ORTHOGONAL ELECTRICAL CONNECTOR PENETRATOR SYSTEM FOR COILED TUBING ELECTRICAL SERVICE IN A FLOW-THROUGH MULTI-BOWLED WELLHEAD AND METHOD OF INSTALLATION AND USE
20170211339 ยท 2017-07-27
Assignee
Inventors
- Tod D. Emerson (Magnolia, TX, US)
- Jim Williams (Montgomery, TX, US)
- J. Patrick Payne (League City, TX, US)
Cpc classification
E21B43/128
FIXED CONSTRUCTIONS
H01R43/005
ELECTRICITY
H01R24/28
ELECTRICITY
E21B17/023
FIXED CONSTRUCTIONS
H01R13/52
ELECTRICITY
E21B17/0285
FIXED CONSTRUCTIONS
International classification
E21B43/12
FIXED CONSTRUCTIONS
H01R43/00
ELECTRICITY
E21B17/20
FIXED CONSTRUCTIONS
H01R13/52
ELECTRICITY
Abstract
An electrical interconnect system which allows electrical service to be provided to an ESP suspended on coiled tubing without exiting the wellhead at the top of the well head structure, with three aligned plugs into which is inserted an exterior plug providing each leg of the electrical service to the ESP within the well.
Claims
1. An orthogonal electrical connector system comprising: an electrical conductor seal mandrel (282) adapted to attach to an ESP power cable (100) providing at least three conductors (112) connecting to electrical conductor from a coiled tubing (80); a non-conductive cable splice sleeve (200) enclosing the at least three electrical conductors (112) providing at least three spaced ports (540) permitting the at least three conductors (220, 220a, 220b) to connect to an interior electrical plug (560, 560a, 560b) inserted at right angles within a cable splice mandrel (282; and, an exterior plug (530) inserted through a wellhead mating with each of the at least three spaced electrical interior plugs (560, 560a, 560b) in the cable splice sleeve (200).
2. The orthogonal electrical connector system of claim 1 wherein the at least three spaced ports (540) are positioned vertically within the connector sleeve.
3. The orthogonal electrical connector system of claim 1 wherein the at least three spaced ports (540) are positioned horizontally within the connector sleeve.
4. The orthogonal electrical connector system of claim 1 wherein the at least three conductors extend through the seal mandrel (282) sealed with epoxy surrounding each conductor within a sleeve mandrel (87) retaining a mini-mandrel (90) within a threaded mandrel sleeve (85) attached to a slip connection (82).
5. The orthogonal electrical connector system of claim 1 wherein non-conductive cable splice sleeve (200) is aligned within the wellhead to assure alignment of the at least three spaced ports (540).
6. A method for installing an orthogonal electrical connector system on coiled tubing connected to an ESP, retained in a coiled tubing hanger assembly, comprising the steps of: rough-cutting an armored cable extending from the coiled tubing to an appropriate length; inserting the armored cable in a mini-mandrel collar and into a mini-mandrel; cutting the armor and stripping the lead jacket from a plurality of conductors within the armored jacket without removing the insulation on each conductor; inserting each conductor into a steel tube pressed into a non-ferromagnetic seal body; inserting an elastomeric seal around each steel tube leaving a space between the non-ferromagnetic seal body and the elastomeric seal; filling all interior spaces of the mini-mandrel with epoxy; retaining the mini-mandrel in the mini-mandrel collar; and, threading the collar to the coiled tubing hanger assembly retaining the mini-mandrel on an interior shoulder of the mini-mandrel collar and permitting the electrical conductors to extend there-through.
7. The method of claim 6 further comprising the steps of: combining one or more PEEK disks providing an opening vertically aligned in a spaced relationship; inserting in each vertically aligned disk an electrical connector attached thereto; attaching a length of electrical conductor to each spaced electrical connector extending through an interior passage to a proximal end of the arrangement; connecting each electrical conductor to an orthogonal electrical socket permitting connection of the electrical conductors extending from the mini-mandrel; and attaching the PEEK mandrel body comprised of the PEEK disks to the mini-mandrel cap on a circumferential surface of the mandrel body.
Description
DETAILED DESCRIPTION OF THE DRAWINGS
[0009]
[0010]
[0011]
[0012]
DETAILED DESCRIPTION OF AN EMBODIMENT OF THE INVENTION
[0013]
[0014] Each of the orthogonal connectors 560, 560a and 560b is housed within the PEEK cable manifold 222, 242 and 262. The stackable cable splice manifolds and sleeve of this embodiment 200, 222, 242, 262 forming the mandrel 282 could be molded from a single piece of PEEK.
[0015]
[0016] As next shown in
[0017] As shown more completely in
[0018] The mini-mandrel 90 is installed within the mandrel sleeve 85 which is threaded into or otherwise connected to the coiled tubing hanger system 82 supporting the coiled tubing 80 in slips (not shown) and providing support for the armored cable 100 constrained within said coiled tubing 80. Electrical conductors 112 pass through the mini-mandrel 90 with each remaining protected by the insulation 110. Each electrical conductor 112 is stripped at its distal end and an electrically conductive male plug 114 is attached with set screws 116.
[0019] The installation of the mini-mandrel 90 is readily accomplished. The coiled tubing 80 is secured in slips (not shown) within the wellhead. The armored power cable 100 extends from the top of the coiled tubing 80 and is rough-cut to a fixed distance above the end of the coiled tubing slips. A packing sleeve 84 is then slipped over the power cable 100 and shouldered against coil tubing 80. The mandrel sleeve 85 is slipped over the armored cable and the electrical conductors 112, covered by their insulation 110 are threaded through and sealed within the mini-mandrel 90. The mini-mandrel 90 is compressed to shoulder against packing sleeve 84 and then the mandrel sleeve 85 is threaded into the interior threads of the coiled tubing slip 82. After the electrical conductors 112 are stripped and the male electrical conductive plugs 114 are installed of each of the conductors, the mini-mandrel cap 87 is threaded on the exterior threads of the mandrel sleeve 85 sealing the lower portion of the assembly and providing the groove 88 for the set screws 210 on the circumferential lower end of the PEEK cable splice sleeve 200 to be affixed after insertion of each of the conductors in their respective electrical pin connectors within the PEEK mandrel.
[0020]
[0021] Alternatively, the PEEK mandrel 282 can be molded as one piece with electrical connector sockets installed in the mandrel to allow insertion of the orthogonal male plugs through the aligned wellhead ports to the interior of the wellhead.
[0022] Continuing the discussion of the structure shown in