
Work Here?
This design firm brings together architects, urban planners, interior designers, engineers, and landscape architects to create built spaces that improve community wellbeing and the environment. It works by integrating multiple disciplines—architecture, planning, engineering, and landscape—throughout the project process, from sketching and modelling to final construction, to design urban, transportation, education, arts and culture, residential, retail, and mixed-use spaces. Unlike competitors, it combines a wide range of expertise and diverse perspectives in one team to tackle complex challenges and deliver solutions that others can’t. Its goal is to turn client needs into places that enhance everyday life for communities while respecting the shared environment.
Industries
Company Size
N/A
Company Stage
N/A
Total Funding
N/A
Headquarters
Calgary, Canada
Founded
N/A
See people who can refer or advise you
Help us improve and share your feedback! Did you find this helpful?
Health Insurance
Dental Insurance
Paid Vacation
Parental Leave
Professional Development Budget
Employee Discounts
FVRD wins Silver for PIBC's Award for Excellence in Planning Practice. June 8, 2026 News story. For Immediate Release Fraser Valley Regional District (FVRD) and Dialog BC received the 2026 Planning Institute of British Columbia (PIBC) Award for Excellence in Planning Practice: Small Community and Rural Areas in the silver category for the Fraser Canyon Complete Community Assessment project. The year-long project funded by the Union of BC Municipalities (UBCM) provided a detailed look at housing, transportation, infrastructure, and access to daily needs (services) in the canyon communities. The project was guided by four themes: housing, access to daily needs, transportation, and infrastructure. The study identified opportunities to strengthen community hubs, improve local livability and inform the Official Community Plan update for parts of Electoral Areas A and B. "This project helped to identify how the Fraser Canyon can evolve over the next 20-years," said Patricia Ross, FVRD Board Chair. "I am extremely proud of the work by FVRD staff as well as how residents provided valuable feedback which showed their dedication in creating resilient communities for the future," she said. The Fraser Canyon Complete Communities Study is available for viewing on the FVRD Have Your Say site https://haveyoursay.fvrd.ca/fraser-canyon-complete-communities-study. The FVRD is the third most populous regional district in British Columbia and one of twenty-seven throughout the province. The FVRD delivers over 100 services to approximately 340,000 residents across a land base of 13,361 square kilometers. The FVRD's eight electoral areas include all of the unincorporated communities on the north and south sides of the Fraser River, reaching up beyond the Nahatlatch River in the north and extending down to the U.S. border in the south. The FVRD is responsible for governance, administration and services for the eight electoral areas, each named separately by letters of the alphabet (A-H). Learn more about the FVRD at fvrd.ca. Media contact: Samantha Piper Manager of Communications 604-702-5089 [email protected]
Vancouver's honeycomb timber tower defies seismic norms with ingenious Design. 2026-06-04 In Vancouver, a striking new building rises like a creation from a bee's imagination. This architectural marvel at 2150 Keith Drive is ten stories of glulam - a form of engineered wood - structured with diagonal braces in a hexagonal pattern that echoes a honeycomb. This distinctive structure features no concrete core or hidden steel skeleton. Instead, 106 seismic dampers drive an intelligent solution for seismic resilience. Known as The Hive, this building stands as North America's tallest seismic-force-resisting mass timber edifice. Designed by Dialog Design with engineering by Fast+Epp, The Hive is not just attracting attention for its innovative approach; it has already secured Nature's Path Foods and the Insurance Corporation of British Columbia (ICBC) as major tenants. ICBC's choice underscores a significant industry endorsement for the structure's dependability in earthquake-prone areas. Engineering brilliance in Design. The Hive's structural ingenuity challenges traditional approaches in seismic architecture. While typical designs rely on a concrete core for lateral stability, Dialog opted for glulam braces that form a load-bearing honeycomb facade. This integration makes the structure both visually and functionally significant - the facade embodies the building's strength, not just an aesthetic layer. The building's resilience owes much to its 106 Tectonus damper connections. Inspired by tectonic plate movements, these components enable The Hive to absorb and dispel seismic energy, maintaining structural integrity. Extensive pre-construction testing, including mockups at the University of Alberta, ensured their efficacy, highlighting the rigorous standards this project met. For another take on minimalist Japanese interiors, see how a charred timber cabin was built from ruins using resilient and sustainable materials. Setting new standards in seismic architecture. Canada's 2020 National Building Code update, permitting up to 12-story mass timber constructions, laid the groundwork for The Hive. Located in a high-seismic area, it faced additional regulatory challenges. By partnering with governmental bodies to secure $4 million for vital research and testing, the building not only adhered to these advanced standards but influenced their development. Unlike other notable mass timber structures, such as Milwaukee's 25-story Ascent, The Hive uniquely addresses seismic concerns, showcasing a high level of engineering robustness. Its presence in Vancouver attests to the feasibility of timber in seismic zones, providing a model for future constructions under similar conditions. The aesthetic and functional harmony of Design. Chosen for its seismic efficiency, the honeycomb imagery isn't merely decorative but serves as the optimal structural geometry for The Hive's scale. This synthesis of form and function creates a building that is both graphically and structurally innovative, setting a precedent for architectural integration. The debate surrounding mass timber - its benefits and perceived risks - finds a significant case study in The Hive. It demonstrates carbon footprint reductions and energy efficiency while confronting seismic and fire safety criticisms head-on. As a pioneering stride in mass timber architecture, The Hive opens the conversation for what is next in sustainable urban development. Explore how a New York restaurant capitalizes on sustainability by using discarded materials in construction, similar to this NYC restaurant's eco-friendly approach.
Dialog and HNTB to lead design of Edmonton's Event Park. April 9, 2026 By Peter Saunders Talking points. OEG Sports & Entertainment and the city of Edmonton have chosen Dialog and HNTB as lead designers for the new Event Park, planned for the current Fan Park site beside Rogers Place in Edmonton's ICE District. The selection comes after an RFP attracted 19 qualified submissions. Dialog previously worked on the ICE District and Rogers Place, while HNTB has designed major venues across North America. The Event Park is envisioned as an indoor-outdoor destination directly connected to Rogers Place, with facilities for concerts, festivals, cultural gatherings and sporting events. OEG Sports & Entertainment president and COO Stu Ballantyne says the project will support downtown revitalization and strengthen Edmonton's reputation as a hub for sports, entertainment and community life. Dialog principal Gerry Doering says the design aims to create a vibrant, adaptable and welcoming venue. * Dialog and HNTB selected as lead designers after competitive RFP process * Event Park to be built next to Rogers Place * Construction set to begin next year with completion targeted for 2029 The project is expected to boost economic activity, attract visitors and enhance community engagement in downtown Edmonton. Powered by: OEG Sports & Entertainment (OEGSE) and the city of Edmonton have selected Dialog and HNTB as lead designers of the new Event Park, to be located at the current Fan Park next to Rogers Place in Edmonton's ICE District. The selection follows a request for proposals (RFPs) that drew 19 qualified submissions. Dialog has previously contributed to the designs of the ICE District and Rogers Place, while HNTB has designed sports and entertainment venues across North America. The Event Park is conceived as an indoor-outdoor entertainment and community destination, connecting directly to Rogers Place. The project calls for expertise in acoustics, staging, sound and lighting for touring acts, headline performances, cultural gatherings, festivals and sporting events. Indeed, OEGSE promises it will be Alberta's premier multi-use event hub. "We are proud to partner with Dialog and HNTB on this next phase of Edmonton's downtown revitalization," says Stu Ballantyne, OEGSE's president and chief operating officer (COO). "Public spaces like Event Park will help bring more people downtown and enhance our reputation as a destination for sports, entertainment and community life." "We aim to deliver a venue that is vibrant, adaptable and welcoming by design," says Dialog principal Gerry Doering. Construction is expected to begin next year. Completion is expected in 2029.
Fire test validates new floor system's performance under extreme conditions. EllisDon recently set its Hybrid Timber Floor System (HTFS) on fire to challenge assumptions and misconceptions about mass timber and demonstrate what is possible with sustainable construction in the future. In March, EllisDon's Building and Materials Sciences team, with the help of its partners, successfully executed the largest fire demonstration test in the organization's history. "It was an unprecedented opportunity for people such as code officials, designers and fire officials to come and see with their own eyes how the system performs in a fire," said Mark Gaglione, director, Building and Materials Sciences at EllisDon, adding this was a unique event as the industry doesn't get very many opportunities to witness a full-scale building product burn test. The system demonstrated its ability to remain structurally sound under extreme fire conditions. "It's our goal to really showcase the strength of mass timber," said Gaglione. "The results we're seeing challenge the perceived limits of mass timber construction within both the industry and public perception." The innovative floor system started as an idea on paper in 2019 and began to take shape during the COVID-19 pandemic. EllisDon partnered with DIALOG to develop the low-carbon, long-span alternative to concrete and steel. The research for the floor system received funding from the Government of Ontario and Natural Resources Canada. The system is actually made up of three separate elements that already exist, explained Vincent Davenport, director, Construction Sciences, EllisDon. It incorporates Cross-Laminated Timber (CLT) as its base, with post tensioned concrete on the underside and a concrete topping to create a 40-foot exposed timber span. "We combined those three things into one product so it's an innovation in that sense," he noted. "You get the benefit of all three things in one panel product." The patent-pending system boasts the strength of concrete with the sustainability benefits of mass timber. The prefabricated floor panels are more durable, thinner and can reduce embodied carbon emissions by 25 per cent compared to traditional concrete and steel construction. The design also allows for exposed timber finishes, offering aesthetic appeal. Furthermore, it allows builders to use mass timber in ways that were traditionally reserved for concrete and steel construction, such as long-spanning structures, Gaglione explained. Developing the long-span timber floor panel is part of EllisDon's commitment to advance the use and adoption of mass timber across a variety of projects. The panel provides a possible solution to maximize the use of mass timber in building typologies that are not readily conducive to typical mass timber framing such as commercial and institutional projects. It enables large, open spaces often desired in commercial buildings without beams intruding into the space. Two full-scale panels measuring 40 feet long and 10 feet wide have been undergoing structural testing at a lab on the west coast. EllisDon and DIALOG partnered with FPInnovations, a not-for-profit research and development organization supporting the Canadian forest sector, to conduct the testing. The opportunity came about to bring one of the prototypes out of the structure testing lab and into a fire testing yard in Richmond, B.C. to do full-scale fire testing. The facility is used by the Richmond Fire Department to practice rescue exercises. The demonstration involved setting the HTFS on fire to see how it burns in different conditions. "We had already done a small-scale fire test to inform the actual design of the product and this gave us the opportunity to do a full-scale fire test," said Davenport. "We had sensors, it was heavily instrumented during the test so we could understand how it was performing, its deflection and also the temperature at different levels and different parts during the fire. There was an academic portion that was informing us but it wasn't a standardized test. It was more of a demonstration burn so that people could come and see how the system works." The team positioned the 40-foot floor panel above a controlled burn and placed 37,890 lbs of concrete blocks on top, equivalent to the weight of seven Ford F150 trucks. Controlled fires, monitored by firefighters, were lit beneath the panel to test its capacity and structural integrity in the event of a large-scale fire. "We tested the product full scale, exactly how it would be in real life if we were producing it for a project," said Gaglione. "A box was built to contain the fire at the centre of the span which is the most susceptible part of the product." Once the fire was lit, it got to 900 degrees Celsius in 30 minutes. "The most interesting thing was the deflection," said Davenport. "It deflected 17 mm, just over a centimetre-and-a-half. Despite the immense load, the panel remained structurally sound and did not collapse during the test. It took a severe fire with structural loading, and it demonstrated good structural performance is what our engineers concluded." Ultimately, the testing helped inform the team's understanding of how the panel would perform in an actual building fire. Before the test occurred, there was some modeling done to predict what would happen the demonstration validated the model. "We had already done the fire test, we had already done structural testing and we already had a modeled version of this, a computer simulation, and it pretty much performed how we had modeled it," said Gaglione. "It was interesting to confirm how it performed in real life." After the fire went out on its own, firefighters made sure the fire was fully extinguished so the research team could go in immediately to inspect the state of the panel. "It was really interesting for people to actually see this demonstration, to actually see the panel catch fire but then self extinguish and to see the fire could go out on its own," Davenport noted. "When there is this big fire underneath the panel, the temperature on the top barely changed. So if you had the fire in the unit below you...the temperature of that slab would barely change, it only changed by one or two degrees." The test included two fire scenarios. The first was the contained fire and the second was a less contained fire to explore how far the fire would spread on its own. The second test found that the fire wouldn't spread very far. "During the compartment fire test the temperature at the top surface of the concrete-topped CLT panel rose only a few degrees, even as the under side reached 900 degrees Celsius - demonstrating exceptional resistance to heat transfer," Gaglione noted. The other HTFS panel is still in the testing lab undergoing structural testing and will remain there until the end of the year. Once the research and development portion of the product development is concluded, the results will be published. "The next step is bringing it to market and have an opportunity to build a building with this product," said Gaglione. "We are in a position now where we are prepared to use this in an actual building. We have enough information to implement this technology on a real project." One of the benefits of the R&D project was the collaboration and having the ability to conduct research with other partners, Davenport said. "One of the big things we've learned from this whole process is the importance of cross-industry collaboration. It's been a fulfilling endeavour, and a lot came out of it in terms of value beyond the product itself." Angela Gismondi is a journalist with over 20 years of experience. She has spent the last eight years writing content for the Canadian construction industry. Featured image: EllisDon's Building and Materials Sciences team, with the help of its partners, successfully executed the largest fire demonstration test in the organization's history. (EllisDon)
DIALOG appointed Jie Chen, an award-winning architect and partner, as chair of the Ottawa studio.
Find jobs on Simplify and start your career today
Industries
Company Size
N/A
Company Stage
N/A
Total Funding
N/A
Headquarters
Calgary, Canada
Founded
N/A
Find jobs on Simplify and start your career today