Perforating gun system
11506030 · 2022-11-22
Assignee
Inventors
Cpc classification
International classification
Abstract
An improved perforating gun is provided. The perforating gun includes an outer loading tube, an internal charge holder, an addressable switch housing, and a detonator housing. In some embodiments, the addressable switch housing and the detonator housing are separate components that are joined to the outer loading tube. In other embodiments, the addressable switch housing is integrally joined to a first portion of the internal charge holder and the detonator housing is integrally joined to a second portion of the internal charge holder. When detonated, a plurality of shaped charges create a plurality of perforations through a wellbore casing, the perforations being angularly offset from each other within a single perforation plane, optionally followed by a hydraulic fracturing stage.
Claims
1. A perforating gun comprising: an internal charge holder including a first charge orienting end and a second charge orienting end that cooperate to define a plurality of shaped charge openings that are angularly offset from each other; an outer loading tube including a cylindrical body defining a plurality of through-holes in alignment with the plurality of shaped charge openings; wherein the first charge orienting end includes an addressable switch housing for receiving an addressable switch therein; wherein the second charge orienting end includes a detonator housing for receiving at least a portion of a detonator therein; and wherein the first charge orienting end and the second charge orienting end each include a spring element and a contact plate, the spring element biasing the contact plate axially outward, with each contact plate defining a central opening therein.
2. The perforating gun of claim 1 wherein the first charge orienting end and the second charge orienting end each include a cylindrical sidewall defining a plurality of resilient clips for limiting axial travel of the respective contact plate.
3. The perforating gun of claim 1 further including an addressable switch, wherein the first charge orienting end includes a rectangular recess for the addressable switch.
4. The perforating gun of claim 1 wherein the first charge orienting end and the outer loading tube each define a fastener through-hole in alignment with each other.
5. The perforating gun of claim 1 wherein the second charge orienting end and the outer loading tube each define a fastener through-hole in alignment with each other.
6. The perforating gun of claim 1 wherein the first and second charge orienting ends are formed from one or more non-conductive materials, and wherein the outer loading tube and the contact plates are formed from one or more electrically conductive materials.
7. A perforating gun comprising: an outer loading tube including a first end opposite a second end; an internal charge holder within the outer loading tube for receiving a plurality of shaped charges that are angularly offset from each other; an addressable switch housing joined to the first end of the outer loading tube for receiving an addressable switch therein; a detonator housing joined to the second end of the outer loading tube for receiving at least a portion of a detonator therein; and wherein the addressable switch housing and the detonator housing each include a first portion inserted within the outer loading tube and a second portion extending axially outwardly therefrom, the second portion including a spring element and a contact plate, the spring element biasing the contact plate in a direction away from the internal charge holder, with each contact plate defining a through-hole therein.
8. The perforating gun of claim 7 wherein the internal charge holder includes a plurality of shaped charge openings arranged about a longitudinal axis of the perforating gun, and wherein the outer loading tube includes a plurality of through-holes in alignment with the plurality of shaped charge openings in the internal charge holder.
9. The perforating gun of claim 7 wherein the spring element is a compression spring, and wherein the through-hole is centrally located within the contact plate.
10. The perforating gun of claim 7 wherein the addressable switch housing and the detonator housing each include a plurality of resilient clips for limiting axial travel of the respective contact plate.
11. The perforating gun of claim 7 further including a detonator, wherein a first portion of the detonator is housed within the internal charge holder and a second portion of the detonator extends into the detonator housing.
12. The perforating gun of claim 7 further including an addressable switch, wherein the first portion of the addressable switch housing includes a rectangular cavity for receiving the addressable switch therein.
13. The perforating gun of claim 7 wherein the first portion of the addressable switch housing includes a cylindrical sidewall defining a first fastener through-hole in alignment with a second fastener through-hole in the outer loading tube.
14. The perforating gun of claim 7 wherein the first portion of the detonator housing includes a cylindrical sidewall defining a first fastener through-hole in alignment with a second fastener through-hole in the outer loading tube.
15. A method comprising: providing a perforating gun including an outer loading tube, an internal charge holder having a plurality of shaped charges that are angularly offset from each other, an addressable switch housing having addressable switch therein, and a detonator having least a portion of a detonator therein, wherein the addressable switch housing and the detonator housing each include a spring element that bias a contact plate in an axially outward direction; positioning the perforating gun within a wellbore having a wellbore casing; and detonating the plurality of shaped charges for creating a plurality of perforations through the wellbore casing, wherein the plurality of perforations are angularly offset from each other within a single perforation plane.
16. The method of claim 15 wherein the plurality of perforations include N-number of perforations that are angularly offset from each other by approximately 360/N degrees.
17. The method of claim 15 further including providing a hydraulic fracking fluid through the plurality of perforations.
18. A self-positioning perforating gun system comprising: a perforating gun; and first and second tandems joined to opposing ends of the perforating gun; wherein the perforating gun includes: an outer loading tube including a first end opposite a second end, an internal charge holder within the outer loading tube including a plurality of shaped charges that are angularly offset from each other, an addressable switch housing including an addressable switch therein, and a detonator housing including at least a portion of a detonator therein, wherein the addressable switch housing and the detonator housing each include a spring element and a contact plate, the spring element biasing the contact plate in an axially outward direction.
19. The system of claim 18 wherein the internal charge holder includes a first charge orienting end and a second charge orienting end, and wherein the addressable switch housing is integrally joined to the first charge orienting end and the detonator housing is integrally joined to the second charge orienting end.
20. The system of claim 18 wherein the addressable switch housing and the detonator housing are reach removably coupled to the internal charge holder on opposing ends thereof.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The various embodiments will hereinafter be described in conjunction with the following drawing figures, wherein like numerals denote like elements, and wherein:
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DETAILED DESCRIPTION
(8) The following detailed description is merely exemplary in nature and is not intended to limit the oilfield perforating systems and methods as described herein. Furthermore, there is no intention to be bound by any theory presented in the preceding background or the following detailed description. The description is not in any way meant to limit the scope of any present or subsequent related claims.
(9) As used here, the terms “above” and “below”; “up” and “down”; “upper” and “lower”; “upwardly” and “downwardly”; and other like terms indicating relative positions above or below a given point or element are used in this description to more clearly describe some embodiments. However, when applied to equipment and methods for use in wells that are deviated or horizontal, such terms may refer to a left to right, right to left, or diagonal relationship as appropriate.
(10) Referring now to
(11) As also shown in
(12) As noted above, the perforating gun 10 includes a switch housing 16 and a detonator housing 18. Each housing 16, 18 is made out of an electrically insulating material and is partially received within the outer loading tube 14. In particular, each housing 16, 18 includes a cylindrical construction having a first, small-diameter portion 34 and a second, large-diameter portion 36. The small-diameter portion 34 includes an outer diameter that is approximately equal to the outer diameter of the internal charge holder 12. The large-diameter portion 36 includes an outer diameter that greater than the outer diameter of the outer loading tube 14 as best shown in
(13) As also shown in
(14) As shown in
(15) Referring now to
(16) More particular, the perforating gun 70 of
(17) The first and second charge orienting ends 74A, 74B also include a cylindrical sidewall 82 having a plurality of resilient clips 84, optionally three clips. The resilient clips 84 are integrally formed with the outer cylindrical sidewall 82 to limit axial travel of respective first and second contact plates 86, 88. Each contact plate 86, 88 is formed from a conductive material and includes a through hole for receiving a contact pin or electrical wiring. The contact plates 86, 88 are biased outwardly by first and second compression springs 90, 92 which are also seated within the respective charge orienting ends 74A, 74B. The first charge orienting end 74A includes a further contact plate 94 that is seated opposite the first contact plate 94, separating the first compression spring 90 from the addressable switch 96. The addressable switch 96 is seated within a rectangular recess 98 in the first charge orienting end 74A. At least a portion of the detonator 100 extends through a circular opening 102 in the bottom face 104 of the second charge orienting end 74B.
(18) Operation of the perforating gun is identical for both embodiments above. The detonator 52, 100, when ignited, will fire the shaped charges, creating a plurality of angularly offset perforations within a single perforation plane in a wellbore casing. The perforation plane includes three perforation jets in the illustrated embodiments, the perforation jets being angularly offset by 120 degrees about the longitudinal axis of the perforating gun 10. Other embodiments can include greater or fewer number of perforation jets, including four perforation jets that are angularly offset by 90 degrees, for example. Further by example, other embodiments can include N-number of perforations that are angularly offset by 360/N degrees. The perforation jets are orthogonal to the wellbore axis. An adjacent perforation gun can generate perforations that are in-phase or out-of-phase with the perforations generated by the perforating gun 10, 70. Detonation can be followed by a hydraulic fracturing treatment, which creates a hydrostatic pressure for fracturing the surrounding geologic formation in the radial direction for reaching a hydrocarbon formation.
(19) The above description is that of current embodiments of the invention. Various alterations and changes can be made without departing from the spirit and broader aspects of the invention as defined in the appended claims, which are to be interpreted in accordance with the principles of patent law including the doctrine of equivalents. Any reference to elements in the singular, for example, using the articles “a,” “an,” “the,” or “said,” is not to be construed as limiting the element to the singular.