Downhole hydraulic control line
View Patent ↗A downhole hydraulic control tool comprising a substantially tubular body adapted for connection in a tubing string, the body including a throughbore arranged coaxially with a bore of the tubing string and one or more pockets arranged on a wall of the body, the pockets including a hydraulic power source and at least two control lines, wherein the device includes a pump to drive the hydraulic fluid through the control lines and a switchable flow mechanism for switching the flow of pumped fluid between the at least two control lines, and a switchable flow mechanism and a method of operating one or more downhole devices from a downhole located hydraulic control tool.
1. A switchable flow mechanism for use in a downhole fluid control tool, the mechanism comprising an element arranged only to rotate within the tool, the element including a plurality of pairs of switchable flow ports on a surface thereof, wherein in a first position of the element, a flow path is arranged through the element between each pair of switchable flow ports and at least a portion of each flow path is arranged off axis through the element, wherein,
there are a plurality of housing flow ports arranged around the element and each housing flow port includes a connection to a control line;
said element has a central axis;
each housing flow port is mis-aligned with a switchable flow port in a second position of the element; and
upon rotation of the element to the neutral position, fluid flow to the housing ports is provided by a recess in a surface of the element and thereby reduces permitted fluid flow through the control lines of the tool thereby equalizing pressure via the element.
2. A switchable flow mechanism according to claim 1 , wherein a portion of the flow paths are arranged so that they do not pass through the central axis of the element and as such a plurality of distinct flow paths are provided.
3. A switchable flow mechanism according to claim 1 , wherein rotation of the element allows a change in position of the switchable flow ports and consequently a change in the direction of fluid flow through the element.
4. A switchable flow mechanism according to claim 1 , wherein the housing flow ports and the switchable flow ports are arranged substantially perpendicularly to the axis of rotation of the element.
5. A switchable flow mechanism according to claim 1 , wherein at least a portion of the element is formed of a cylindrical section with flow paths arranged within the cylindrical section.
6. A switchable flow mechanism according to claim 5 , wherein the flow ports are arranged such that a 180 degree rotation of the element is sufficient to switch the flow paths between housing flow ports.
7. A switchable flow mechanism according to claim 5 , wherein the housing flow ports and the switchable flow ports are arranged substantially parallel to the axis of rotation of the cylindrical element.
8. A switchable flow mechanism according to claim 5 , wherein a plurality of distinct flow paths are arranged through a cylindrical element.
9. A switchable flow mechanism according to claim 8 , wherein the cylindrical element comprises a partial central bore passing through the central axis thereof, the partial central bore of the cylindrical element being in fluid communication with the flow paths of the cylindrical element.