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The Answer = to=20 Blowing in the Wind
SPF = roofing holds it=20 together during hurricane-force storms

This = article=20 originally appeared in Roofing Contractor,=20 2002
10=20 years ago, Hurricane Andrew wrought = unprecedented=20 economic devastation on the northwestern = Bahamas, the=20 southern Florida peninsula, and south-central = Louisiana.=20

According=20 to the National Hurricane Center, the hurricane = caused=20 over $26 billion damage in the United States. = Before=20 September 11th, Hurricane Andrew was the most = expensive=20 disaster in U.S. history. It is still the = costliest=20 natural disaster the country has ever = experienced.=20

The=20 insurance industry identifies roofing as the = primary=20 contributor to disaster-related insured losses. = The roof=20 and exterior glass are the most vulnerable parts = of the=20 building envelope in any wind event and because = a=20 damaged roof can expose the building interior - = and its=20 inhabitants - to the storm's wrath, the total = cost of a=20 roof blow off can rise as quickly as the storm's = own=20 momentum.

Since=20 Andrew's devastation, many materials = manufacturers and=20 members of the roofing industry, along with = members of=20 the insurance industry, code officials, = architects and=20 consultants have invested countless dollars and = hours=20 identifying ways to mitigate the damage caused = by roof=20 failure during wind events.

The reason=20 for roof failure can often be found in the very = design=20 of membrane roof systems. Wind often grabs the = edge=20 flashing or coping and peels back portions of = the=20 membrane.

In=20 comparison, Spray Polyurethane Foam (SPF) has = gained=20 recognition with industry experts for its = ability to=20 withstand high wind uplift and blow off because = its=20 smooth, continuous surface grips the deck and = walls. It=20 offers superior adhesion with no need for = fasteners and=20 there are no joints or edges for the wind to = grab onto.=20 Lightweight yet rigid, it provides extra = strength to=20 help the roof stand up to the forces of nature. =

"SPF has=20 tenacious adhesion and there's no way it will = ever blow=20 off," says Richard Fricklas, founding father and = former=20 technical director of the Roofing Industry = Educational=20 Institute (RIEI). "It sticks to anything with = very high=20 pull-off strength. The minimum strength of SPF = would be=20 about 10-lbs/in2 and most blow offs concern = lbs/ft2.=20 Even if the blow off strength was only 1 lb/in2, = by the=20 time you multiply it by 144 square inches in a = square=20 foot, that would still be 144 lbs/ft2 of wind = uplift=20 resistance."

Hurricane=20 Andrew struck southern Dade County, Florida, = especially=20 hard, with violent winds characteristic of a = Category 4=20 hurricane on the Saffir/Simpson Hurricane Scale. = In Dade=20 County alone, the forces of Andrew resulted in = 15 deaths=20 and up to one-quarter of a million people were = left=20 temporarily homeless. An additional 25 lives = were lost=20 in Dade County from the indirect effects of = Andrew.=20

When it was over, Thomas L. Smith of = TLSmith=20 Consulting, and then research director for the = National=20 Roofing Contractors Association, went to Florida = to see=20 first-hand how SPF had weathered the storm. =

"Two things=20 stood out in my mind after my field studies - = one was=20 SPF's adhesion and the other its ability to = accommodate=20 wind-born debris or 'missiles'. A missile will = tear into=20 or gouge out the foam, but the roof will not = leak.=20 Typically there are a lot of missiles flying = around=20 during a hurricane so that's a significant = advantage,"=20 Smith reports.

In his=20 published report of his findings post-Andrew, = Smith=20 provides a detailed assessment of the wind = performance=20 of 11 SPF roofs. Three of the buildings were in = areas of=20 very high winds, one in an area of high winds = and seven=20 in areas of moderately high winds.

Two of the=20 three in the very high wind zones were SPF over = old BUR,=20 the third SPF over thin-shell concrete. Two of = the three=20 roofs sustained minor damage from missiles. One = of the=20 SPF over a BUR roofs experienced peeling that = did not=20 progress beyond an area of missile impact. =

"Often foam=20 is applied over existing roof coverings and I = did see a=20 number of buildings in South Florida where this = was the=20 case," says Smith. "If the underlying roof is = weak and=20 it lifts up, it will take the SPF with it. But = it=20 appeared to me, although it's difficult to = quantify,=20 that the foam acted as a stiffener, so when the = original=20 roof lifted up the failure did not propagate as = far into=20 the field of the roof. You might have a corner = peeled=20 back, but the corner area would be limited = because of=20 the stiffening influence of the foam. Had the = foam not=20 been applied there, I think the roof failure = would've=20 been much larger. I feel very strongly about = that, but=20 it is very hard to quantify."

Other=20 buildings with traditional roofing systems in a = 200-foot=20 radius surrounding the SPF over a BUR roof that = peeled=20 suffered significant damage including gable end = wall=20 failure and collapsed trusses, as well as = blown-off=20 sheathing panels and asphalt shingles. One = building had=20 reportedly had its BUR blown off.

Smith says=20 that if SPF is going to fail during a wind = event, it is=20 because the surface it has been applied to has = failed.=20

"Typically,=20 the foam is not going to lift unless whatever it = is=20 sprayed to lifts," he says. "If the deck itself = is not=20 adequately attached, everything above it could = just come=20 off the supporting joists or beams, so that = would be one=20 failure mode. It could also fail if an element = between=20 the deck and the foam doesn't have good adhesion = or if=20 the SPF is applied to an existing membrane that = is not=20 adequately attached."

In 1990 a tornado ripped through = Plainfield,=20 Illinois killing approximately 30 people. When = Smith=20 arrived on the scene to conduct his field study = of the=20 damage, he found a church left standing while = all around=20 it had been levelled (see cover photo). The = concrete=20 building had been completely covered with SPF. =

"The SPF=20 had been pretty beaten up by debris and was = plastered=20 with missiles, but there was no place where the = foam had=20 blown off," he says. "There was a square foot = gouge cut=20 out of the foam in one spot, but it hadn't gone = all the=20 way through to cause a leak, and the foam did = not peel=20 off."

Failure of=20 metal edge flashing is the most common failure = mode for=20 membrane roof systems. Wind blow off is = typically=20 initiated by the metal edge flashings not being = strong=20 enough to resist the load, causing the membrane = to lift=20 and peel back. Smith reports that based on his=20 investigations, SPF roofs are not as susceptible = to this=20 failure mode. He says he believes the foam acts = as a=20 stiffener along the horizontal edge of the = flashing when=20 the vertical flange starts to lift and roll up, = offering=20 less of a tendency to lift

"I have=20 never observed a situation where the edge = flashing=20 lifted and peeled and took the foam with it. All = of the=20 uplift failures I've observed with foam have = been where=20 we've had the underlying substrate go," he says. = "So I=20 think if we did not have an existing membrane = and were=20 applying SPF to a deck with an edge flashing, = we'd want=20 to attach the flashing with great care, but I = don't=20 think it's as likely to have an = edge-flashing-induced=20 failure with foam as with other membrane types." =

Tom Camp=20 has been a roofing contractor serving the state = of=20 Florida for over 20 years. He's seen the damage = a=20 hurricane can do to a roof. After Hurricane Erin = struck=20 in 1995, his company, Tech Systems Inc., = received a call=20 from the Paradise Beach Club condominiums in = Satellite=20 Beach. The 75 mph winds of the Category 1 = hurricane had=20 nearly ripped the 20-year-old BUR off the = 48-unit=20 oceanfront complex.

Forced to=20 choose a replacement, the club managers also = sought to=20 solve their history of leak problems and poor = energy=20 efficiency. The answer was SPF, with its high = wind=20 uplift capabilities, seamless surface, high = insulation=20 R-value and quick installation.

"With=20 pressing concerns for the comfort and safety of = the=20 tenants, speed of installation was almost as = important=20 as water tightness and energy efficiency," says = Camp.=20 "We were able to provide them with an initial=20 leak-resistant roof stage in just a couple of = days."=20

Camp=20 reports that over the years, the SPF roof at = Paradise=20 Beach has survived at least three subsequent = hurricanes=20 with no damage and no leaks.

Over the=20 past eight years, Peter Monterose, owner of the=20 architectural firm McDonald and Monterose, has = specified=20 half a million square feet of plural component = urethane=20 adhesive with a single-ply membrane on roofs in = the=20 Hudson Valley, the Catskills and Mohawk Valley. =

"We get=20 some pretty strong winds up here, but we've = never had a=20 problem," he says.

Urethane=20 adhesives with single-ply membrane cover systems = have=20 undergone FM Global and Underwriters Laboratory = testing=20 for wind uplift and exhibit similar uplift = qualities to=20 Spray Polyurethane Foam (SPF).

The=20 urethane adhesive makes the system monolithic = and=20 seamless, reducing the chance of lifting and = peeling=20 during high wind events because there are no = edges for=20 the wind to grab. It also provides improved=20 waterproofing.

Monterose says the SPF system allows = for=20 faster installation over more traditional = systems like=20 built up roofing (BUR). It is lightweight and = eliminates=20 the need for mechanical fasteners for = insulation,=20 resulting in improved puncture resistance. =

"We had one=20 place where the owner went up on the roof with = snow=20 blowers to remove some drifts and there was no = damage to=20 the membrane," says Monterose. "The same owner = went=20 across the field to another school with a = fully-adhered=20 EPDM with fasteners holding the insulation down. = The=20 snow blower caught the fasteners and ripped a = couple=20 hundred holes in the roof."

"I wouldn't=20 have any hesitation using it in a hurricane = zone,=20 provided it was suitable for the building and = the=20 budget," he says.

With the=20 financial toll of hurricanes being so high, not = to=20 mention the accompanying human suffering, Smith = says he=20 would like to see special effort applied to the = design=20 of roofs on essential facilities such as = hospitals,=20 police and fire stations and buildings used as=20 evacuation shelters. Current model building = codes in the=20 US don't address the issue of wind born debris = striking=20 the roof membrane, although Dade County and the=20 International Building Code now have a = flying-missile=20 requirement for protecting exterior glazing. =

"Essential=20 facilities are required to be designed for = higher loads,=20 but that's just wind uplift," he says. "There's = no=20 recognition in the codes about wind born debris. = That's=20 something for designers to be aware of, because = you can=20 end up with a common situation where the roof is = intact,=20 it didn't blow off, but it's riddled with holes = and it=20 leaks. I've seen hospitals get enough water in = that=20 after the hurricane passed they had to evacuate = the=20 building, and that's something you don't want to = have to=20 do. For essential facilities in a hurricane = prone=20 region, spray foam is a very good option." =

SPF may=20 also provide peace of mind for building owners,=20 contractors and insurers after the storm. =

"Even after=20 taking a lot of debris, the gouged foam can = remain=20 without repairs for months without causing = serious=20 problems," says Smith. "The building owner = doesn't have=20 to worry about getting someone up there to = effect=20 repairs immediately. After a major hurricane = there are=20 so many damaged roofs that getting someone to do = repair=20 and replacement is a real challenge. There are a = limited=20 number of workers and a great amount of work to = be done.=20 A roof that can just sit there in a somewhat = damaged=20 state but not leak and cause problems is a real=20 attribute. "

One leading=20 SPF supplier reports that when applied direct to = decks,=20 its formulation meets the FM Global Class 1-150=20 Windstorm classification and FM severe hail = tests. These=20 lab results, along with Smith's field = documentation show=20 SPF's performance during severe wind events and = the=20 potential for damage reduction when the next big = hurricane hits.

"Give me=20 the right deck, with sprayed-in-place = polyurethane foam=20 and coating, and I can survive a typhoon, says=20 Fricklas."


Understanding=20 Wind Uplift

The=20 performance of any roofing system during a wind = event=20 such as a hurricane, tornado or tropical storm = depends=20 on its wind uplift resistance.

Richard=20 Fricklas, founding father and former technical = director=20 of the Roofing Industry Educational Institute = (RIEI),=20 stresses the importance understanding the = effects of=20 wind on a roof.

"Mathematical models=20 are used to convert wind speed into an uplift = force. In=20 high school physics, we learn that kinetic = energy is=20 equal to one half of mass X velocity2. The = energy is a=20 function of the mass (density of air) and the = square of=20 the wind speed. So as the wind blows harder, the = velocity gets greater, you're squaring it, so = the uplift=20 force becomes greater very quickly," he says. = "When I'm=20 teaching wind to my classes, I state that a = Volkswagen=20 going 30 mph will do less damage to a telephone = pole=20 than an SUV going 90 mph. It's the velocity that = makes=20 high winds do so much damage because its energy = is being=20 squared."

Wind maps=20 project the highest wind speed a designer might = expect=20 in given geographic area. For example, at an = airport or=20 adjacent to a large body of water, the design = wind speed=20 could be 90 mph. Designers and architects then = pick a=20 probability of getting a wind speed that high. = For a=20 very important building, such as a nuclear power = plant,=20 this expectancy factor or recurrence interval = might be=20 1,000 years. For less important buildings, the = design=20 wind speed is adjusted downward.

The=20 adjusted wind speed is then multiplied by a = pressure=20 coefficient for the specific portion of the = roof:=20 generally minus three at the corners where the = uplift is=20 greatest, -2 at the perimeter and -1 for the = body of the=20 roof. There are a number of variables, such as = roof=20 height and roof slope, that can affect these=20 coefficients.

"We use a=20 constant for air density. When you multiply the = units=20 out, density times the velocity, we now have the = expected uplift forces in lbs/ft2. Once we have = that=20 number and we multiply it by 1, 2 or 3 the = designer is=20 ready to start looking at the best way to put = the roof=20 together," says Fricklas.

Independent=20 testing organizations, such as Underwriters = Laboratories=20 (UL) and FM Global, test various roofing systems = for=20 wind uplift performance and then publish the = results in=20 their directories. Designers can then look for = systems=20 that meet the UL designations class 30, class 60 = and=20 class 90 or FM1-60, FM1-90 or higher where = needed.=20

Mason=20 Knowles, technical director of the Spray = Polyurethane=20 Foam Alliance, reports that during laboratory = testing of=20 SPF systems, SPF's wind uplift resistance = exceeded the=20 capacity of UL's equipment. UL also observed = that SPF=20 roofs applied over BUR and metal increased the = wind=20 uplift resistance of those roof coverings. He = says FM=20 Global's testing showed similar results over = concrete,=20 metal and wood.=20 =

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Copyright =A9=20 1998-2003 BASF Corporation=20 =
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we go to the = second window will=0A= self close after 5 seconds and stay on top while displaying a message=0A= */=0A= function srd(theURL,winName,features) {=0A= window.open(theURL,winName,features);=0A= window.open('/file1.html','go','width=3D300,height=3D100 ');=0A= =0A= }=0A= =0A= function openBrWindow(theURL,winName,features) {=0A= //v2.0 =0A= //alert('Transferring to BASF Group website');=0A= window.open(theURL,winName,features);=0A= }=0A= basf_DOM =3D (document.getElementById) ? true : false; basf_NS4 =3D (document.layers) ? true : false; basf_IE =3D (document.all) ? true : false; basf_IE4 =3D basf_IE && !basf_DOM; basf_Mac =3D (navigator.appVersion.indexOf("Mac") !=3D -1); basf_IE4M =3D basf_IE4 && basf_Mac; basf_IsMenu =3D (basf_DOM || basf_NS4 || (basf_IE4 && !basf_IE4M)); basf_BrowserString =3D basf_NS4 ? "NS4" : basf_DOM ? "DOM" : "IE4"; if(window.event + "" =3D=3D "undefined") event =3D null; function basf_f_PopUp(){return false}; function basf_f_PopDown(){return false}; popUp =3D basf_f_PopUp; popDown =3D basf_f_PopDown; // the following function is included to illustrate the improved JS = expression handling of // the left_position and top_position parameters // you may delete if you have no use for it function basf_f_CenterMenu(topmenuid) { var TheMenu =3D basf_DOM ? document.getElementById(topmenuid) : = basf_IE4 ? document.all(topmenuid) : eval("window." + topmenuid); var TheMenuWidth =3D basf_DOM ? parseInt(TheMenu.style.width) : = basf_IE4 ? TheMenu.style.pixelWidth : TheMenu.clip.width; var TheWindowWidth =3D basf_IE ? document.body.clientWidth : = window.innerWidth; return ((TheWindowWidth-TheMenuWidth) / 2); } if(basf_IsMenu) { document.write("<\/SCR" + "IPT>"); document.write("<\/SCR" + "IPT>"); } //end ------=_NextPart_000_006C_01C35060.C3D2CB00--