flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

5 Tips on Building with SIPs

5 Tips on Building with SIPs

Structural insulated panels are gaining the attention of Building Teams interested in achieving high-performance building envelopes in commercial, industrial, and institutional projects.


December 17, 2010
This article first appeared in the December 2010 issue of BD+C.

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

  • Do provide adequate support for SIPs when storing them. SIPs should be stored flat and covered.
  • Do study installation drawings before setting panels.
  • Do remove debris from the plate area prior to panel placement.
  • Do provide level and square foundations or floors that support SIP walls.
  • Do provide adequate bracing of panels during erection.
  • Do hold the sill plate back from edge of floor system a half-inch to allow full bearing of SIP OSB facings.
  • Do provide 1½-inch-diameter access holes in plating to align with electrical wire chases in SIPs.
  • Do store sealant and SIP tape in a warm area for best application results in cold weather.
  • Do follow the manufacturer’s recommended joint sealing techniques.
  • Do place sealant along the leading edge of wood being inset into the panel.
  • Do use sealant on wood-to-wood, wood-to-EPS, and EPS-to-EPS connections.
  • Do use SIP tape or equivalent vapor retarder on roof panel joints.
  • Do install proper flashing and sealants around all rough openings and penetrations, as required.
  • Do use only continuous 2Xs, I-beams, and insulated I-beams for spline connections.
  • Do use proper underlayments for roofing and siding. SIP walls are airtight without housewrap, but they do need a drainage plane material.
  • Do install plumbing in interior walls. Furr out interior sections for pipes if necessary.
  • Do provide adequate ventilation to maintain indoor air quality.
  • Do use termite- and mold-resistant materials when required.
  • Don’t leave panels exposed to the elements for long periods of time.
  • Don’t lift SIPs by the top OSB facing or drop SIPs on corners.
  • Don’t install SIPs directly on concrete.
  • Don’t cut wall panel skins horizontally for installation of electrical wiring or overcut the OSB facings for field-cut openings. Use factory-provided chases in SIP core.
  • Don’t be afraid to field trim panels for an exact fit.
  • Don’t install recessed lighting inside the panels.
  • Don’t put plumbing in SIPs.

Related Stories

| Jan 20, 2011

Houston Dynamo soccer team plans new venue

Construction is scheduled to begin this month on a new 22,000-seat Major League Soccer stadium for the Houston Dynamo. The $60 million project is expected to be ready for the 2012 MLS season.

| Jan 20, 2011

Worship center design offers warm and welcoming atmosphere

The Worship Place Studio of local firm Ziegler Cooper Architects designed a new 46,000-sf church complex for the Pare de Sufrir parish in Houston.

| Jan 20, 2011

Construction begins on second St. Louis community center

O’Fallon Park Recreation Complex in St. Louis, designed by local architecture/engineering firm KAI Design & Build, will feature an indoor aquatic park with interactive water play features, a lazy river, water slides, laps lanes, and an outdoor spray and multiuse pool.

| Jan 20, 2011

Community college to prepare next-gen Homeland Security personnel

The College of DuPage, Glen Ellyn, Ill., began work on the Homeland Security Education Center, which will prepare future emergency personnel to tackle terrorist attacks and disasters. The $25 million, 61,100-sf building’s centerpiece will be an immersive interior street lab for urban response simulations.

| Jan 19, 2011

Industrial history museum gets new home in steel plant

The National Museum of Industrial History recently renovated the exterior of a 1913 steel plant in Bethlehem, Pa., to house its new 40,000-sf exhibition space. The museum chose VOA Associates, which is headquartered in Chicago, to complete the design for the exhibit’s interior. The exhibit, which has views of five historic blast furnaces, will feature artifacts from the Smithsonian Institution to illustrate early industrial America.

| Jan 19, 2011

Baltimore mixed-use development combines working, living, and shopping

The Shoppes at McHenry Row, a $117 million mixed-use complex developed by 28 Walker Associates for downtown Baltimore, will include 65,000 sf of office space, 250 apartments, and two parking garages. The 48,000 sf of main street retail space currently is 65% occupied, with space for small shops and a restaurant remaining.

| Jan 19, 2011

Biomedical research center in Texas to foster scientific collaboration

The new Health and Biomedical Sciences Center at the University of Houston will facilitate interaction between scientists in a 167,000-sf, six-story research facility. The center will bring together researchers from many of the school’s departments to collaborate on interdisciplinary projects. The facility also will feature an ambulatory surgery center for the College of Optometry, the first of its kind for an optometry school. Boston-based firms Shepley Bulfinch and Bailey Architects designed the project.

| Jan 19, 2011

San Diego casino renovations upgrade gaming and entertainment

The Sycuan Casino in San Diego will get an update with a $27 million, 245,000-sf renovation. Hnedak Bobo Group, Memphis, Tenn., and Cleo Design, Las Vegas, drew design inspiration from the historic culture of the Sycuan tribe and the desert landscape, creating a more open space with better circulation. Renovation highlights include a new “waterless” water entry feature and new sports bar and grill, plus updates to gaming, poker, off-track-betting, retail, and bingo areas. The local office of San Francisco-based Swinerton Builders will provide construction services.

| Jan 19, 2011

Extended stay hotel aims to provide comfort of home

Housing development company Campus Apartments broke ground on a new extended stay hotel that will serve the medical and academic facilities in Philadelphia’s University City, including the University of Pennsylvania and the Children’s Hospital of Philadelphia. The 11,000-sf hotel will operate under Hilton’s Homewood Suites brand, with 136 suites with full kitchens and dining and work areas. A part of the city’s EnergyWorks loan program, the project aims for LEED with a green roof, low-flow fixtures, and onsite stormwater management. Local firms Alesker & Dundon Architects and GC L.F. Driscoll Co. complete the Building Team.

| Jan 19, 2011

New Fort Hood hospital will replace aging medical center

The Army Corps of Engineers selected London-based Balfour Beatty and St. Louis-based McCarthy to provide design-build services for the Fort Hood Replacement Hospital in Texas, a $503 million, 944,000-sf complex partially funded by the American Recovery and Reinvestment Act. The firm plans to use BIM for the project, which will include outpatient clinics, an ambulance garage, a central utility plant, and three parking structures. Texas firms HKS Architects and Wingler & Sharp will participate as design partners. The project seeks LEED Gold.

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.



Libraries

Reasons to reinvent the Midcentury academic library

DLR Group's Interior Design Leader Gretchen Holy, Assoc. IIDA, shares the idea that a designer's responsibility to embrace a library’s history, respect its past, and create an environment that will serve student populations for the next 100 years.

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