments progress, the Montreal Olympic Stadium stands not only as a piece of history but as a beacon of modern engineering capability.

Explore another ambitious undertaking with plans to revitalize Mexico City’s iconic Azteca Stadium, demonstrating innovative modern design applications.

Source: dezeen.com

Frequently asked questions

What is the new roof design for Montreal’s Olympic Stadium?

The new roof design integrates a non-retractable steel cap with skylights. It suspends up to 90 percent of the load via the original tower’s 26 cables for structural support.

Why is the new roof better for winter conditions?

The new steel deck with shock-absorbing cladding promises durability in cold weather. This change allows the stadium to operate year-round without disruptions caused by harsh winters.

How does the new design enhance natural light?

The new design includes an illuminated underside with skylights, allowing natural light inside. Features like the glazed ring enhance usability for spectators and events.