Tree Rigging - Ropes, Rigging Hardware, and Techniques
Why this matters
Tree rigging is the use of ropes, pulleys, and friction devices to safely lower branches, limbs, and tree sections from height. Without proper rigging, large tree work requires either dropping the material (often impossible due to structures, plantings, or property below) or significant ground-side cleanup. Rigging adds capability AND safety - a properly rigged section descends in controlled motion rather than free-falling. This is one of the most consequential technical skills in tree work.
Why we rig
Three primary reasons:
- Property protection: structures, landscaping, fences below the cut
- Worker safety: large sections lowered controlled rather than dropped
- Customer expectation: professional service includes clean removal
A 200-pound branch dropped from 30 feet creates significant impact damage and is dangerous to ground crew. The same branch lowered with rigging arrives safely on the ground.
Required equipment
Climbing rope vs. rigging rope
These are different:
| Type | Use |
|---|---|
| Climbing rope | Worker's life support; tested to specific loads |
| Rigging rope | Lowering wood and structural sections; much heavier load capacity |
Never use the climbing rope for rigging. Different strength specifications.
Common rigging rope materials
| Material | Pros | Cons |
|---|---|---|
| Nylon | High strength; some elasticity (absorbs shock loads) | Expensive |
| Polyester | Strong; less stretch than nylon | Less shock absorption |
| Polypropylene | Floats; cheap | Lower strength; UV degradation |
| Aramid (Kevlar) | Very high strength | Stiff; cost; sensitive to abrasion |
Standard tree rigging: 3/4 inch or 1/2 inch double-braided nylon or polyester. Capacity in the thousands of pounds.
Pulleys and hardware
| Item | Purpose |
|---|---|
| Block / pulley | Changes rope direction; reduces friction |
| Friction saver | Protects bark + reduces friction at tie-off point |
| Carabiners | Connect rigging components |
| Slings | Connect rigging to the tree (basal anchor) |
| Throw line | Set rigging ropes initially |
| Lowering device (Port-a-Wrap, Hobbs Lowering Device) | Controls descent friction |
A complete rigging system includes all of these. Each has specific load ratings and uses.
Lowering devices
The lowering device handles the friction needed to control the descent:
- Hobbs Lowering Device: simple metal device that wraps the rope around a drum
- Port-a-Wrap (Stein): similar concept; controls descent rate
- Cumberland's design: another lowering device
The ground worker controls the descent by adjusting friction on the rope at the lowering device. Slack out = faster descent; pull in = slower.
Basic rigging procedure
Step 1: Plan the cut and the rigging
Before any cutting:
- Identify the section to be removed
- Identify the tie-off point (basal anchor)
- Plan the cut location
- Identify the landing zone
- Verify the rigging can handle the load
Step 2: Set the basal anchor
The anchor on the tree (typically a different tree trunk):
- Wrap a sling around a structural part of the anchor tree
- Verify the anchor can handle the load (not on a damaged or weak trunk)
- Use friction saver to protect the bark
- Attach a pulley OR direct rigging point
Step 3: Set the rope
- From the anchor, run the rigging rope up to the cut location
- Wrap the rope around or through the section to be lowered
- Secure with appropriate hitch (clove hitch, Marl, or other)
- Run the rope back down to the lowering device on the ground
Step 4: Setup at the ground
- Lowering device attached to a separate anchor (often a different tree)
- Rope passes through the lowering device
- Ground worker takes position behind / beside the device
- Verify communication signals with the climber / sawyer
Step 5: Make the cut
- The climber positions clear of the cut + the lowering path
- Make the cut
- The branch / section drops slightly, taking tension on the rope
- The lowering device begins paying out controlled rope
- The branch descends to the ground at controlled speed
- Ground crew receives + clears the section
Step 6: Repeat for additional sections
Multiple cuts in a tree typically require multiple rigging setups; plan ahead.
Knots and hitches
For tree rigging, common knots:
| Knot | Use |
|---|---|
| Clove hitch | Securing rope to a branch / log section |
| Bowline | Loop at end of rope; non-slip |
| Marl hitch | Securing rope to a log; doesn't tighten when loaded |
| Running bowline | Adjustable loop; slip knot |
| Munter hitch | Friction hitch; backup descent control |
Practice these knots cold; tying them under pressure is the test.
Load ratings
Every rigging component has a Working Load Limit (WLL):
- Rope: typically 1/8 of breaking strength (8x safety factor)
- Hardware: 1/5 of breaking strength (5x safety factor)
- Slings: 1/5 of breaking strength (5x safety factor)
The rated load is the MAXIMUM the component should bear. Exceeding the WLL risks failure.
A 4-inch diameter limb weighs roughly 100-200 pounds per foot; a 20-foot section can be 2,000-4,000 pounds. Rigging components must match.
Calculation:
- Component WLL ≥ Estimated load weight × 1.5 (safety margin)
Friction in rigging
Friction is the controlled descent:
- Lowering device generates friction
- Friction converts kinetic energy (falling load) to heat (rope + device)
- Heat dissipates safely (within limits)
- Excessive friction may damage the rope; insufficient friction means uncontrolled descent
Adjust friction based on:
- Load weight (heavier = more friction needed)
- Drop height (longer drop = more friction)
- Ground worker's strength
- Rope condition
Climber-side rigging
The climber-side rigging:
| Component | Use |
|---|---|
| Float line | Light line for testing the rigging path |
| Throw line | Heavy line for setting the rigging |
| Personal anchor | Climber's own attachment to the tree |
| Rope cinch | Secures climber's working line |
The climber rigs from the position; the ground crew receives.
Tree species considerations
Different tree species behave differently:
| Species | Rigging notes |
|---|---|
| Hardwoods (oak, maple, etc.) | Heavy wood; large loads; strong attachment points |
| Softwoods (pine, fir) | Lighter; need more careful attachment points (bark crushes easier) |
| Hollow trees | Anchor points may be unreliable; visual inspection critical |
| Decayed trees | NEVER use as anchor; only as the load |
| Live trees | Good anchors; respect species characteristics |
| Dead trees | Less reliable; treat carefully |
Crane-assisted rigging
For large trees:
References
- ANSI Z133 (Safety Requirements for Arboricultural Operations)
- ANSI A300 (Tree Care Standards)
- TCIA (Tree Care Industry Association) rigging training
- ISA (International Society of Arboriculture) BMP for Rigging
- Manufacturer documentation for rope + hardware
- Manuall internal: Chainsaw Safety, Tree Removal Service SOP, Climbing Safety