• About Us
  • Submit Project
  • Advertise
  • NewsLetter
PA
Subscribe
  • Articles
    • Archipreneurs
    • Technology
    • Bim / Aec
    • 3D Printing
    • Architects
    • Artificial Intelligence
    • Robotics
    • Sustainability
    • Tools
    • Case Study
    • City Guide
    • Opinions
    • Interviews
    • Architecture & Design
      • Urbanism
      • Metaverse
      • Space Architecture
      • Geography
  • Projects
    • Architecture
    • Interior
    • Design
      • Fashion
      • Pavilion
      • Installation
      • Digital Art
      • Landscape Design
    • Products
  • News
  • Workshops
  • PA Talks
  • Videos
  • Books
  • More
    • PA+ Membership
    • Courses
    • Competitions
    • Events
    • Jobs
    • About Us
    • Contact Us
Font ResizerAa
PAPA
Search
  • Articles
    • Archipreneurs
    • Technology
    • Bim / Aec
    • 3D Printing
    • Architects
    • Artificial Intelligence
    • Robotics
    • Sustainability
    • Tools
    • Case Study
    • City Guide
    • Opinions
    • Interviews
    • Architecture & Design
  • Projects
    • Architecture
    • Interior
    • Design
    • Products
  • News
  • Workshops
  • PA Talks
  • Videos
  • Books
  • More
    • PA+ Membership
    • Courses
    • Competitions
    • Events
    • Jobs
    • About Us
    • Contact Us
Follow US
PA > Blog > Articles > Sustainability > The Crystal, London: A Beacon of Glass, Sustainability, and Adaptive Reuse
Sustainability

The Crystal, London: A Beacon of Glass, Sustainability, and Adaptive Reuse

Last updated: July 3, 2025 3:29 pm
Nandini Subramanian
Nandini Subramanian
ByNandini Subramanian
Nandini Subramanian is an architect and a journalist with an MA in Urban Design from The University of Sheffield and a PG Diploma from the Asian...
Share
List of Images 1/8
SHARE

Siemens had taken the resolution to substantiate with physical proof as part of their Sustainable Cities Initiative, a global green hub that could get architects, engineers, builders, designers, and urban architects talking and formulating ideas in sustainability.

Contents
  • Concept behind the form
  • The Crystal London – Design strategies
  • What makes The Crystal sustainable?
  • Certifications and Recognition

Their choice of location – the regenerated Royal Docks in London, now a part of the Green Enterprise District. This was in the year 2012, when both LEED and BREEAM had already been well-established bodies of certification systems, the term ESG was being thrown around constantly and the world was still reeling from ‘An Inconvenient Truth’ by Al Gore. The result was the building ‘The Crystal’ – which incidentally is also the first ever building to be awarded both BREEAM Outstanding and LEED Platinum certifications. 

The Crystal London Wilkinson Eyre Architects. Photography: Chris Humphreys

Designed by Wilkinson Eyre Architects, with interior fit-out by Perkins + Will and engineering support from Arup, the building was conceived as a platform for stakeholders of urban sustainability to discuss challenges and exchange ideas to reduce the environmental impact of the built fabric. Opened just a month after the 2012 London Olympics, the structure proved to kindle the thought that sustainability can be achieved through simple designs with modern amenities, timeless aesthetics, and potential adaptation.

The building has undergone an adaptive reuse and was reopened in 2022 as London’s City Hall and accommodates the London Assembly. Even today, the building is considered one of the most sustainable structures in the world and is as an inspiration for how sustainable architecture can be developed with meticulous attention to age-old design principles and straightforward strategies.

Concept behind the form

The design concept started with interlocking two crystals that helped to separate the public and office spaces and created a covered gathering space. Image © Wilkinson Eyre Architects

The project brief required an international structure of excellence for sustainability and naturally had to be a beacon of sustainability both in construction and performance. Siemens needed a technology and innovation centre for people to collaborate for research and experimentation, and further partnerships that encourage the growth of energy-efficient technologies.

The building had to accommodate exhibition spaces, conference rooms, office spaces, and a café. Elaborating on the concept behind the design, Sebastien Ricard, Director at Wilkinson Eyre Architects, said, “This project offers the fantastic opportunity to explore how new technologies can help create a highly sustainable building without relying solely on ‘passive systems’.”

To be a true example of sustainable architecture, the structure should be adaptable as technology progresses and flexible enough to be efficiently reused for a different function, if necessary. It was proved for The Crystal in 2022 when the structure was reopened as the London City Hall.

This was a conscious decision by London’s Mayor, who wanted to be at the forefront in tackling climate change and lead the city towards net-zero carbon goals by 2030. The building is still efficient today in energy consumption with systems and elements that optimise energy usage. 

The Crystal London – Design strategies

Drawings of The Crystal showcase its iconic form with glass facades that have been fitted with glass of varying sizes, transparencies, and insulation. Image © Wilkinson Eyre Architects

The requirements of the 6300 sq.m. project can be easily divided into public and office spaces, which led to the interlocking of two wings housing different spaces based on the nature of use. The structure takes its inspiration from the many-sided crystal form, with its multiple angular shapes that resulted in a form with no traditional front façade, back façade, or roof shape.

The structure has no visible vertical or horizontal lines and is supported by triangular-shaped glass that reflects the surroundings as much as it provides transparency to the interior. The glazed crystalline form is designed as ‘a pavilion in a park’, establishing it as a landmark icon with striking views seen from the ground or from the Air Line Cable located close by. 

To imitate a crystal, the structure is completely clad in glass, which is usually not considered the most sustainable of materials. The architects employed six different types of insulated glass, which vary in transparency levels depending on their placement. Reflective glass is used on those surfaces angled towards the sun, and transparent ones on those surfaces angled away from the sun’s rays. This way, the glass-cladded walls allow light but not heat into the structure, reducing its dependence on artificial forms of ventilation and lighting and thereby reducing the carbon footprint. 

With sustainability at its core, the architects made sure the structure is adaptable to all future scenarios. The design allows for the building to contribute to London’s power grids in the future, more efficient roof-mounted photovoltaic panels to replace the existing set, and management systems that can evaluate post-occupancy functioning for any type of use. The flexibility of the design helped in repurposing it to accommodate the London City Hall. The energy efficiency of the structure and the projected financial gains prompted the London Mayor, Sadiq Khan, to move offices and redirect the finances to public services.

What makes The Crystal sustainable?

The interior of one of the ‘crystals’ showcase the play of light through the glass facades and the optimisation of the interior spaces within the unique shape. Image © Chris Humphreys

The sustainability measures taken in this structure go beyond the passive systems, and the building serves as a living exhibit for the world’s largest urban sustainability exhibition space, located in one of the wings of The Crystal. In its current use as London’s City Hall, the building uses about 50% less energy than buildings of similar size. They have even sustainably sourced materials for the interiors and repurposed and reused furniture from the old site, contributing to a reduced carbon footprint. The myriad sustainable features include:

  1. Renewable Energy Source: It is a 100% electric building operating completely free of fossil fuels. Renewable energy is supplied through solar photovoltaic panels and solar thermal panels positioned on the building exterior, and the ground source heat pumps. The solar panels are aligned along 60% of the roof of the structure, which provides for 20% of the electrical energy required. There are 160 heat pumps in the form of 21m deep energy piles that provide for 100% of the building’s heating requirements. Heat is pumped to the building during colder temperatures, and heat is sent to the ground during warmer temperatures. The site also has a battery storage facility that helps to manage the load and demands. 
  2. Water and Waste Management: The site has implemented rainwater harvesting and blackwater treatment plants. The underground 60,000-litre rainwater harvesting tank is treated to be used as potable water on the site. Under the Refill London drinking water scheme, there is a provision for visitors to refill their bottles with drinking water from a water fountain located on the site, which assists in reducing the consumption of single-use plastics. Black water is also 100% treated in a separate recycling plant that is used efficiently as an alternative supply to toilet flushing, reducing the structure’s water consumption by 50%. The treated black water is also used for irrigating the landscaping on the site. The structure also uses efficient water appliances with low maintenance requirements. From the start of the project, the architects were conscious of waste generation and employed a comprehensive waste management plan at the time of construction. The use of low-impact materials furthers them in this regard. 
  3. Natural Lighting and Ventilation: Systems and design elements were consciously incorporated to reduce the dependence of the structure on artificial lighting or artificial ventilation. With the unique glazing design of The Crystal, the architects were careful to maximise daylighting while ensuring minimum solar gain. Every one of the 35% LEDs and 65% fluorescent lamps can be controlled and adjusted based on the need, depending on the occupation of the space and the time of the day. This ensures that there is no wastage of artificial lighting. The openings in the roof and walls are motorised to adjust the opening of the vents to optimise natural ventilation. This has helped to reduce dependence on air conditioning. The air conditioning used is sourced from the ground source heat pump to facilitate low-velocity air displacement.
Painting of the Crystal by Liam O’Farrell displays the vibrant surroundings of the Royal Docks. Image © Liam O’Farrell
  1. Building Management Systems: Intelligent analytics, advanced fire sensors, occupancy detection, and comfort sensors all contribute to the innovative and integrated building management system. This can be accessed and operated simultaneously from multiple locations to provide maximum comfort in the form of heat, light, and ventilation while warranting minimum energy consumption. While the electricity and water consumption are being monitored, comparisons can be made with the performance of other buildings to ensure efficiencies are maintained. 
  2. Glass Façade Design: The Crystal’s most unique feature that is immediately visible is its shape and the material that forms it. Glass, as a material, is not usually associated with sustainable design, but the placement and variety of glazing used have assisted in creating a unique structure and still keeping the building energy efficient. There are six different types of glazing used with varying degrees of transparency. Each one is of a different shape, angled either towards the sun to facilitate heating or away from the sun when heat is not wanted. Thus, they become self-shading devices. The glazing also doubles as a curtain walling façade, with triple layers that enhance the air tightness and allow 70% daylight while blocking up to 30% of the heat radiation. This additional insulation takes energy efficiency to a new level.
  3. Landscape and Community Spaces: The landscape on the site consists of carefully selected species that can withstand droughts, ensuring that water consumption is also reduced. The drainage system minimizes the discharge into the sewer, and the overall landscape is enhanced by bee-friendly, sustainable design to embrace biodiversity. The paving materials help reduce the need for streetlights, increasing the efficiency of the structure toward carbon footprint reduction. A community garden along the ecological strip enhances community engagement and gathering.

At the opening the building in 2012, Roland Busch, CEO, Infrastructure & Cities Sector, Siemens AG, commented, “Siemens is establishing the Crystal in order to help find solutions for making the world’s cities more sustainable. It will serve as a centre for dialogue, learning, and discovery.”

Certifications and Recognition

An aerial view of The Crystal, London by Wilkinson Eyre Architects, with its surrounding landscape as seen while traveling in the Air Line Cable. Image © Wilkinson Eyre Architects

To know more about how you can leverage smart digital tools to create more sustainable and efficient buildings through coordination and without compromising on your creativity you can check out PAACADEMY‘s courses. PAACADEMY offers various courses on computational design that can help you stay abreast with the latest data on architectural design technologies.

Certifications: BREEAM Outstanding certification and LEED Platinum certification

Awards: British Council for Offices (BCO) National Innovation Award winner, Most Sustainable Building at London’s LABC Award winner, Greenest Venue at the Hire Space Awards winner

The Crystal functions at optimum energy levels with efficient systems and technology that help to reduce the building’s carbon footprint. Video © RS

TAGGED:BREEAMLEED Platinumthe crystal london
Share This Article
Email Copy Link Print
ByNandini Subramanian
Nandini Subramanian is an architect and a journalist with an MA in Urban Design from The University of Sheffield and a PG Diploma from the Asian College of Journalism. She has a keen interest in the built structure for she strongly believes that shelter is one of the most important necessities to man. Her interest also expands to uniting the local culture and design and bringing it to the public through journalism, so they can effectively participate and efficiently utilise the built structure and its surroundings. She has experience as an architect, a journalist, in teaching and in documentation. And the various roles have helped her see the different facets of architecture and how best to suit the demand with action. While acquainting with the various spheres of this field, her passion to contribute continues to grow and has extended to include sustainability to conserve the environment and preserve for the future generations.
Previous Article 3D Printing On The Moon: Project Olympus
Next Article BIG Redesigns Ørestad’s Public Spaces with ‘The Impact’ in Copenhagen

More Stories

Construction Projects

Beyond the Architect: Rethinking Power and Hierarchy in Contemporary Construction Projects

By
Mahshid Motamed
How AI Is Transforming Outdoor Living Spaces Beyond The House

How AI Is Transforming Outdoor Living Spaces Beyond The House

By
PA Editorial Team
2026 FIFA World Cup Stadiums

5 Infrastructure Lessons from FIFA World Cup 2026: What Future Host Cities Must Learn

By
Pooja Khanna Tyagi
Miami Bay Towers

Miami Bay Towers Brings Four Sculptural Forms to Biscayne Bay

By
Isha Chaudhary
Origami architecture

Top 10 Buildings Shaped by the Art of Origami Folding in Architecture

By
Arpitha S
Sarnath

Sarnath Becomes India’s 45th UNESCO World Heritage Site

By
Isha Chaudhary
Korean Football Park

UNStudio Completes Korean Football Park in Cheonan

By
Isha Chaudhary
Iranian Architecture

A Legacy Built in Brick and Geometry: Arches in Iranian Architecture

By
Mahshid Motamed
Tianmeng Tower

Woods Bagot Shapes the IGG Tianmeng Tower Around Fuzhou’s Iconic Banyan Tree

By
Isha Chaudhary

Motion in the Shell by Melike Altinisik Architects

By
Hamid Hassanzadeh
Previous Next

Subscribe Newsletter

- Upcoming Workshop-
Ad image

You Might Also Like

Smart Materials; Sustainable Construction
Sustainability

15 Smart Materials Changing Sustainable Construction – Part 1

December 9, 2025
Sustainability

A Green Living Building: Case of the Bullitt Center

July 18, 2025
Sustainability

How Sustainable Design Is Transforming Transportation Infrastructure

June 25, 2025
Are Low-Carbon Buildings the Coolest Shift in Future Architecture?
ArticlesSustainability

Are Low-Carbon Buildings the Coolest Shift in Future Architecture?

March 19, 2026
PA

© All rights reserved. Parametric Architecture (2018-2026) - ISSN 3023-7564

Facebook Twitter Youtube Rss Medium

Get to Know Us

  • Architecture
  • Design
  • Digital Art
  • Fashion
  • Installation
  • Pavilion
  • Interior
  • Products

© 2026 ParametricArchitecture. All Rights Reserved. By utilizing this website, you are consenting to our User Agreement, Privacy Policy, and Cookie Statement. In compliance with the privacy laws of Turkey and the United States, we recognize and respect your rights. Please be aware that we may receive commissions for products bought through our affiliate links. Unauthorized reproduction, distribution, or transmission of any material from this site is strictly forbidden without prior written permission from ParametricArchitecture.

Join Us!
Subscribe to our newsletter and never miss our latest news, podcasts etc..
Please check admin setting to display form corretly.
Zero spam, Unsubscribe at any capitalpost.
Welcome Back!

Sign in to your account

Username or Email Address
Password

Lost your password?