7.2 Padding & Lowering-In
Key Takeaways
- Lowering-in only proceeds after coating has been accepted and NDE-cleared welds are complete
- Trench bottom padding (sand or select fill) protects the coating from rocks and debris in native soil
- Coated pipe must be lifted with nylon belts or padded cradles, never bare chains or cables
- Sideboom lift spans are limited by the pipe's bending stress; the inspector verifies span length and supports
- Pipe is lowered into the trench without dropping and without sliding, to avoid coating damage
Padding & Lowering-In
Quick Answer: Lowering-in is the controlled placement of the welded, coated pipe string into the trench. The trench bottom is padded with sand or select material where the native soil would damage the coating; the pipe is lifted with sidebooms using nylon belts or padded cradles (never bare chains on coated pipe); lift spans are kept within the pipe's allowable bending stress; and the pipe is lowered without dropping or sliding.
Lowering-in is the transition from the above-ground pipe string to a buried pipeline. It is also the operation where the most mechanical coating damage occurs, so the API 1169 inspector concentrates on the condition of the trench pad, the rigging on the sidebooms, the spacing of the lifts, and the weather/temperature limits that protect both the coating and the pipe steel.
Trench Bottom Padding
Where the native trench bottom contains rock, hard clods, frozen lumps, or debris that would damage the coating, the trench is padded with select material. The padding types in common use are:
- Sand pad — 75–150 mm of clean, compacted sand on the trench bottom
- Select native fill — screened, rock-free native material
- Geotextile + sand — geotextile lining in rocky trenches to prevent sand migration
- Concrete weight-coated pipe — for water crossings, the pad may be eliminated and the weight coating provides protection
The inspector verifies the pad is continuous, at the specified thickness, and free of rocks or frozen material before any pipe is lowered. A pad that is too thin, rutted by equipment, or contaminated with rock is a nonconformance and must be reworked.
Lowering-In Equipment
The pipe is lifted from the right-of-way and swung over the trench with sideboom tractors — crawler tractors with a side-mounted boom. The contact between the rigging and the coated pipe is the critical damage-control point.
| Equipment | Acceptable on Coated Pipe? | Notes |
|---|---|---|
| Nylon belt sling | Yes | Standard; padded, wide bearing area |
| Padded cradle | Yes | Used on larger pipe to spread load |
| Wire rope sling | No (unless padded) | Cuts coating; requires padding |
| Bare chain | No | Cuts and crushes coating; prohibited on coated pipe |
| Pipe hook (bare) | No | Point loads; use a padded hook cover |
Why No Chains on Coated Pipe
A bare chain concentrates the pipe weight on a small contact area, producing linear cuts through the coating to bare steel. Even on FBE and three-layer systems, a chain mark becomes a holiday that must be repaired before backfill. Nylon belts spread the load over a wide, soft contact area and are the industry default. The inspector walks the lift points after lowering and flags any chain or cable marks on the coating.
Lift Spans & Bending Stress
Between sidebooms, the pipe string behaves like a beam under its own weight. Too wide a spacing and the sagging moment between booms exceeds the pipe's allowable bending stress; too narrow and the up-lift at each boom overstresses the steel. The contractor's lowering-in plan specifies the sideboom spacing based on pipe diameter, wall thickness, grade, and coating weight.
The inspector verifies:
- Sidebooms are spaced per the approved lowering-in plan
- Pipe is not lifted higher than necessary (minimizes bending stress at the booms)
- Temporary supports (skids, sandbags) are used where a span is unavoidably long
- The pipe is not dragged or slid on the trench bottom
Lofting
Lofting is the controlled bowing of the pipe string to clear obstacles during lowering-in. Where the right-of-way has a vertical curve or an obstacle above the string, the sidebooms lift the pipe in a shallow arch (loft) so the string clears the obstacle and lands in the trench on the other side. The inspector confirms the loft does not exceed the pipe's allowable bending radius and that the coating is not abraded on the obstacle.
Weather & Temperature Considerations
Coating application and lowering-in both have weather limits set by the coating manufacturer and the project specification:
- Ambient and steel temperature must be above the coating's minimum application temperature (often 5 °C or the dew point + 3 °C)
- Dew point — no coating application when the steel surface is within 3 °C of the dew point
- Rain, snow, high wind — suspension of blast and coat operations
- Cold-weather lowering — some coatings (coal tar, some tapes) become brittle below 0 °C and crack when the pipe flexes during lowering; the inspector checks the manufacturer's minimum handling temperature
No Dropping, No Sliding
The pipe is lowered, not dropped, into the trench. A free drop can exceed the coating's impact resistance and crack FBE or shatter a shrink sleeve. The pipe is also not slid along the trench bottom or pad; sliding grinds sand and grit into the coating and creates linear holidays. The inspector confirms the sidebooms lower the pipe in a controlled, coordinated movement and that no section of the string is allowed to fall or slide.
Which rigging is acceptable for lifting coated pipe during lowering-in?
What is the purpose of trench-bottom padding (a sand or select-fill pad) before lowering-in?
During lowering-in, what does the inspector verify about sideboom spacing?
Why must the pipe be lowered into the trench rather than dropped or slid?