flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

Seizing the Daylight with BIPV Glass

Sponsored Content Glass and Glazing

Seizing the Daylight with BIPV Glass

Glass has always been an idea generator. Now, it’s also a clean energy generator.


By Vitro Architectural Glass | October 1, 2021
BIPV glass modules can be used with virtually any glass substrate or low-e coating to achieve desired aesthetics. Photo courtesy of Vitro Architectural Glass
BIPV glass modules can be used with virtually any glass substrate or low-e coating to achieve desired aesthetics. Photo courtesy of Vitro Architectural Glass

Around the world, major government and social initiatives are driving demand for sustainable building design and CO2-free energy. In recent years, as the volume of solar cells being manufactured and installed in buildings has increased, the cost has lowered significantly. 

The United States government has supported this effort through the Solar Investment Tax Credit (ITC). Since the program was implemented in 2006, the residential and commercial solar ITC has helped spark 10,000% growth in the U.S. solar industry, with an average annual growth of 50% over the last decade alone. The ITC currently offers a 26% tax credit for solar systems on commercial properties and can be applied to customer-sited commercial solar systems. The ITC credit can apply to aggregate investment in both energy-generating glass panels and electrical components.  

Like sustainability, design expectations for commercial buildings are also at an all-time high. In glass specifications, today’s buildings can demand any combination of solar control performance, ultimate transparency, tinted aesthetics and colorful treatments. 

Manufacturers like Vitro Architectural Glass have responded with building-integrated photovoltaic (BIPV) glass products like Solarvolt™ BIPV.

Where to Use BIPV Modules

Building-integrated photovoltaic (BIPV) glass modules have emerged as a solution to satisfy these challenges — CO2-free energy generation and design utility — while simultaneously replacing conventional building envelope materials, such as wall cladding or roofing. In fact, BIPV glass can be used to enhance virtually any exterior element: balustrades and balconies, skylights, roof elements, carports and more. 

BIPV glass modules can be integrated into most standard glass framing and building envelope systems. Photo courtesy of Vitro Architectural Glass
BIPV glass modules can be integrated into most standard glass framing and building envelope systems. Photo courtesy of Vitro Architectural Glass

Most notably, BIPV glass modules like Solarvolt™ BIPV can perform the functions of classic glass façades, vision glazing and spandrel glass. In these applications, the solar module replaces conventional building panels and functions as external weather protection for the façade. Tailor-made solar modules comply with all design requirements for glass façades and can be installed with most conventional glass framing systems. For structural glazing, modules utilizing tempered glass with inter-window strips can be integrated into building envelopes and roof surfaces adjacent to heated rooms.

BIPV also can be used for sunshading elements, not only capturing sunlight to generate energy, but also protecting against the sun and glare. BIPV overhead glazing, canopy structures and skylights can harness “solar painting,” a term often used to refer to the interplay of light and shadow resulting from the spacing between individual solar cells. In addition to generating power, BIPV glass balustrades and balconies can highlight the architectural character of buildings and their surroundings while meeting requirements for safety or accident-proof glazing at the same time. 

New Design Possibilities

A BIPV module typically consists of solar cells laminated between two glass lites — these can be comprised of virtually any glass product and with any high-performance low-emissivity (low-e) coating to provide yet another measure of environmental performance. 

This means BIPV can meet a range of design goals. Designers can realize dynamic, colorful concepts with backpainted BIPV spandrel glass. Blue, green, gray and bronze tinted glasses can also help realize vibrant designs. For ultimate transparency and maximum solar cell performance, low-iron glasses with high visible light transmittance (VLT) also can be used. In fact, Solarvolt™ BIPV modules are compatible with every Vitro Glass product and substrate, including its historic Solarban® family of low-e coatings and Starphire Ultra-Clear® glass. 

Solar cells are often used for “solar painting,” leveraging light and shadow. Photo courtesy of Vitro Architectural Glass
Solar cells are often used for “solar painting,” leveraging light and shadow. Photo courtesy of Vitro Architectural Glass

The BIPV panels’ solar cells themselves can be arranged in rows, alternating patterns and other configurations. Multiple photovoltaic (PV) crystalline silicone technologies also can impact the appearance of the solar cells and their power generation performance. While monocrystalline PV renders a black appearance on solar cells with maximum energy-generation performance, polycrystalline PV delivers a striking blue appearance with slightly reduced performance. For a patterned appearance and higher visible light transmission while retaining some of the energy generation benefits of monocrystalline PV, monocrystalline PV strips are also available.

For decades, glass has been seen as one of the world’s most versatile, beautiful and sustainable building materials. Now, glass is more than just an idea generator — it’s a power generator. Today, glass can collect clean energy, compounding the product’s powerful benefits. 

To learn more about Solarvolt™ BIPV glass modules, visit www.vitrosolarvolt.com.

Related Stories

Cultural Facilities | Jul 16, 2015

Louisville group plans to build world's largest disco ball

The sphere would more than double the size of the current record holder.

Glass and Glazing | Jun 4, 2015

Construction of record breaking glass-bottom bridge nearly complete in China

Designed by Israeli architect Haim Dotan, the white bridge is meant to look as if it is “disappearing into the clouds.”

Glass and Glazing | Mar 15, 2015

Building tech breakthrough: Vacuum insulated panels keep University of Alaska students cozy in sub-zero temps

In a first-of-its-kind curtain wall installation, triple-pane VIP glass panels provide an astonishing R-40 insulation value at the university's new student union in Fairbanks. 

Sponsored | Fire-Rated Products | Feb 12, 2015

State of the fire rated glazing industry

Many years have passed since my days as the “Wired Warrior,” writes SAFTI FIRST's Bill O'Keeffe. Every year at this time I reflect on just how far the fire-rated glazing industry has come.

Sponsored | | Jan 27, 2015

High-performance insulation brings design freedom, energy efficiency to urban redevelopment project

When developers of Uptown Bay City (Bay City, Mich.) began transforming the former industrial site into a mixed-use, self-sustaining riverfront community, they faced a design challenge. How could they incorporate greater expanses of glass to maximize views of the waterfront without the trade-off in energy efficiency?

Sponsored | | Dec 30, 2014

First-class glass: Designing for fire safety in schools

As more students enter the school system each year, designing for fire safety in educational facilities has never been more critical. Fire-rated glazing can be a key part of the solution.

Sponsored | | Dec 11, 2014

Fire rated glass contributes to Salt Lake City Public Safety Building’s sustainable and resilient design goals

One of the most exciting new buildings to open its doors this year is the Salt Lake City Public Safety Building Salt Lake City, Utah. This $125 million, 335,000-sf facility blends sustainability and resiliency under one roof. SPONSORED CONTENT

Sponsored | Fire-Rated Products | Dec 11, 2014

Fire rated glazing provides visual appeal and safety to garages

When it comes to designing parking garages, providing vision and transparency might not be the priority due to fire rated code requirements – but keen architects with grand visions see opportunities rather than restrictions, thanks to the advances in fire rated glass and framing technology.

boombox1
boombox2
native1

More In Category



Glass and Glazing

The next generation of thermal glazing: How improving U-value can yield energy savings and reduce carbon emissions

The standards for energy-efficient construction and design have been raised. Due to the development of advanced low-e coatings for the interior surface and vacuum insulating technologies, architects now have more choices to improve U-values wherever enhanced thermal performance is needed to create eco-friendly spaces. These options can double or even triple thermal performance, resulting in annual energy savings and a positive return on carbon.


Curtain Wall

7 steps to investigating curtain wall leaks

It is common for significant curtain wall leakage to involve multiple variables. Therefore, a comprehensive multi-faceted investigation is required to determine the origin of leakage, according to building enclosure consultants Richard Aeck and John A. Rudisill with Rimkus. 

halfpage1

Most Popular Content

  1. 2021 Giants 400 Report
  2. Top 150 Architecture Firms for 2019
  3. 13 projects that represent the future of affordable housing
  4. Sagrada Familia completion date pushed back due to coronavirus
  5. Top 160 Architecture Firms 2021