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How to Winterize a Sprinkler System (Including Blowing Out the Lines)

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Winterize a sprinkler system by shutting off its water supply, powering down the controller, protecting the backflow preventer, and then removing every bit of water that could freeze inside the pipes — finished one to two weeks before your average first hard freeze. On systems with drain valves at the low points, gravity does the work. On systems without them, the water has to be pushed out with compressed air, one zone at a time, at 50 psi for poly pipe and no more than 80 psi for PVC. That air step is where people damage systems and hurt themselves, so most of this page is about doing it correctly.

We do not install or service irrigation systems; our equipment rankings come from aggregated owner reviews and published specifications, explained in how we rank. The wider subject starts at the watering and irrigation hub.

Do you actually need to winterize where you live?

Not every US yard needs a blowout, and the honest answer depends on how deep your soil freezes rather than on how cold the air gets.

Region / USDA zoneBuried lateralsWhat still needs doing
Zones 9–11: south Florida, Gulf Coast, low-desert AZ/NV, coastal and inland southern CA, deep south TXNot at risk in a normal winterInsulate or drain the backflow assembly and exposed risers; disconnect hoses; bring timers and filters indoors
Zone 8: coastal Pacific Northwest, much of GA/AL/SC, north FL, central TXLow risk, occasional hard freezeDrain what drains by gravity, wrap the backflow device, and shut the system down at the main valve
Zone 7: mid-Atlantic, Ohio Valley, TN, OK, northern NM, inland OR/WAAt risk in a cold snapFull drain; blowout recommended if the system has no low-point drains
Zone 6 and colder: Midwest, Northeast, Rockies, Great Plains, mountain WestAt real risk every yearFull blowout is standard practice; drain or remove the backflow assembly

If you are in the first row of that table and someone quotes you for an annual blowout, you are paying for a service your climate does not require. Spend the money on insulating the backflow device instead — in mild regions it is nearly always the only part that ever freezes, because it sits in open air with water standing in the body.

Wide environmental view of a person watering a vegetable bed with a garden hose, water catching the light, in warm late-afternoon light

Step 1: Shut down the system properly

  1. Close the irrigation isolation valve. This is usually a ball valve or gate valve in a basement, crawl space or meter pit, tapped off the house supply upstream of the backflow device. Turn it fully closed, not most of the way.
  2. Set the controller to off or rain mode. Most modern controllers keep programs in nonvolatile memory, so "off" does not erase your schedule. Older units with a backup battery can lose everything, so photograph the schedule screens before you touch anything. If you are running a smart controller, its app usually has a seasonal shutdown toggle that also stops it sending you "zone did not run" alerts all winter.
  3. Open the test cocks on the backflow assembly by a quarter turn to relieve pressure and let the body drain. Leave the two ball valves at roughly 45 degrees so no water is trapped between them — a closed valve with water on both sides of the gate is the classic way a brass body cracks.
  4. Open a manual drain or the lowest drain valve to bleed pressure out of the mainline before you do anything else. Working on a charged line is how fittings become projectiles.

Step 2: Pick the draining method your system was built for

Every residential system uses one of three approaches, and the pipes were sloped (or not) accordingly when they were installed.

MethodHow it worksHonest limitation
Manual drainYou open a drain valve at each low point and let gravity empty the lateralsOnly clears pipe that actually slopes toward the valve; sprinkler bodies still hold a cup of water each
Automatic drainSpring-loaded valves open on their own once line pressure drops below about 10 psiThey clog with grit and fail silently; you have no way to confirm a zone drained
Air blowoutCompressed air pushes water out through the heads, zone by zoneNeeds real compressor volume; done wrong it splits pipe and breaks heads

In hard-freeze country the blowout is the default not because the other methods are bad but because they are unverifiable. When you blow out a zone you can see the heads go from spray to mist to dry air, and that is proof.

Golden-hour view of a person watering a vegetable bed with a garden hose, water catching the light

Step 3: How to blow out sprinkler lines without breaking them

The pressure limits are the whole ballgame. Colorado State University Extension states that ideal pressures fall in the range of 40 to 80 psi, with 80 psi the maximum for rigid PVC pipe and 50 psi for polyethylene pipe. Most residential laterals in the West and Midwest are poly, so 50 psi is the number that governs the majority of yards. A compressor tank sitting at 150 psi connected straight to a lateral will not clear it faster; it will balloon or split it somewhere you will need a shovel to find.

Volume, not pressure, does the actual work. CSU Extension's sizing rule is to divide the zone flow in gallons per minute by 7.5 to get the cubic feet per minute of air required. That is a bare theoretical minimum at the head; in practice, allow several times that at the compressor to account for line losses. A typical residential zone flowing 10 to 15 GPM therefore wants a compressor in the 20 to 50 CFM range, which is a rented towable unit, not something from a home center shelf.

The sequence

  1. Turn the water off and leave it off. Verify by opening a head or a drain and watching pressure fall to zero.
  2. Connect downstream of the backflow preventer. Almost every system has a blowout port — a threaded tee with a cap or a quick-coupler — between the backflow assembly and the zone valves. Never push air backward through a backflow device; its internal poppets and rubber seats are not designed for air and you can wreck a several-hundred-dollar assembly in seconds. A brass quick-connect-to-garden-hose blowout adapter (paid link) covers hose-thread ports; a compressor-to-NPT adapter (paid link) covers threaded blowout tees.
  3. Open a downstream zone valve BEFORE you open the air. This is the rule people skip. Start the zone at the controller (or open its solenoid manually) so the air has somewhere to go the instant it enters the pipe. Charging a closed system and then opening a valve slams a pressure spike into the fittings.
  4. Set the regulator, then open the air slowly. Dial in 50 psi for poly or up to 80 psi for PVC before connecting, then crack the ball valve open gradually rather than snapping it.
  5. Run each zone for no more than about two minutes at a time. Air moving through a dry plastic pipe generates heat and there is no water left to carry it away; a long dry run can soften a poly fitting or a nozzle. Watch the heads: they will spray, then mist, then blow dry air. Stop within a few seconds of the mist ending.
  6. Work from the zone farthest from the compressor back toward the nearest, then repeat the whole circuit a second time. One pass rarely gets everything, and the second pass takes seconds per zone.
  7. Close the blowout port, open the drain valves, and leave the zone valves in the position your controller manual specifies — usually with the solenoids relaxed and manual bleeds cracked.

The safety part, stated plainly

Compressed air is not a gentler version of water pressure. It stores energy, and a fitting that lets go under air becomes a projectile rather than a leak.

If any of that reads as more risk than you want to own, that is a reasonable conclusion. A professional blowout in most US markets runs roughly $75 to $150 for a typical residential system as of July 2026, and the contractor arrives with a compressor that can actually clear a zone.

Low-angle view of a person watering a vegetable bed with a garden hose, water catching the light, in warm late-afternoon light

Do not forget the backflow preventer — it is the expensive part

The backflow assembly is the device that keeps irrigation water, and anything dissolved in it, out of your drinking water. It sits above ground in most installations, holds standing water in its body, and is made of brass or bronze that cracks rather than flexes. It is the single most common freeze casualty and the most expensive one.

Drain it according to its type: open the test cocks a quarter turn, set both isolation ball valves to roughly 45 degrees, and remove any bell housing so water cannot pool. In mild regions an insulated pouch or a wrap of pipe insulation inside a weatherproof cover is usually enough. In cold regions, many installers remove pressure vacuum breaker and reduced-pressure assemblies entirely and store them indoors over winter — check whether yours is designed for that, because reinstalling a testable assembly may require a re-test by a certified tester in your jurisdiction. Annual testing of backflow assemblies on potable connections is mandated by most US water utilities and by plumbing codes; confirm what your local water authority requires before you take one off the wall.

Hoses, drip lines, timers and spigots

Most freeze damage bills are not for buried pipe. They are for the cheap things nobody thought about.

What to do differently at spring startup

Charge the system slowly. Open the main valve maybe a quarter turn and let the mainline fill over several minutes rather than in one surge — the water hammer from a fast fill breaks more fittings than the winter did. Run each zone and walk it, looking for a head that will not pop, a geyser where a body cracked, and dry patches that signal a broken lateral. Reset the controller schedule for spring rather than resuming July run times, and if you want the arithmetic done for you, the sprinkler run time calculator converts your soil type and precipitation rate into minutes per zone.

This is also the moment to fix what winter revealed. EPA WaterSense notes that a household with an automatic irrigation system that is not properly maintained and operated can waste up to 25,000 gallons of water annually — a single broken head or misaligned nozzle accounts for a startling share of that.

More from this hub: watering and irrigation · how to fix a broken sprinkler head · best sprinkler controllers · what a sprinkler system costs · how we rank.

Straight Answers

Frequently Asked

What psi should I use to blow out sprinkler lines?

Colorado State University Extension puts the working range at 40 to 80 psi, with 80 psi the maximum for rigid PVC pipe and 50 psi the maximum for polyethylene pipe. Most residential systems west of the Mississippi are poly, so 50 psi is the number that applies to more homeowners than the 80 psi figure does. Set the compressor regulator before you connect anything, open the line slowly, and never run the compressor at its tank pressure — a 150 psi tank connected straight to a lateral will split fittings underground where you cannot see the damage until spring.

Can I blow out my sprinklers with a pancake compressor?

Not properly. Pancake and small twin-stack compressors make pressure but almost no volume, typically under 3 CFM at 40 psi, and blowing out a zone is a volume job rather than a pressure job. CSU Extension's sizing rule is to divide the zone's flow in gallons per minute by 7.5 to get the CFM you need, so a normal 12 GPM zone wants roughly 20 to 25 CFM at the fittings once you allow for losses. A small compressor will make the heads sputter and spit for a few minutes without ever fully clearing the lateral, and the temptation then is to crank the pressure up, which is exactly how pipes get broken. Either rent a towable 80 to 185 CFM compressor or hire the blowout.

Do I have to winterize a sprinkler system in a mild climate?

Often not, in the sense of a full compressed-air blowout. In USDA zones 9 through 11 — most of Florida, the Gulf Coast, the low deserts of Arizona and southern Nevada, coastal and inland southern California, and the southern tip of Texas — soil below six inches rarely freezes, so buried laterals are not at real risk. What still needs protecting in those regions is everything above ground: the backflow assembly, exposed PVC risers, hose bibs and any timer or filter on a faucet. Zone 8 is the judgment call, because a hard freeze arrives a few nights a decade and the backflow device is the part that breaks. Anywhere in zone 7 or colder, treat a full drain or blowout as routine.

What happens if you skip winterizing?

Water expands about nine percent when it freezes, and the components fail in a predictable order. The backflow preventer goes first because it sits above ground with trapped water in the body and it is the most expensive single part of the system. Sprinkler bodies split next, then poly laterals at the barbed fittings, then PVC at the glued joints. Most of it stays invisible until you charge the system in spring and a zone turns into a fountain. Replacing a cracked reduced-pressure backflow assembly alone commonly runs several hundred dollars installed, which is more than a decade of professional blowouts in most markets.

When should I winterize — what date?

Work back from your average first hard freeze, which the NOAA National Centers for Environmental Information publishes in the US Climate Normals, and aim to be finished one to two weeks ahead of it. A practical trigger is the first forecast of overnight lows in the high 20s Fahrenheit. In the northern Rockies and the upper Midwest that is usually late September into early October; across the Ohio Valley and the mid-Atlantic it is late October into early November; in the upper South it can be Thanksgiving. Do not wait for the first frost warning, because that is when every irrigation contractor in your county is booked three weeks out.