flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

9 Rooftop Photovoltaic Installation Tips

9 Rooftop Photovoltaic Installation Tips

Two top roofing experts offer helpful advice on pulling off rooftop PV projects without a hitch.


By By Dave Barista, Managing Editor | August 11, 2010
This article first appeared in the 200909 issue of BD+C.
Workers inspect a rooftop PV installation. Improper handling, storage, or
installation of the PV panels can cause damage to the roof.

The popularity of rooftop photovoltaic (PV) panels has exploded during the past decade as Building Teams look to maximize building energy efficiency, implement renewable energy measures, and achieve green building certification for their projects.

However, installing rooftop PV systems—rack-mounted, roof-bearing, or fully integrated systems—requires careful consideration to avoid damaging the roof system. Improper handling, storage, or installation of the PV panels can cause damage to the roof, which can lead to moisture intrusion, wind uplift problems, and even structural damage. In addition, rooftop PV systems should be designed with future maintenance, roof repairs, and fire-suppression efforts in mind.

BD+C asked a pair of top-notch roofing experts to identify the most critical design, construction, and installation considerations. They offer the following tips:

Photovoltaic arrays should be confi gured to allow access for future maintenance, roof repairs, and fire-suppression efforts.

1. Verify the fire rating of your rooftop photovoltaic system.Most rooftop PV systems qualify for a Class C fire rating, while most of the roof coverings over which these systems are installed are fire rated Class A or B, says Philip D. Dregger, PE, RRC, principal with roof and waterproofing consultant Technical Roof Services Inc., Concord, Calif.

Dregger says the fire rating, especially spread of flame, is critical, especially for roof-bearing and rack-mounted systems. For instance, Building Teams may need to take steps like incorporating half-inch gypsum board into the assembly to obtain the proper fire rating.

For sloped roofs, Dregger says it is especially important to confirm that the required fire classification is available at the slope required. “For instance, standing-seam metal roofs routinely qualify as Class A fire-resistant on unlimited slopes, whereas the same standing-seam metal roofs covered with thin-film, flexible PV panels have significant slope restrictions,” he says.

2. Flashing detail is critical for maintaining the warranty. Flashing detail work must be performed by a contractor approved by the roof membrane manufacturer, says Mike Ennis, technical director of the Single Ply Roofing Industry (SPRI), Waltham, Mass., which recently convened a task force to identify key rooftop PV installation issues. “It's not so much a difference in the details as it is that the details are properly completed,” says Ennis.

Building owners must get such permission in advance from the roofing manufacturer or the warranty may be voided. The main concern, says Ennis, is keeping a record of alterations to the roof system. “For example, if a manufacturer gets a leak call immediately after an alternation is completed, they know where to start looking for the leak,” he says.

3. PV systems must be properly marked. Marking is needed to provide emergency responders with appropriate warning and guidance with respect to working around and isolating the solar electric system. Proper marking helps responders identify energized electrical lines that connect the solar modules to the inverter, according to the California Department of Forestry and Fire Protection's (CDFFP) Solar Photovoltaic Installation Guideline (www.osfm.fire.ca.gov/pdf/reports/solarphotovoltaicguideline.pdf).

Materials used for marking must be weather resistant and should be placed adjacent to the main service disconnect in a location clearly visible from the location where the lever is operated.

4. Make sure to protect the roof system while handling PV panels. Damage to roof systems, especially single-ply membranes, often occurs during the handling of the PV panels. SPRI's Ennis offers four tips for avoiding roof system damage while moving and storing PVs:

  • Store boxed PV units over joists to avoid deflecting the metal deck.

  • If boxed units are palletized, place a cushion layer of plywood between the pallet and the roof surface.

  • Do not point-load the roof surface by placing the corner of a hard panel directly on the surface.

  • Use moving equipment fitted with pneumatic tires to transport equipment and materials over the finished roof surface.

5. In retrofit projects, consider roof life before installing PVs. Due to potentially high costs associated with temporarily disconnecting and moving PV panels to execute roof repairs, Building Teams should assess the remaining life of the existing roof covering as part of a PV project, says Dregger.

He says serious consideration should be given to replacing the existing roof covering as part of a PV project. At the very least, says Dregger, you should investigate and repair roof leaks and perform any preventive maintenance work, even if it is not scheduled to be performed for a couple of years.

6. Pay close attention to the location of direct current (DC) conductors. Conduit, wiring systems, and raceways for photovoltaic circuits should be located as close as possible to the ridge or hip or valley and from the hip or valley as directly as possible to an outside wall to reduce trip hazards and maximize ventilation opportunities, according to the CDFFP's installation guidelines.

DC combiner boxes should be located such that conduit runs are minimized in the pathways between arrays. To limit the hazard of cutting live conduit in venting operations, DC wiring should be run in metallic conduit or raceways when located within enclosed spaces in a building and should be run (to the maximum extent possible) along the bottom of load-bearing members.

7. Provide for fall protection in certain cases. In retrofit projects, if the PV modules direct foot traffic to within six feet of unprotected roof edges or roof openings, fall protection provisions, such as guardrails and roof hatches, are a must, says Dregger.

8. Configure PV arrays to allow access for future maintenance, roof repairs, and fire-suppression efforts. CDFFP's installation guidelines recommend a minimum of six feet of clearance along the perimeter of the roof and at least four feet around roof access hatches and skylights. Also, pathways should be provided along the centerline of both axes of the roof. Locate these pathways over structural members.

9. Make sure integrated PV panels can handle high winds. For semi-rigid PV panels adhered over mechanically attached single-ply roofs, make sure that the PV panels can accommodate billowing of the singly-ply membrane during high-wind conditions without incurring damage, such as cracking, splitting, or rupture. Dregger recommends installing air retarders and supplemental membrane fasteners around each PV panel to help avoid damage.

Related Stories

Healthcare Facilities | Jun 14, 2023

Design considerations for behavioral health patients

The surrounding environment plays a huge role in the mental state of the occupants of a space, especially behavioral health patients whose perception of safety can be heightened. When patients do not feel comfortable in a space, the relationships between patients and therapists are negatively affected.

Engineers | Jun 14, 2023

The high cost of low maintenance

Walter P Moore’s Javier Balma, PhD, PE, SE, and Webb Wright, PE, identify the primary causes of engineering failures, define proactive versus reactive maintenance, recognize the reasons for deferred maintenance, and identify the financial and safety risks related to deferred maintenance.

University Buildings | Jun 14, 2023

Calif. State University’s new ‘library-plus’ building bridges upper and lower campuses

A three-story “library-plus” building at California State University, East Bay (CSUEB) that ties together the upper and lower campuses was recently completed. The 100,977-sf facility, known as the Collaborative Opportunities for Research & Engagement (“CORE”) Building, is one of the busiest libraries in the CSU system. The previous library served 1.2 million visitors annually.

Higher Education | Jun 14, 2023

Designing higher education facilities without knowing the end users

A team of architects with Page offers five important factors to consider when designing spaces for multiple—and potentially changing—stakeholders.

Resiliency | Jun 14, 2023

HUD offers $4.8 billion in funding for green and resilient building retrofit projects

The Department of Housing and Urban Development (HUD) recently released guidelines for its Green and Resilient Retrofit Program (GRRP) that has $4.8 billion for funding green projects.

Arenas | Jun 14, 2023

A multipurpose arena helps revitalize a historic African American community in Georgia

In Savannah, Ga., Enmarket Arena, a multipurpose arena that opened last year, has helped revitalize the city’s historic Canal District—home to a largely African American community that has been historically separated from the rest of downtown.

Building Materials | Jun 14, 2023

Construction input prices fall 0.6% in May 2023

Construction input prices fell 0.6% in May compared to the previous month, according to an Associated Builders and Contractors analysis of the U.S. Bureau of Labor Statistics’ Producer Price Index data released today. Nonresidential construction input prices declined 0.5% for the month.

Mass Timber | Jun 13, 2023

Mass timber construction featured in two-story mixed-use art gallery and wine bar in Silicon Valley

The Edes Building, a two-story art gallery and wine bar in the Silicon Valley community of Morgan Hill, will prominently feature mass timber. Cross-laminated timber (CLT) and glulam posts and beams were specified for aesthetics, biophilic properties, and a reduced carbon footprint compared to concrete and steel alternatives.

Mixed-Use | Jun 12, 2023

Goettsch Partners completes its largest China project to date: a mixed-used, five-tower complex

Chicago-based global architecture firm Goettsch Partners (GP) recently announced the completion of its largest project in China to date: the China Resources Qianhai Center, a mixed-use complex in the Qianhai district of Shenzhen. Developed by CR Land, the project includes five towers totaling almost 472,000 square meters (4.6 million sf). 

Engineers | Jun 12, 2023

Stantec to acquire Environmental Systems Design

Stantec, a global leader in sustainable design and engineering, has signed an agreement to acquire Environmental Systems Design, Inc. (ESD), a 270-person engineering firm headquartered in Chicago. Founded in 1967, ESD has built a reputation for excellence and innovation in high-performance design with a roster of industry-leading clients. The terms of the transaction are not disclosed.

boombox1
boombox2
native1

More In Category

Urban Planning

Bridging the gap: How early architect involvement can revolutionize a city’s capital improvement plans

Capital Improvement Plans (CIPs) typically span three to five years and outline future city projects and their costs. While they set the stage, the design and construction of these projects often extend beyond the CIP window, leading to a disconnect between the initial budget and evolving project scope. This can result in financial shortfalls, forcing cities to cut back on critical project features.




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