Method and apparatus for replacing underground pipe
A pipe bursting system and method are described wherein a bursting head pulled by a cable employs a relatively small pneumatic hammer and a relatively large cable tension to impose a cyclical hoop stress on the pipe being burst to cause fatigue failure of the pipe, resulting in lower size and power requirements, and higher efficiency for a given set of job requirements.
1. A method of replacing underground conduit wherein an existing conduit is ruptured and expanded to create a space, and wherein a replacement conduit is introduced to occupy the space, said method comprising;
employing a hydraulic cable puller system having a cable puller gripping a wire cable attached to a bursting head shaped to apply a radially outward stress to the existing conduit when the cable is placed under tension by the cable puller, wherein the cable tension is not constant;
allowing the tension in the cable to increase substantially to store potential energy therein and substantially increase the stress on the replacement conduit in the region of engagement with the bursting head, and
imposing a series of mechanical force pulses to the bursting head along the axis of the cable to repetitively increase and decrease the potential energy in the cable to impose a cyclically variable stress component in the region of engagement sufficient to cause fatigue failure of the conduit.
2. The method of claim 1 wherein the cyclical variable stress component straddles the stress level produced by the action of the cable puller.
3. The method of claim 1 wherein the cable tension is cyclically increased substantially above forty percent of the breaking strength of the cable.
4. The method of claim 1 wherein the cable tension is cyclically increased to at least seventy percent of the breaking strength of the cable.
5. A method for operating a static pipe bursting system in which a cable puller imposes a pulling force on a wire cable attached to a bursting head wherein the pulling force constitutes the primary source of bursting energy for the bursting head to engage and rupture conduit to be replaced, said method comprising:
increasing the tension in the cable substantially above twenty percent of the rated breaking strength of the cable to store potential energy therein and substantially increase the stress on the conduit to be replaced in the region of engagement with the bursting head, and
imposing a series of mechanical force pulses to the bursting head substantially along the axis of the cable to repetitively increase and decrease the potential energy in the cable to impose a cyclically variable stress component in the region of engagement sufficient to cause fatigue failure of the conduit;
wherein the potential energy in the cable is periodically increased and decreased during operation of the static pipe bursting system.