Typically composed of a layer of EPS, XPS, or polyurethane foam sandwiched between oriented strand board panels, structural insulated panels can provide R-values for walls, floors, and roofs ranging from 14 to 58, depending on the panel thickness and composition. SIPs also are manufactured to spec, which can result in reduced waste and potential labor savings.
First-time users may find working with SIPs somewhat worrisome, so we asked Frank Kiesecker, of SIP manufacturer ACH Foam Technologies, Denver, to provide some prescriptive advice that even experienced SIP users could benefit from.
1. Pre-plan electrical and equipment needs. Since SIPs are manufactured to meet the project’s specifications, it’s important to plan for electrical chases in advance to prevent time-consuming and sometimes costly modifications during installation. For example, SIP facings should never be cut horizontally for the installation of electrical wiring; doing so will compromise structural performance.
In addition, during the design phase, it’s important to determine whether there are any equipment needs for the installation of the panels. If the project specifies roof panels or wall or floor panels larger than 8x8 feet, a forklift or crane may be required for installation.
2. Organize the panels for installation. Proper storage, weather protection, and handling will make the installation process more efficient. Store the panels on a level space, no closer than three inches to the ground. Organize the panels by the sequence in which they will be installed (i.e., separate the first-floor panels from the second-floor ones), and make sure they’re covered with a breathable protective tarp to keep them dry.
3. Install the panels properly and seal them tight. SIPs need to be fully supported during installation. The panels slip over a wall plate, which needs to be set half an inch from the building edge to ensure that the panels are fully supported. Also, make sure to set the panels in place in the correct order: start in the corners or valleys and work outward. Once installed, all panel joints and voids must be properly sealed using adhesive or SIP tape to minimize air leakage and maintain the structure’s long-term durability.
4. Protect SIPs from water penetration. Once SIPs have been installed and sealed, weather protection such as housewrap is required to prevent moisture deterioration. Follow the housewrap manufacturer’s installation guidelines, and make sure to flash all penetrations. Over time, windows will leak some water at the sill. Use flashing under and around the units to direct water away from the wall structure.
5. Right-size your HVAC system. One common mistake, says Kiesecker, is underestimating the high insulating and air-sealing properties of SIPs when selecting an HVAC system. SIPs allow for smaller HVAC equipment. When working with an HVAC contractor, make sure they take into account an estimate for lower levels of air infiltration. Proper HVAC sizing is critical because an underused system will fail to reach a steady operating rate, resulting in short cycling, which is less energy efficient and requires more maintenance.
Other important factors to consider when determining HVAC sizing:
- Size of the structure (each floor should be analyzed individually)
- Orientation of building
- Type of wall construction, and associated R-value
- Window and door specs, including the number of windows and doors and their location, insulation value, and fenestration rating
- Duct location (i.e., in heated space, unheated space, attic, crawl space, etc.)
- Amount of air infiltration.
SIPs Do’s and Don’ts
|
Related Stories
| Oct 19, 2011
THOUGHT LEADER: Samuel S. Unger, RA, MCR, SLCR, MBA, is the Americas Real Estate Leader for Ernst & Young, LLP
Samuel S. Unger, RA, MCR, SLCR, MBA, is the Americas Real Estate Leader for Ernst & Young, LLP, Atlanta. He also serves as president of the CoreNet Global Atlanta chapter. In addition to managing 6.8 million square feet of real estate in North and South America, his responsibilities include real estate strategy for area practices, management of external professional alliances, requirements definition, business case development and approval, real estate negotiation and lease development, and oversight of construction projects for the portfolio. He holds a bachelor’s degree from Harvard College, an MLA and MArch from the University of Pennsylvania, and an MBA from Temple University.
| Oct 19, 2011
Another drop for Architecture Billings Index
Positive conditions seen last month were more of an aberration.
| Oct 19, 2011
System for installing grease duct enclosures achieves UL listing
Updated installation results in 33% space savings.
| Oct 18, 2011
Michel Bruneau wins 2012 AISC T.R. Higgins Award
The AISC T.R. Higgins Lectureship Award is presented annually by the American Institute of Steel Construction (AISC) and recognizes an outstanding lecturer and author whose technical paper(s) are considered an outstanding contribution to the engineering literature on fabricated structural steel.
| Oct 18, 2011
Dow Building Solutions invests in two research facilities to deliver data to building and construction industry
State-of-the-art monitoring system allows researchers to collect, analyze and process the performance of wall systems.
| Oct 18, 2011
Architectural leaders join Gehry to form strategic alliance
Alliance dedicated to transforming the building industry through technology.
| Oct 18, 2011
St. Martin’s Episcopal School expands facilities
Evergreen commences construction on environmentally sustainable campus expansion.
| Oct 17, 2011
THOUGHT LEADER: Allan Bilka, Senior Staff Architect and Secretariat to the IGCC
Allan Bilka, RA, is a Senior Staff Architect and Secretariat to the International Green Construction Code (IgCC) with the International Code Council, based in the ICC’s Chicago district office. He also serves as staff liaison to the ICC-700 National Green Building Standard. He has written several ICC white papers on green building and numerous green-related articles for the ICC. A registered architect, Bilka has over 30 years of combined residential design/build and commercial consulting engineering experience.