Remote controlled vehicle
A method of directional drilling includes forming first and second pits on corresponding first and second sides of a barrier, forming a pilot bore from the first pit to the second pit, enlarging the pilot bore to a final bore, and extending a cable through the final bore between the first and second pits by attaching the cable to a remote controlled vehicle and driving the remote controlled vehicle through the final bore from one of the pits to the other pit. The method also includes pulling a pipeline through the final bore using the cable.
1. A method of directional drilling, the method comprising:
forming first and second pits spaced from each other;
forming a pilot bore from the first pit to the second pit;
enlarging the pilot bore to a final bore;
extending a cable through the final bore between the first and second pits by attaching the cable to a remote controlled vehicle;
driving the remote controlled vehicle through the final bore from one of the pits to the other pit by issuing a drive command from a remote controller external to the vehicle and receiving the drive command in a vehicle controller, the vehicle controller controlling a drive system of the vehicle according to the received drive command; and
pulling a pipeline through the final bore using the cable;
wherein the vehicle controller controls a hydraulic power unit in communication with front and rear hydraulic drives supported on corresponding front and rear portions of a chassis of the vehicle, each hydraulic drive driving a corresponding mobility element.
2. The method of claim 1 , wherein the remote controller communicates the drive command to the vehicle controller using a radio frequency communication.
3. The method of claim 1 , wherein the vehicle controller controls a motor of the hydraulic power unit to drive a pump in fluid communication with the hydraulic drives.
4. The method of claim 1 , wherein the vehicle controller controls front and rear control valves in fluid communication with the corresponding front and rear hydraulic drives to regulate at least one of a fluid direction and a fluid flow through each control valve to each corresponding hydraulic drive.
5. The method of claim 1 , wherein each hydraulic drive comprises a hydraulic traction drive.
6. The method of claim 1 , further comprising attaching the cable to a chassis of the remote controlled vehicle;
wherein the chassis has a length of between about 80 inches and about 160 inches, a width of between about 10 inches and about 30 inches, and a height of between about 10 inches and about 30 inches for moving through tunnels; and
wherein the remote controlled vehicle has a center of gravity disposed within a volume having a length of between about ⅛ and about ½ of the length of the chassis, a width of between about ⅛ and about ½ of the width of the chassis, and a height of between about ⅛ and about ½ of the height of the chassis, the volume centered and sitting on the chassis.
7. The method of claim 1 , further comprising forming the pilot bore between about 6 inches and about 12 inches.
8. The method of claim 1 , further comprising delivering drilling fluid into the pilot bore to aid formation of the pilot bore.
9. The method of claim 1 , further comprising reaming the pilot bore with a rotating reamer to enlarge the pilot bore to the final bore.