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Design Perspective Q&A with Architect Frano Violich, FAIA
Architect
Frano Violich, FAIAProducts
53-DDDesign Perspective Q&A: The Use of Brick in Contemporary Architecture and Urban Design
Featuring The Goergen Institute for Data Science
and Architect Frano Violich, FAIA
Every brick tells a story. The use of brick and concrete blocks in contemporary architecture lends itself to a range of styles that can be used to tell the story of a structure. The materiality of brick expresses more than just the function of the material, but also the experience of the material within a structure, from concept to construction and process to use.
The Goergen Institute for Data Science at Wegmans Hall was a signature focus of the University of Rochester’s Strategic Plan to leverage information technology in a new educational model for cross-disciplinary research and innovation. The story the brick tells exemplifies the culmination of the building combining science, IT and humanity studies.
The use of brickwork to exemplify materiality in this structure is masterful. A unique pattern inspired by computer coding matrices forms the building’s masonic envelope, which projects from the main building mass to create a dynamic and ever-changing play of light and texture on the façade. The window patterning and ornamental exterior brickwork are inspired by punch cards and computer coding matrices to provide a signature façade that reflects the research conducted within the building. The projecting bricks create a dynamic interplay of light and shadow across the façades that change throughout the day and the seasons.
In this Q&A, architect Frano Violich, FAIA of Kennedy & Violich Architecture, Ltd. discusses the goals, challenges, successes and use of brick in the design of his award-winning architectural project with The Goergen Institute. Violich explores brick as one of the materials that designers and builders in the project used as conceptual elements to bring the language of code to life.
Q. What were the goals of the project?
A. There were three primary goals. The first was to make the School of Engineering and Applied Science a destination that would attract students from the Sciences, Arts, and Humanities in a place that was welcoming and collaborative in spirit. The second was to create a program that was multidisciplinary, where these same students could work together on project-based research in spaces that were open 24/7, were reconfigurable and filled with natural light. The third was to create a building that, by design, through its spaces and materials would express all of this both inside and out.
Q. What story is being told with this building?
A. We wanted the building to, in a way, tell the story itself. This was one of the first ground-up buildings dedicated to Data Science and as a new curriculum major with its own Institute we felt it was important for the building to express what data science is, which is basically how you make sense of all the data that’s out there floating in the ether. The ways in which this data can be used to research science, art, and languages is why it’s become such a popular major and career path today. How could we use, or “mis-use,” a brick the same way, like a pixel, and take that pixel and push it in and pull it out to play with light, shadows and so it begins to look like a language — like a streaming binary-coded language?
Q. What were the challenges, and why?
A. Probably the biggest was siting the building. The challenge was that while a typical quad is created by four buildings that form an outdoor “room,” this quad only had three, with an active campus road on the fourth side. The only solution to making this perform like a quad was to site the new building on the street which is not usually recommended. Under each street are all sorts of connected systems to other buildings — sewer, electricity and water. But in the end it solved a lot of problems creating an open space that is car-free, welcoming to pedestrians, and is a campus destination.
Q. What were the successes, and what do you want to celebrate about this project?
A. I like how this project has contributed to the campus by providing a safe zone away from cars and noise where anybody can go. I like the way the project uses the topography. The site slopes gently toward the Genesee River so we followed it with an interior street-like space and just let the spaces get higher and higher along the way. At the very end we tucked in a large auditorium and bleacher seating that overlook the river. Also, how the light plays across the masonry. In winter or late afternoons, you can get 8-foot shadows from protruding bricks cast horizontally from the sun. But at noon on a winter day, the shadow of the brick could be just 8 inches. It’s like a sundial that tells time!
Q. Tell us about the bricks used in this project.
A. We used a sand mold brick (Glen-Gery 53-DD) which was specified by the University standards. Sand mold bricks are unique since, unlike the majority of the bricks manufactured in the US, they are individually set in molds and fired and cool differently depending on where they are placed in the kiln. Some are darker, lighter, and spotty. No two bricks are alike! It gives them a velvety texture, a certain irregular character; each one is a little different. Historically, the selection of brick has always been important to architects.
In the words of Violich, “materiality is an opportunity where you can arrange and configure the materials to raise questions and to spark someone’s imagination.”
Goergen Institute for Data Science at Wegmans Hall is featured within the North American debut issue of Materiality. The publication is a sharing of ideas and celebration of architecture and design that shares the commonality of brick. Request your complimentary copy here.
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Materiality 2021
Explore the use of brick and concrete block in contemporary architecture, as well as issues of urban density and design. In this latest volume, you will find a collection of peer-reviewed projects from some of the most highly respected architects in Australia and the USA, as well as commentary in the form of illustrated essays by architects and academics. This work is intended to provoke discussion and interest among those in the industry, the general reader, and students of architecture and design.
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La Clairiere
Princeton, New Jersey
Architect
Studio PHH ArchitectsDistributor
Church BrickMason
Michael Antolino ConstructionProducts
Black Roman MaximusThe La Clairiere residence is located in Princeton, New Jersey. La Clairiere features the Roman Maximus brick in black with wood accents that dissolve in the trees from a distance and appears when approaching the residence through the wooden landscape.
The house is designed as two solid masses carefully positioned on the landscape, each containing an assortment of private spaces; the void between these two shifted volumes allows the landscape to run through its core and encloses all the communal activities.
Two large brick façade sectors stand tall and attach to the glass core. These brick sectors have windows and balconies to provide uniformity from the exterior yet uniqueness for each interior space. These volumes are built out of Black Roman Maximus brick chosen for their highly textured, horizontal proportions and the varied lengths that break up any continuity in vertical joints on the façade. The individual unit of brick, which provides depth from close, becomes a part of a larger texture of subtle horizontal grain, forming the mass of the volumes.
With black sills and headers and deep brick returns, the window details emphasize the walls’ thickness and provide privacy for the spaces within. These two blocks contain seven bedrooms, the master suite, garage, office, mudroom, and laundry room. The custom windows are carefully calculated to provide natural light and views while maintaining a sense of privacy and protection.
In sharp contrast to the solid Black Roman Maximus brick, the wood-lined space is capped by large window walls at each end, providing views over the nearby lake. The large glass core of the home includes the kitchen, dining, living rooms, and mezzanine offering elevated views to the lake.
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Unearthing the Timeless Choice: Genuine Clay Brick Pavers vs. Concrete
In the realm of outdoor landscaping and hardscaping, choosing the right material for pathways and outdoor patios can significantly impact both the aesthetic appeal and durability of your space. Among the myriad of options available, natural clay brick pavers and concrete stand out as two prominent contenders. While concrete might seem like the modern choice, clay brick pavers offer a host of advantages that make them a preferred option for many homeowners. Let's delve into the advantages of using clay brick pavers over concrete pavers:
Natural Aesthetic Appeal
Clay brick pavers exude a charm and warmth that concrete often struggles to match. Their earthy tones and natural textures add to any outdoor space, seamlessly blending with various architectural styles and landscapes. Whether you're aiming for a rustic courtyard or a contemporary patio, clay brick pavers enhances the overall aesthetic.
Color Retention and Fade Resistance
One notable advantage of genuine clay brick pavers is their exceptional color retention. Unlike concrete, which may fade or discolor over time due to exposure to sunlight and environmental elements, color-through clay brick pavers maintain their rich hues and vibrancy for decades. This enduring color stability ensures that your outdoor surfaces retain their visual appeal year after year with minimal maintenance.
Durability and Strength
Clay brick pavers are remarkably durable and able to withstand heavy foot traffic and adverse weather conditions. Fired at high temperatures during the manufacturing process, clay bricks acquire strength and resilience, making them an ideal choice for high traffic areas like walkways and patios.
Permeability and Drainage
Clay brick pavers offer superior permeability compared to concrete, allowing water to infiltrate the surface and naturally replenish the soil below. This permeable quality promotes efficient drainage, reducing the risk of standing water, erosion, and waterlogging in your outdoor spaces. By facilitating proper water management, clay brick pavers contribute to a healthier and more sustainable landscape environment.
Environmental Sustainability
Clay brick pavers are inherently eco-friendly, being made from natural clay materials that are abundant and renewable. The manufacturing process involves minimal energy consumption and produces little waste, further reducing their environmental footprint. Additionally, their longevity and recyclability make them a sustainable choice for eco-conscious homeowners seeking to minimize their impact on the planet.
Timeless Value and Longevity
Beyond their practical benefits, clay brick pavers offer a timeless value that transcends trends and fads. Their enduring beauty and durability ensure that your outdoor spaces retain their allure for generations to come, adding enduring value to your property. Whether you're enhancing your home's curb appeal or creating inviting outdoor living areas, investing in clay brick pavers is a decision that pays dividends in both aesthetics and functionality.
While concrete may have its merits, clay brick pavers emerge as a superior choice for those seeking durability, aesthetic appeal, and environmental sustainability in their outdoor landscaping projects. With their timeless charm, strength, and versatility, clay brick pavers elevate the beauty and functionality of outdoor spaces while standing the test of time. Whether you're embarking on a new landscaping endeavor or renovating existing outdoor areas, choosing clay brick pavers is a decision that promises enduring satisfaction and lasting value.
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