Tower Safety Static Tag Line with Dedicated Top/Heel Pulley Simulator

Lift #5   |   Learn • Lead • Live   |   Forces Are Not Hidden

Rigging Lab

Inputs

Student input is distance in feet. The simulator calculates trolley position percentage automatically.
Optional / Advanced Inputs
Teaching geometry only; not a full catenary, elasticity, pretension, temperature, or rope-self-weight calculation.
Equipment & Attachment Ratings
Static tag line with dedicated top and heel pulley system

Results

Load-Line System

Load-Side Line Tension
Top-to-Heel Line Tension
Heel-to-Hoist Line Tension
Top Pulley Reaction
Top Pulley Fx / Fy
Heel Pulley Reaction
Heel Pulley Fx / Fy
Force Transferred Into Trolley/Load Assembly

Static-Line System

Equal Static Tag-Line Tension
Left / Right Span Tension
Static Tag-Line Multiplier
Tower Static-Line Reaction
Static Tower Fx / Fy
Static Anchor Reaction
Equilibrium Check
Trolley Location
Trolley Position
Total Static Span
Prescribed Loaded Sag

Common-Attachment Reference

Combined Top/Static Resultant
Combined Fx / Fy

Use this combined vector only when the top pulley and static line act through the same attachment assembly or structural point. Otherwise evaluate them as separate structural loads.

Live Angles

Vertical Load-Position Angle
Left Static Span Angle
Right Static Span Angle
Top-to-Trolley Line Angle
Heel-to-Hoist Line Angle
Top Pulley Included Angle
Heel Pulley Included Angle

Equipment Utilization

Load Line
Top Pulley
Heel Pulley
Static Tag Line
Top Pulley Attachment Sling
Heel Pulley Attachment Sling
Tower Static-Line Attachment
Static-Line Anchor
Trolley Connection Sling
Load Hoist
Load Hoist Anchorage

Force Summary

Top PulleyNormal
Heel PulleyNormal
Static LineNormal
Tower TopNormal
Entered WLLsNormal

Live Warning — Normal

Adjust the inputs to evaluate the lift.

Math & Teaching Notes

  • Free-running equilibrium: load-side tension and equal left/right static tag-line tension are solved simultaneously from ΣFx = 0 and ΣFy = 0.
  • Sequential friction: top-pulley loss is applied from the load side to the top-to-heel segment; heel-pulley loss is then applied to the heel-to-hoist segment.
  • Dedicated trolley-tag review: static tag-line multipliers over 2.00x require Special Lift Review. The straight-tag 10°/70° triggers do not apply to this arrangement.
  • Prescribed sag: the sag input defines teaching geometry. It is not a full catenary, rope-elasticity, pretension, self-weight, or temperature model.
  • Separate structural loads: top-pulley and static-line tower reactions remain separate unless both act through one common attachment assembly or structural point.
  • Model boundary: a restrained, braked, clamped, or friction-controlled trolley requires another measured or engineered constraint.
  • Forces Are Not Hidden.

11.5.4 Wind Limitations: The nominal wind speed considered for standard load chart values is 30 mph at the elevation of the gin pole. Lifts in nominal wind speeds above 30 mph shall be considered as special engineered lifts in accordance with the ANSI/TIA-322-A standard with applicable evaluation and special lift parameter conditions applied.

Capacity: Manufacturer-rated capacities and sling WLLs for the actual hitch configuration are required. Utilization at 80% or greater is shown as a capacity review; utilization at 100% or greater is shown as Danger.