CN212389305U - Spring and hydraulic reinforcement setting packer - Google Patents

Spring and hydraulic reinforcement setting packer Download PDF

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Publication number
CN212389305U
CN212389305U CN202021523465.2U CN202021523465U CN212389305U CN 212389305 U CN212389305 U CN 212389305U CN 202021523465 U CN202021523465 U CN 202021523465U CN 212389305 U CN212389305 U CN 212389305U
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China
Prior art keywords
sleeve
cover
hydraulic
spring
piston
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CN202021523465.2U
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Chinese (zh)
Inventor
高志刚
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Harbin Xiang'an Electronic Technology Co.,Ltd.
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高志刚
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Abstract

The utility model belongs to the technical field of the oil field instrument in the pit, especially, relate to a spring and hydraulic pressure reinforcement setting packer, including top connection, center tube, packing element, setting mechanism and lower clutch, the structure of setting mechanism includes the spring, supports cover, hydraulic pressure cover, piston cover, jump ring and soluble alloy cover, and wherein, jump ring fixed mounting is on the center tube, and the outside of jump ring corresponds with the jump ring and is provided with the jump ring cover, and hydraulic pressure cover passes through screw thread fixed connection on the center tube, is provided with the oil pocket between hydraulic pressure cover and the center tube, and the oil pocket intussuseption is filled with hydraulic oil, soluble alloy cover in the outside of supporting the cover, the upper end of soluble alloy cover is to sheathe in at hydraulic pressure, the lower extreme of soluble alloy cover supports on the support cover, the spring clamp support the cover with the lower clutch between. The underground automatic setting mode is adopted, ground construction is not needed during setting, the construction cost is greatly reduced, and potential safety hazards caused by high-pressure operation are avoided.

Description

Spring and hydraulic reinforcement setting packer
Technical Field
The invention belongs to the technical field of downhole tools, and particularly relates to a spring and hydraulic reinforcement setting packer.
Background
The compression packer is a downhole tool commonly used in the production process of oil fields, and the compression packer structurally comprises a central tube, a rubber cylinder and a setting and unsetting mechanism, wherein the rubber cylinder and the setting and unsetting mechanism are both sleeved on the outer side of the central tube. When setting, the setting mechanism applies axial pressure to the rubber sleeve, so that the rubber sleeve expands outwards after being compressed in the axial direction, the diameter is increased, and setting of the packer is realized. In the prior art, the power of the setting mechanism in the packer is from central pipe pressing, but the process mode needs to use a large-scale high-pressure pump truck, so that the construction cost is high, and the risk of hurting people due to high-pressure leakage exists.
Disclosure of Invention
In order to solve the technical problems in the background technology, the invention provides a spring and hydraulic boosting setting packer.
The technical problem solved by the invention is realized by adopting the following technical scheme:
the invention comprises an upper joint, a central pipe, a rubber cylinder, a setting mechanism and a lower joint, wherein the upper joint, the central pipe and the lower joint are connected into a whole from top to bottom, the rubber cylinder and the setting mechanism are sleeved on the central pipe, the setting mechanism structurally comprises a spring, a support sleeve, a hydraulic sleeve, a piston sleeve, a clamp spring and a soluble alloy sleeve, all the parts are sleeved on the outer side of the central pipe, the clamp spring is fixedly arranged on the central pipe, the outer side of the clamp spring is provided with the clamp spring sleeve corresponding to the clamp spring, the upper end of the clamp spring sleeve is abutted against the rubber cylinder, the inner side of the lower end of the clamp spring sleeve is abutted against the upper end surface of the piston, the outer side of the lower end of the clamp spring sleeve is abutted against the upper end of the piston sleeve, the lower end of the piston sleeve is abutted against the upper end of the hydraulic sleeve, the hydraulic sleeve is fixedly, hydraulic oil is communicated to the space at the lower side of the piston through a communicating hole processed on the hydraulic sleeve, the upper end of the supporting sleeve is inserted into the lower end of the oil cavity, the soluble alloy sleeve is sleeved outside the supporting sleeve, the upper end of the soluble alloy sleeve abuts against the hydraulic sleeve, the lower end of the soluble alloy sleeve abuts against the supporting sleeve, and the spring is clamped between the supporting sleeve and the lower joint;
the effective bearing area of the lower side of the piston is larger than that of the upper end of the support sleeve.
The soluble alloy sleeve is made of aluminum magnesium alloy.
The invention has the beneficial effects that: the invention changes the traditional pressing setting mode of the compression packer and adopts the underground automatic setting mode instead, and ground construction is not needed during setting, thereby greatly reducing the construction cost and avoiding potential safety hazard caused by high-pressure operation.
Drawings
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is an enlarged view of a portion of the setting mechanism of fig. 1.
In the figure: 1-upper connector, 2-central tube, 3-rubber cylinder, 4-snap spring sleeve, 5-piston sleeve, 6-piston, 7-hydraulic sleeve, 8-hydraulic oil, 9-soluble alloy sleeve, 10-support sleeve, 11-spring, 12-lower connector, 13-pressure relief hole, 14-snap spring and 15-snap spring hanger.
Detailed Description
The technical scheme of the invention is further explained by combining the accompanying drawings as follows:
as shown in fig. 1, the present embodiment includes an upper joint 1, a central tube 2, a packing element 3, a setting mechanism and a lower joint 12, the upper joint 1, the central tube 2 and the lower joint 12 are connected from top to bottom into a whole, and the packing element 3 and the setting mechanism are both sleeved on the central tube 2. The above is a common basic structure in the prior art, and is not described herein again.
As shown in fig. 2, in the technical scheme of the invention, the structure of the setting mechanism comprises a spring 11, a support sleeve 10, a hydraulic sleeve 7, a piston 6, a piston sleeve 5, a snap spring sleeve 4, a snap spring 14 and a soluble alloy sleeve 9, which are all sleeved outside a central tube 2, wherein the snap spring 14 is fixedly installed on the central tube 2, the snap spring sleeve 4 is arranged outside the snap spring 14 and corresponds to the snap spring 14, the upper end of the snap spring sleeve 4 abuts against the rubber cylinder 3, the inner side of the lower end of the snap spring sleeve 4 abuts against the upper end surface of the piston 6, the outer side of the lower end of the snap spring sleeve 4 abuts against the upper end of the piston sleeve 5, the lower end of the piston sleeve 5 abuts against the upper end of the hydraulic sleeve 7, the hydraulic sleeve 7 is fixedly connected to the central tube 2 through threads, an oil cavity is arranged between the hydraulic sleeve 7 and the central tube 2, the hydraulic oil cavity 8 is filled in the hydraulic oil cavity 8, the, the upper end of the supporting sleeve 10 is inserted into the lower end of the oil chamber, the soluble alloy sleeve 9 is sleeved outside the supporting sleeve 10, the upper end of the soluble alloy sleeve 9 abuts against the hydraulic sleeve 7, the lower end of the soluble alloy sleeve 9 abuts against the supporting sleeve 10, and the spring 11 is clamped between the supporting sleeve 10 and the lower joint 12. The effective bearing area of the lower side of the piston 6 is larger than that of the upper end of the support sleeve 10.
The packer of the invention has the following use and installation processes:
when the packer is installed, the packer is connected to an oil pipe column and is lowered to a preset position in a well, a weak acid environment in the well is created in a medicament feeding mode, so that the soluble alloy sleeve 9 is slowly dissolved, after the soluble alloy sleeve 9 is dissolved, the support between the hydraulic sleeve 7 and the support sleeve 10 is released, the support sleeve 10 can slide upwards under the pushing of the spring 11, the piston 6 is pushed by the support sleeve 10 which slides upwards under the pressure conduction action of the hydraulic oil 8, the clamp spring sleeve 4 is pushed upwards by the piston 6 to slide upwards, and the rubber sleeve 3 is compressed, so that the setting of the packer is realized.
In the above process, the spring 11 provides a motive power for setting, and the motive power is amplified by a hydraulic principle and then acts on the piston 6 to generate a sufficient setting pressure, and theoretically, under the condition that the parameters of the spring 11 are fixed, the larger the ratio of the effective pressure-bearing area of the lower side of the piston 6 to the effective pressure-bearing area of the upper end of the support sleeve 10 is, the larger the setting pressure is.
In this embodiment, the clamp spring 14 is hung 15 through the clamp spring and is installed on center tube 2, and the clamp spring is hung 15 and is connected with center tube 2 through the shear pin, and during the deblocking, lift the tubular column and make the shear pin cut off, and clamp spring 14 hangs 15 with the clamp spring and alright follow center tube 2 and slide downwards to make packing element 3 unset.
The soluble alloy sleeve 9 is made of aluminum magnesium alloy, and the aluminum magnesium alloy has enough structural strength and is easy to dissolve in an acid environment, so that the soluble alloy sleeve 9 is a preferable material.
The invention changes the traditional pressing setting mode of the compression packer and adopts the underground automatic setting mode instead, and ground construction is not needed during setting, thereby greatly reducing the construction cost and avoiding potential safety hazard caused by high-pressure operation.

Claims (2)

1. The utility model provides a spring and hydraulic pressure reinforcement setting packer, includes top connection (1), center tube (2), packing element (3), sets up and seals mechanism and lower clutch (12), and top connection (1), center tube (2) and lower clutch (12) from top to bottom link into an integrated entity, and packing element (3) and set up and seal the equal suit of mechanism and on center tube (2), its characterized in that: the structure of the sitting sealing mechanism comprises a spring (11), a supporting sleeve (10), a hydraulic sleeve (7), a piston (6), a piston sleeve (5), a clamp spring sleeve (4), a clamp spring (14) and a soluble alloy sleeve (9), wherein the components are sleeved on the outer side of a central tube (2), the clamp spring (14) is fixedly installed on the central tube (2), the clamp spring sleeve (4) is arranged on the outer side of the clamp spring (14) and corresponds to the clamp spring (14), the upper end of the clamp spring sleeve (4) is abutted against a rubber tube (3), the inner side of the lower end of the clamp spring sleeve (4) is abutted against the upper end face of the piston (6), the outer side of the lower end of the clamp spring sleeve (4) is abutted against the upper end of the piston sleeve (5), the lower end of the piston sleeve (5) is abutted against the upper end of the hydraulic sleeve (7), the hydraulic sleeve (7) is fixedly connected onto the central tube (2) through threads, and an oil cavity is arranged between the hydraulic sleeve (7) and, the oil cavity is filled with hydraulic oil (8), the hydraulic oil (8) is communicated to the lower side space of the piston (6) through a communicating hole processed on the hydraulic sleeve (7), the upper end of the support sleeve (10) is inserted into the lower end of the oil cavity, the soluble alloy sleeve (9) is sleeved on the outer side of the support sleeve (10), the upper end of the soluble alloy sleeve (9) abuts against the hydraulic sleeve (7), the lower end of the soluble alloy sleeve (9) abuts against the support sleeve (10), and the spring (11) is clamped between the support sleeve (10) and the lower joint (12);
the effective bearing area of the lower side of the piston (6) is larger than that of the upper end of the support sleeve (10).
2. The spring and hydraulic power set packer of claim 1, wherein: the soluble alloy sleeve (9) is made of aluminum magnesium alloy.
CN202021523465.2U 2019-10-29 2020-07-28 Spring and hydraulic reinforcement setting packer Active CN212389305U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN2019218355834 2019-10-29
CN201921835583 2019-10-29

Publications (1)

Publication Number Publication Date
CN212389305U true CN212389305U (en) 2021-01-22

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021523465.2U Active CN212389305U (en) 2019-10-29 2020-07-28 Spring and hydraulic reinforcement setting packer

Country Status (1)

Country Link
CN (1) CN212389305U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113278978A (en) * 2021-05-12 2021-08-20 中国石油大学(华东) Method for protecting inner wall of water injection well casing by sacrificial anode

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113278978A (en) * 2021-05-12 2021-08-20 中国石油大学(华东) Method for protecting inner wall of water injection well casing by sacrificial anode

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GR01 Patent grant
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TR01 Transfer of patent right

Effective date of registration: 20220214

Address after: 150000 No. 31, floor 3, No. 117, Taishan Road, Nangang concentration area, economic development zone, Harbin, Heilongjiang Province

Patentee after: Harbin Xiang'an Electronic Technology Co.,Ltd.

Address before: 163000 Room 401, gate 4, No. 2-3, Qingxin community, Qingxin South Street, Ranghulu District, Daqing City, Heilongjiang Province

Patentee before: Gao Zhigang

TR01 Transfer of patent right