RamPump KB

Section 20 ยท Design & Build

Pipe & materials

Most ram faults that look hydraulic turn out to be plumbing: a pipe that flexes, a bore smaller than the invoice says, a joint that sucks air, a fitting that was never meant to hold pressure. This page is about the pipe you actually bolt on.

The number on the label is not the hole you get

Every pipe is sold by a nominal size, and the nominal size means different things in different pipe families. Two pipes on the same shelf, both called 63 mm, can pass measurably different amounts of water โ€” and everything the ram does depends on the internal diameter.

What the nominal size refers to, by pipe family. The pressure class then changes the wall thickness โ€” and so the bore โ€” within a single family.
Pipe familyNominal size meansWhat to expect
PVC-U, PE (metric plastics)Outside diameterA "63 mm" pipe is 63 mm across the outside; the bore is OD โˆ’ 2 ร— wall, always smaller
Steel, brass, iron (imperial)Nominal bore, near the inside"2 inch" is about 60 mm outside and about 50 mm inside; the outside is the standardised number
Old or reused metalAn old schedule you cannot seeScale, wall thickness and era all shrink the bore; measure it, never trust the label

The consequence is not academic. The drive-pipe diameter table and the calculators both want the bore โ€” feed them the nominal size and you will size the pump for a larger pipe than you own.

v = 4Q / (ฯ€ยทDยฒ)

Velocity scales with the square of the bore: at 4 L/s a true 63 mm bore runs at 1.28 m/s, while a 53 mm bore reaches 1.81 m/s โ€” the same flow, 41% faster, and friction rises with the square of that. Same nominal size on both invoices, different pump.

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Measure the bore before you design around it

Calipers on the end of a cut length, or plug gauges for awkward sizes. Feed the measured bore to the head-loss tool and the sizing calculator. A 10% error in bore is a 20% error in velocity and a 40% error in friction.

The drive pipe: stiffness is the whole point

The drive pipe is not a hose, and it is not a delivery line. It is the flywheel of a machine that works by stopping water suddenly, and its stiffness is what makes the stop sudden. A pipe wall that stretches on the pressure wave absorbs the energy the pump needs. The result is a ram that beats weakly, or not at all.

Choose first

  • Steel โ€” the classic ram drive pipe. Rigid, tough, tolerant of being buried or walked on, and it gives the hardest hammer.
  • Heavy-wall pressure-rated PVC โ€” acceptable on some sites. The hammer is softer because the wave speed is lower, so expect to size up the flow or shorten the beat.

Never

  • Flexible hose or layflat of any kind. It swallows the shock; the ram will not beat.
  • Thin-wall drainage pipe (DWV, soil pipe). It is not a pressure pipe and it will split.
  • A pipe that necks down mid-run. Constant bore, always.

Wave speed is the number that separates them: roughly 1200โ€“1400 m/s in steel, 300โ€“500 m/s in pressure-rated PVC, and under 400 m/s in HDPE. Since the hammer is proportional to that speed, a soft wall does not just make the beat gentler โ€” it makes the pump smaller. The material table is on the physics page.

The rest of the drive-pipe rules are about keeping the water as one clean, fast-moving column:

The delivery line

Downstream of the air chamber the demands are easier, and more forgiving. The chamber has already smoothed the pulse, so the delivery line sees a small, nearly steady flow โ€” which is why HDPE, PVC or steel all work here, and why you size it for friction rather than for hammer.

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If the water is for drinking

Confirm the wetted materials are suitable for potable supply โ€” the fittings and seals as much as the pipe. Cheap galvanised components and unknown reclaimed pipe are the usual sources of trouble; see water quality.

Pressure rating & joints

The rating printed on a plastic pipe is its nominal pressure class, in bar. It is a working rating at a reference temperature โ€” and it is the static head that sets the minimum you need, before any hammer.

Nominal pressure classes and the still-water head each corresponds to (1 bar โ‰ˆ 10.2 m of water). Temperature, chemical exposure and age all reduce the real rating.
ClassPressure ratingStatic head it holdsWhere it turns up
PN66 bar61 mLight delivery lines and low tanks
PN1010 bar102 mThe general-purpose choice for delivery
PN12.512.5 bar127 mTall static heads
PN1616 bar163 mDeep heads, and lines asked to survive a chamber failure
required PN โ‰ˆ (h ร— safety margin) / 10.2

h in metres. A 20 m lift is about 2 bar of static head, so PN6 has margin โ€” but the hammer is tens of times that, which is exactly why the air chamber, not the pipe, is the primary protection.

Joining

Anchoring

The beat is a hammer, and a hammer moves things. The ram is bolted to a pad for that reason (anatomy, installation); the pipework needs the same treatment. Anchor the drive pipe where it enters the ram, support it along its length, and put thrust blocks at bends on the delivery main โ€” particularly where the line turns against the direction of thrust. A delivery line that ends in a floating tank can walk a tank over a season.

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Thin-wall drainage pipe is not pressure pipe

DWV, soil and drainage pipe are sized for fall, not pressure. They are commonly used for a homemade air chamber because they are cheap and easy to cap โ€” and they are a burst waiting to happen. Use pressure-rated pipe with rated caps, or a steel vessel. See build safety.

Next: the parts that move inside all this pipework โ€” valves & the air chamber โ€” or straight to the build with Build Your Own.