Oil-water well agent fixed-point delivery device and use method

Through the use of fixed-point delivery devices for oil and water wells, the problems of waste, corrosion and low construction efficiency of medicines in the prior art have been solved, and the precise delivery and efficient descaling of medicines have been achieved, which are suitable for complex well conditions.

CN120211685AActive Publication Date: 2025-06-27SHENGLI OIL FIELD CHANGHAI PETROLEUM TECH CO LTD +1
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Patent Information

Application Number
CN202510711085.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-29
Publication Date
2025-06-27
Estimated Expiration
2045-05-29

AI Technical Summary

Technical Problem

The existing oil-water well pipe column scale treatment technology has problems such as waste of chemicals, serious corrosion and low construction efficiency. It cannot accurately act on the scale points of the pipe column, and it has poor adaptability to complex well conditions.

Method used

The oil-water well chemical agent fixed-point feeder is used to drive the screw to rotate through the motor, drive the screw nut and piston to reciprocate, and use the nozzle to conduct fixed-point spraying, so that the chemical agent is accurately transported to the scaling part of the pipe column.

Benefits of technology

Reduce the total amount of agents, avoid drug residues in non-target areas, reduce the risk of column corrosion, improve descaling efficiency and economy, and adapt to complex well conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of oil-water well pipe column scaling treatment, in particular to an oil-water well agent fixed-point delivery device and a using method. According to the technical scheme, a guide head is installed at the lower end of a lower shell; a motor shell is installed in an inner cavity of the upper shell, a motor is installed in the motor shell, the output end of the motor is connected with a lead screw through a transmission shaft, the exterior of the lead screw is matched with a lead screw nut, the outer wall of the lead screw nut is matched with a strip-shaped groove formed in the outer wall of the upper shell through a second screw, and the lead screw nut is driven to move along the lead screw through rotation movement of the motor. The lower side of the lead screw nut is movably connected with the upper end of a connecting rod of a piston, a medicament is contained in an inner cavity of the lower shell, the piston reciprocates up and down in the inner cavity of the lower shell, and the medicament is pushed to be sprayed to the scaling or wax precipitation position of the inner wall of an underground pipe at a fixed point through a nozzle installed on a guide head. And agent residues in a non-target area are avoided, so that the corrosion risk of the tubular column is reduced, and the descaling efficiency and economical efficiency are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of scale treatment for oil and water well strings, and particularly to a chemical agent fixed-point injector for oil and water wells and a using method thereof. Background Art

[0002] During the oil extraction process, the inner wall of the oil and water well string is prone to form scale (such as calcium carbonate, sulfate, etc.) due to chemical reactions of water quality or oil-water mixtures, resulting in a reduction in the inner diameter of the well string, an increase in flow resistance, and even blockage of the production channel in severe cases. Currently, the common scale removal methods in oil fields are mechanical scale removal or chemical scale removal methods. The mechanical scale removal method uses a mechanical scraping method, and the construction time requires 3 - 5 days, and it has poor adaptability to complex well conditions; chemical scale removal mainly uses full well section circulation injection of chemical agents, which has the following defects: First, chemical agent waste: the agent is dispersed throughout the well section, and the agent concentration in the target scaling area is insufficient, and excessive dosing is required to ensure the effect, resulting in high costs; second, serious corrosion: excessive agents in long-term contact with the metal surface of the well string without scaling will accelerate the corrosion of the pipe material and shorten the service life of the well string; third, low construction efficiency: multiple cycles of flushing are required, and the operation cycle is long, affecting the normal production of oil wells; in short, they all cannot accurately act on the scaling points of the well string and have poor adaptability to complex well conditions. Therefore, there is an urgent need for a technology that can accurately deliver agents, precisely control the dosage, and reduce corrosion. Summary of the Invention

[0003] The purpose of the present invention is to address the above-mentioned defects existing in the prior art, and provide a chemical agent fixed-point injector for oil and water wells and a using method thereof. Through the directional spraying technology, the agent is accurately delivered to the scaling part of the well string, reducing the total amount of agent used, avoiding the agent residue in non-target areas, thereby reducing the risk of well string corrosion and improving the scale removal efficiency and economy.

[0004] A chemical agent fixed-point delivery device for oil and water wells mentioned in the present invention has the following technical solution: It includes a releasing cap and an upper housing. The releasing cap is installed at the upper end of the upper housing. Among them, it further includes a motor, a motor housing, a transmission shaft, an intermediate connector, a universal joint, a lead screw nut, a lead screw, a piston, a lower housing, a nozzle, and a guiding head. The lower end of the upper housing is connected to the lower housing, and the guiding head is installed at the lower end of the lower housing; the inner cavity of the upper housing installs the motor housing, the motor is installed inside the motor housing, the output end of the motor is connected to the transmission shaft, the transmission shaft passes through the intermediate connector and is connected to the lead screw through the universal joint, the outside of the lead screw is matched with the lead screw nut, the outer wall of the lead screw nut is matched with a strip-shaped groove provided on the outer wall of the upper housing through a second screw, and the lead screw nut moves along the lead screw by the rotational movement of the motor; the lower side of the lead screw nut is movably connected to the upper end of the connecting rod of the piston. The piston is located in the inner cavity of the lower housing, and the chemical agent is filled in the inner cavity of the lower housing. The piston reciprocates up and down in the inner cavity of the lower housing, pushing the chemical agent downward along the lower housing, and is fixedly sprayed onto the scaling or wax deposition on the inner wall of the downhole tubing through the nozzle installed on the guiding head.

[0005] Preferably, the above-mentioned piston includes a connecting rod, a first upper joint, a connecting hole, a liquid changing groove, a piston head, and a one-way valve installation cavity. One end of the connecting rod is the first upper joint, and the other end is connected to the piston head; one or more connecting holes are provided at the first upper joint and are connected to the lead screw nut through bolts; a plurality of liquid changing grooves are provided on the outer wall of the connecting rod, and a one-way valve installation cavity is provided inside the piston head for installing a first one-way valve; a limiting protrusion is provided on the upper side of the connecting rod, and more than one set of sealing ring grooves are provided on the outer side of the piston head for installing sealing rings.

[0006] Preferably, the above-mentioned lead screw includes a lead screw body, a second upper joint, a lower joint, an external thread, a positive spiral thread, and a reverse circulation thread. A second upper joint is provided at one end of the lead screw body, and a lower joint is provided at the other end. An external thread is provided on the outer side of the second upper joint, and a commutation track composed of a positive spiral thread and a reverse circulation thread is provided on the outer wall of the lead screw body. The lead screw nut moves forward along the positive spiral thread and moves backward along the reverse circulation thread.

[0007] Preferably, the above-mentioned lead screw nut includes a first fixing hole, a second fixing hole, a nut body, a lead screw connection cavity, a piston rod connection cavity, and a half-moon key groove. Axially in the middle of the nut body, there are a lead screw connection cavity and a piston rod connection cavity. In the vertical direction of the lead screw connection cavity, there is a half-moon key groove for installing a half-moon key. Radially on the outer wall of the nut body, there are a first fixing hole and a second fixing hole. The nut body is connected to the strip groove on the outer wall of the upper housing by installing a second screw through the first fixing hole. A half-moon key and a limit bolt are installed through the half-moon key groove, so that the half-moon key is connected in cooperation with the reversing track of the lead screw. The second screw on the strip groove is used to limit the rotation of the lead screw nut and move along the position of the strip groove; the second fixing hole installs a bolt to connect the connection hole of the piston with the second fixing hole to realize the connection between the first upper joint of the piston and the nut body, and then the piston reciprocates under the drive of the lead screw nut.

[0008] Preferably, the above-mentioned half-moon key includes a half-moon key body, a body tail handle, and an arc-shaped half-moon. At the tail of the half-moon key body, there is a cylindrical body tail handle. At the front end of the half-moon key body, there is an arc-shaped half-moon, which cooperates with the reversing track of the lead screw through the arc-shaped half-moon.

[0009] Preferably, a limit bolt is installed on the outside of the above-mentioned half-moon key. The front end of the limit bolt is provided with a cylindrical end, and the cylindrical end is sleeved on the outside of the body tail handle. The outside of the limit bolt is provided with an external thread for threaded connection with the half-moon key groove.

[0010] Preferably, the front end of the above-mentioned arc-shaped half-moon is an arc-shaped groove structure for cooperating with the reversing track of the lead screw. The two sides of the arc-shaped half-moon are arc-shaped convex structures, which are convenient for reversing in the reversing track.

[0011] Preferably, the connection hole of the first upper joint of the above-mentioned piston is fixedly connected to the second fixing hole through a bolt to realize the connection and fixation between the piston and the lead screw nut. Then, under the drive of the movement of the lead screw nut, the position of the piston is driven to move.

[0012] Preferably, the above-mentioned guide head includes a guide head body, a guide head joint, a pressure balance hole, a check valve spring installation hole, an external thread, a sealing ring installation groove, a nozzle installation hole, a check valve installation cavity, and a support frame installation cavity. The inner cavity of the guide head body is successively a pressure balance hole, a check valve spring installation hole, a check valve installation cavity, and a support frame installation cavity from bottom to top. A check valve spring is installed in the check valve spring installation hole, a second check valve is installed in the check valve installation cavity, and a support frame is installed in the support frame installation cavity; on the outer wall of the upper part of the guide head body, there is more than one group of nozzle installation holes for installing nozzles; on the upper part of the guide head body, there is a guide head joint. On the outside of the guide head joint, there are an external thread and a sealing ring installation groove. The external thread is used for threaded connection with the lower housing, and the sealing ring installation groove is used for installing a sealing ring.

[0013] The usage method of the chemical agent fixed-point injector for oil and water wells mentioned in the present invention includes the following processes: After the chemical agent fixed-point injector for oil and water wells is lowered to the target position in the oil well borehole, start the motor and control the motor to operate at a relatively low speed. The output end of the motor drives the lead screw to rotate through a transmission shaft and a universal joint. Since a lead screw nut is installed outside the lead screw, and the outer wall of the lead screw nut is matched with a strip-shaped groove provided on the outer wall of the upper housing through a second screw, and a half-moon key installed in the lead screw nut is matched with the positive spiral thread of the reversing track on the lead screw. In this way, under the rotational movement of the lead screw, the lead screw nut moves downward along the strip-shaped groove; in addition, since the lead screw nut is also connected to the piston, the piston is driven to move downward, thereby pushing the chemical agent downward along the lower housing. At this time, the first one-way valve is in a closed state, and the chemical agent pushes the second one-way valve to move downward. The chemical agent is sprayed through the nozzle installed on the guide head to the scaling or waxing place on the inner wall of the downhole tubing; after a period of time, the piston head is pushed to the bottom of the lower housing, and part of the chemical agent is injected; Then, the motor continues to rotate, and the half-moon key enters the reverse circulation thread of the reversing track on the lead screw, thereby driving the lead screw nut to move reversely along the lead screw; at this time, the first one-way valve is in an open state, and the second one-way valve returns to its original position under the action of the one-way valve spring, blocking the channel for chemical agent spraying; and at this time, the liquid in the wellbore enters the inner cavity of the upper housing through the strip-shaped groove on the outer wall of the upper housing, and then enters the chemical agent cavity below the piston through the liquid-changing groove on the outer wall of the connecting rod and the first one-way valve until the piston moves up to the upper dead center and stops the liquid intake; After that, the half-moon key continues to repeat the commutation in the reversing track, and the piston moves downward again, continuing to spray the mixed chemical agent through the nozzle to the scaling or waxing place on the inner wall of the downhole tubing. After multiple cycles, the chemical agent is completely discharged.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: In the present invention, the motor drives the lead screw to rotate, thereby driving the lead screw nut to move reciprocally, and then driving the piston connected to the lead screw nut to move reciprocally, accurately conveying the chemical agent in the chemical agent cavity to the scaling part through the nozzle, reducing the total amount of chemical agent used, avoiding the chemical agent residue in the non-target area, thereby reducing the risk of pipe string corrosion and improving the scaling removal efficiency and economy; in addition, the half-moon key adopted in the present invention is matched with the reversing track of the lead screw, which can realize the reciprocating movement of the lead screw nut; furthermore, the liquid in the wellbore enters the inner cavity of the upper housing through the strip-shaped groove on the outer wall of the upper housing, and then enters the chemical agent cavity below the piston through the liquid-changing groove on the outer wall of the connecting rod and the first one-way valve, which can realize the mixing of the chemical agent, and through multiple reciprocating movements, the complete injection of the chemical agent is realized, improving the use efficiency of the chemical agent. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1It is a schematic structural diagram of the piston of the present invention at the top dead center; Figure 2 It is a schematic structural diagram of the piston of the present invention at the bottom dead center; Figure 3 It is a schematic structural diagram of the piston of the present invention; Figure 4 is Figure 3 the schematic C-C sectional view in Figure 5 It is a schematic structural diagram of the lead screw of the present invention; Figure 6 It is a schematic structural diagram of the lead screw nut of the present invention; Figure 7 is Figure 6 the schematic A-A sectional view in Figure 8 is Figure 7 the schematic structural diagram of installing the limit bolt in Figure 9 It is a schematic structural diagram of the gib key; Figure 10 It is a schematic side view of the gib key; Figure 11 It is a schematic top view of the gib key; Figure 12 It is a schematic external shape diagram of the guide head Figure 13 It is a schematic structural diagram of the guide head; Figure 14 is Figure 13 the schematic B-B sectional view in In the above figure: release cap 1, upper housing 2, motor 3, motor housing 4, transmission shaft 5, intermediate connector 6, first retaining ring 7, retaining sleeve 8, universal joint 9, lead screw nut 10, lead screw 11, piston 12, check valve gland 13, lower housing 14, support frame 15, nozzle 16, second check valve 17, check valve spring 18, guide head 19, first check valve 20, sealing ring 21, second retaining ring 22, second screw 23, third screw 24, first thrust bearing 25, second thrust bearing 26, shaft circlip 27, cross recessed countersunk head screw 28, hole circlip 29, single-core blue socket 30, coupling 31, motor set screw 32, first screw 33, strip groove 34, gib key 35, limit bolt 36; First fixing hole 10.1, second fixing hole 10.2, nut body 10.3, screw connection chamber 10.4, piston rod connection chamber 10.5, crescent keyway 10.6, screw body 11.1, second upper joint 11.2, lower joint 11.3, external thread 11.4, positive helical thread 11.5, reverse circulation thread 11.6, connecting rod 12.1, limiting protrusion 12.2, first upper joint 12.3, connecting hole 12.4, liquid exchange tank 1 2.5, piston head 12.6, one-way valve installation cavity 12.7, sealing ring groove 12.8, guide head body 19.1, guide head joint 19.2, pressure balance hole 19.3, one-way valve spring installation hole 19.4, external thread 19.5, sealing ring installation groove 19.6, nozzle installation hole 19.7, one-way valve installation cavity 19.8, support frame installation cavity 19.9, crescent key body 35.1, body tail handle 35.2, arc crescent 35.3. DETAILED DESCRIPTION

[0016] The preferred embodiments of the present invention are described below in conjunction with the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.

[0017] Example 1, reference Figures 1-14 The invention relates to a fixed-point delivery device for oil and water well medicine, comprising a hand-release cap 1 and an upper shell 2, wherein a single-core flange socket 30 is installed through a hole in the upper end of the upper shell 2 with an elastic retaining ring 29, and the hand-release cap 1 is installed on the outside, wherein the motor 3, the motor housing 4, the transmission shaft 5, the intermediate connector 6, the universal joint 9, the screw nut 10, the screw 11, the piston 12, the lower shell 14, the nozzle 16, and the guide head 19 are also included, wherein the lower end of the upper shell 2 is connected to the lower shell 14, and the guide head 19 is installed at the lower end of the lower shell 14; the inner cavity of the upper shell 2 is installed with the motor housing 4 through a cross-slot countersunk screw 28, the motor 3 is installed in the motor housing 4, and the motor 3 is fixed to the motor housing 4 through a motor set screw 32, and the output end of the motor 3 is connected to the transmission shaft 5 through a coupling 31, The transmission shaft 5 passes through the intermediate connector 6 and is connected to the lead screw 11 through the universal joint 9, and the intermediate connector 6 is fixed by the first screw 33. The outside of the lead screw 11 cooperates with the lead screw nut 10, and the outer wall of the lead screw nut 10 cooperates with the strip groove 34 provided on the outer wall of the upper shell 2 through the second screw 23. The lead screw nut 10 is driven to move along the lead screw 11 through the rotation of the motor 3; the lower side of the lead screw nut 10 is movably connected to the upper end of the connecting rod 12.1 of the piston 12, and the piston 12 is located in the inner cavity of the lower shell 14, and the inner cavity of the lower shell 14 contains the agent. The piston 12 reciprocates up and down in the inner cavity of the lower shell 14, pushing the agent downward along the lower shell 14, and spraying it to the scaling or wax deposition on the inner wall of the downhole pipe through the nozzle 16 installed on the guide head 19.

[0018] Among them, a first thrust bearing 25 and a second thrust bearing 26 are installed on the upper part of the transmission shaft 5. A first retaining ring 7, a sealing ring 21 and a retaining sleeve 8 are installed between the lower part of the transmission shaft 5 and the intermediate connecting body 6. The outer side of the intermediate connecting body 6 is connected to the motor housing 4 through a third screw 24. An axial circlip 27 is provided at the lower part of the coupling 31 to reduce noise and friction. A second retaining ring 22 is installed at the lower part of the universal joint 9. Refer to Figure 3 and Figure 4 , the piston 12 mentioned in the present invention includes a connecting rod 12.1, a first upper joint 12.3, a connecting hole 12.4, a liquid exchange groove 12.5, a piston head 12.6, and a one-way valve installation cavity 12.7. One end of the connecting rod 12.1 is the first upper joint 12.3, and the other end is connected to the piston head 12.6. One or more connecting holes 12.4 are provided at the first upper joint 12.3 and are connected to the lead screw nut 10 through bolts. A plurality of liquid exchange grooves 12.5 are provided on the outer wall of the connecting rod 12.1. A one-way valve installation cavity 12.7 is provided inside the piston head 12.6 for installing a first one-way valve 20. Among them, a check valve gland 13 is installed at the lower part of the piston head 12.6.

[0019] During use, when the piston 12 pushes the medicament downward, the first one-way valve 20 is in a closed state, and the medicament is compressed and then sprayed through the nozzle 16 to the scaling or waxing part on the inner wall of the downhole tubing. When the piston 12 returns upward, the first one-way valve 20 is in an open state. At this time, the liquid in the wellbore enters the inner cavity of the upper housing 2 through the strip-shaped groove 34 on the outer wall of the upper housing 2, and then enters the medicament cavity below the piston 12 through the liquid exchange groove 12.5 on the outer wall of the connecting rod 12.1 and the first one-way valve 20. Then, the piston 12 repeats moving downward to continue spraying the mixed medicament through the nozzle 16 to the scaling or waxing part on the inner wall of the downhole tubing until the medicament is completely ejected.

[0020] Among them, a limiting protrusion 12.2 is provided on the upper side of the above-mentioned connecting rod 12.1, and more than one set of sealing ring grooves 12.8 are provided on the outer side of the piston head 12.6 for installing the sealing ring 21.

[0021] Refer to Figure 5, the lead screw 11 mentioned in the present invention includes a lead screw body 11.1, a second upper joint 11.2, a lower joint 11.3, an external thread 11.4, a positive spiral thread 11.5, and a reverse circulation thread 11.6. A second upper joint 11.2 is provided at one end of the lead screw body 11.1, and a lower joint 11.3 is provided at the other end. An external thread 11.4 is provided on the outer side of the second upper joint 11.2. A reversing track composed of a positive spiral thread 11.5 and a reverse circulation thread 11.6 is provided on the outer wall of the lead screw body 11.1. The lead screw nut 10 moves forward along the positive spiral thread 11.5 and moves backward along the reverse circulation thread 11.6.

[0022] Refer to Figures 6-8 , the lead screw nut 10 mentioned in the present invention includes a first fixing hole 10.1, a second fixing hole 10.2, a nut body 10.3, a lead screw connection cavity 10.4, a piston rod connection cavity 10.5, and a half-moon key groove 10.6. A lead screw connection cavity 10.4 and a piston rod connection cavity 10.5 are axially provided in the middle of the nut body 10.3. A half-moon key groove 10.6 is provided in the vertical direction of the lead screw connection cavity 10.4 for installing a half-moon key 35. A first fixing hole 10.1 and a second fixing hole 10.2 are radially provided on the outer wall of the nut body 10.3. The nut body 10.3 is connected to the strip groove 34 on the outer wall of the upper housing 2 by installing a second screw 23 through the first fixing hole 10.1. The half-moon key 35 and a limit bolt 36 are installed through the half-moon key groove 10.6, so that the half-moon key 35 is in mating connection with the reversing track of the lead screw 11. The second screw 23 on the strip groove 34 is used to limit the rotation of the lead screw nut 10 and move along the position of the strip groove 34; a bolt is installed in the second fixing hole 10.2 to connect the connection hole 12.4 of the piston 12 with the second fixing hole 10.2 to realize the connection between the first upper joint 12.3 of the piston 12 and the nut body 10.3, and further realize the reciprocating movement of the piston 12 driven by the lead screw nut 10.

[0023] Refer to Figures 9-11 , the half-moon key 35 mentioned in the present invention includes a half-moon key body 35.1, a body tail handle 35.2, and an arc-shaped half-moon 35.3. A cylindrical body tail handle 35.2 is provided at the tail of the half-moon key body 35.1, and an arc-shaped half-moon 35.3 is provided at the front end of the half-moon key body 35.1. The arc-shaped half-moon 35.3 is used to cooperate with the reversing track of the lead screw 11.

[0024] Among them, a limit bolt 36 is installed on the outer side of the above-mentioned half-moon key 35. A cylindrical end is provided at the front end of the limit bolt 36, and the cylindrical end is sleeved on the outer side of the body tail handle 35.2. External threads are provided on the outer side of the limit bolt 36 for threaded connection with the half-moon key groove 10.6.

[0025] The front end of the above-mentioned arc-shaped crescent 35.3 is an arc-shaped groove structure for cooperating with the reversing track of the lead screw 11. The two sides of the arc-shaped crescent 35.3 are arc-shaped convex structures, which are convenient for reversing within the reversing track.

[0026] Among them, the connection hole 12.4 of the first upper joint 12.3 of the piston 12 is fixedly connected to the second fixing hole 10.2 by bolts, realizing the connection and fixation of the piston 12 and the lead screw nut 10. Furthermore, driven by the movement of the lead screw nut 10, the piston 12 is driven to move its position.

[0027] Refer to Figures 12-14 , the guiding head 19 mentioned in the present invention includes a guiding head body 19.1, a guiding head joint 19.2, a pressure balance hole 19.3, a check valve spring installation hole 19.4, an external thread 19.5, a sealing ring installation groove 19.6, a nozzle installation hole 19.7, a check valve installation cavity 19.8, and a support frame installation cavity 19.9. The inner cavity of the guiding head body 19.1 is successively the pressure balance hole 19.3, the check valve spring installation hole 19.4, the check valve installation cavity 19.8, and the support frame installation cavity 19.9 from bottom to top. A check valve spring 18 is installed in the check valve spring installation hole 19.4, a second check valve 17 is installed in the check valve installation cavity 19.8, and a support frame 15 is installed in the support frame installation cavity 19.9; a group of or more nozzle installation holes 19.7 are provided on the outer peripheral wall of the upper part of the guiding head body 19.1 for installing nozzles 16; a guiding head joint 19.2 is provided on the upper part of the guiding head body 19.1, and an external thread 19.5 and a sealing ring installation groove 19.6 are provided on the outside of the guiding head joint 19.2. The external thread 19.5 is used for threaded connection with the lower housing 14, and the sealing ring installation groove 19.6 is used for installing the sealing ring 21.

[0028] The using method of the chemical agent fixed-point delivery device mentioned in the present invention includes the following processes: I. Chemical agent injection: Open the guiding head 19, fill the chemical agent cavity of the lower housing 14 with the chemical agent. After the chemical agent is filled, connect the guiding head 19. II. Transportation: When the present invention is in transportation, it is necessary to pay attention to whether there is chemical agent flowing out of the guiding head 19 at the lower end. A sealing bag can be tied outside the guiding head 19 to prevent chemical agent leakage. III. Placement and chemical agent injection: Lower the chemical agent fixed-point injector mentioned in the present invention to the target position in the oil wellbore, start the motor 3, and control the motor 3 to operate at a lower speed. The output end of the motor 3 drives the lead screw 11 to rotate through the transmission shaft 5 and the universal joint 9. Since a lead screw nut 10 is installed outside the lead screw 11, and the outer wall of the lead screw nut 10 is engaged with the strip groove 34 provided on the outer wall of the upper housing 2 through the second screw 23, and the half-moon key 35 installed in the lead screw nut 10 is engaged with the positive spiral thread 11.5 of the reversing track on the lead screw 11. In this way, under the rotational movement of the lead screw 11, the lead screw nut 10 moves downward along the strip groove 34; in addition, since the lead screw nut 10 is also connected to the piston 12, the piston 12 is driven to move downward, thereby pushing the chemical agent downward along the lower housing 14. At this time, the first one-way valve 20 is in the closed state, and the chemical agent pushes the second one-way valve 17 to move downward, and the chemical agent is sprayed onto the scaling or waxing part of the inner wall of the downhole tubing through the nozzle 16 installed on the guide head 19; after a period of time, the piston head 12.6 is pushed to the bottom of the lower housing 14 to complete partial injection of the chemical agent; Then, the motor 3 continues to rotate, and the half-moon key 35 enters the reverse circulation thread 11.6 of the reversing track on the lead screw 11, thereby driving the lead screw nut 10 to move in the reverse direction along the lead screw 11; at this time, the first one-way valve 20 is in the open state, and the second one-way valve 17 returns to its original position under the action of the one-way valve spring 18, blocking the chemical agent spraying channel; and at this time, the liquid in the wellbore enters the inner cavity of the upper housing 2 through the strip groove 34 on the outer wall of the upper housing 2, and then enters the chemical agent cavity below the piston 12 through the liquid-changing groove 12.5 on the outer wall of the connecting rod 12.1 and the first one-way valve 20 until the piston 12 moves up to the top dead center to stop the liquid intake; After that, the half-moon key 35 continues to reverse in the reversing track, and the piston 12 moves downward again, and the mixed chemical agent is continuously sprayed onto the scaling or waxing part of the inner wall of the downhole tubing through the nozzle 16. After multiple cycles until the chemical agent is completely discharged.

[0029] The above is only some preferred embodiments of the present invention. Any person skilled in the art may modify the technical solutions described above or modify them into equivalent technical solutions. Therefore, the corresponding simple modifications or equivalent transformations made according to the technical solutions of the present invention all fall within the scope of protection required by the present invention.

Claims

1. A chemical fixed-point injector for oil and water wells, comprising a releasing cap (1) and an upper housing (2). The releasing cap (1) is installed at the upper end of the upper housing (2). It is characterized in that: It further includes a motor (3), a motor housing (4), a transmission shaft (5), an intermediate connector (6), a universal joint (9), a lead screw nut (10), a lead screw (11), a piston (12), a lower housing (14), a nozzle (16), and a guide head (19). The lower end of the upper housing (2) is connected to the lower housing (14), and the guide head (19) is installed at the lower end of the lower housing (14); the motor housing (4) is installed in the inner cavity of the upper housing (2), the motor (3) is installed in the motor housing (4), the output end of the motor (3) is connected to the transmission shaft (5), the transmission shaft (5) passes through the intermediate connector (6) and is connected to the lead screw (11) through the universal joint (9), the outside of the lead screw (11) is matched with the lead screw nut (10), the outer wall of the lead screw nut (10) is matched with a strip-shaped groove (34) provided on the outer wall of the upper housing (2) through a second screw (23), and the rotation of the motor (3) drives the lead screw nut (10) to move along the lead screw (11); the lower side of the lead screw nut (10) is movably connected to the upper end of a connecting rod (12.1) of the piston (12), the piston (12) is located in the inner cavity of the lower housing (14), and a chemical agent is filled in the inner cavity of the lower housing (14). The piston (12) reciprocates up and down in the inner cavity of the lower housing (14), pushing the chemical agent downward along the lower housing (14) and spraying it onto the scale or wax deposit on the inner wall of the downhole tubing through the nozzle (16) installed on the guide head (19) at a fixed point.

2. The chemical fixed-point injector for oil and water wells according to claim 1 is characterized in that: The piston (12) includes a connecting rod (12.1), a first upper joint (12.3), a connecting hole (12.4), a liquid exchange groove (12.5), a piston head (12.6), and a one-way valve installation cavity (12.7). One end of the connecting rod (12.1) is the first upper joint (12.3), and the other end is connected to the piston head (12.6); one or more connecting holes (12.4) are provided at the first upper joint (12.3) and are connected to the lead screw nut (10) through bolts; a plurality of liquid exchange grooves (12.5) are provided on the outer wall of the connecting rod (12.1), and a one-way valve installation cavity (12.7) is provided inside the piston head (12.6) for installing a first one-way valve (20); a limiting protrusion (12.2) is provided on the upper side of the connecting rod (12.1), and more than one set of sealing ring grooves (12.8) are provided on the outside of the piston head (12.6) for installing sealing rings (21).

3. The chemical fixed-point injector for oil and water wells according to claim 2, characterized in that: The described lead screw (11) includes a lead screw body (11.1), a second upper joint (11.2), a lower joint (11.3), an external thread (11.4), a positive spiral thread (11.5), and a reverse circulation thread (11.6). A second upper joint (11.2) is provided at one end of the lead screw body (11.1), and a lower joint (11.3) is provided at the other end. An external thread (11.4) is provided on the outer side of the second upper joint (11.2). A reversing track composed of a positive spiral thread (11.5) and a reverse circulation thread (11.6) is provided on the outer wall of the lead screw body (11.1). The lead screw nut (10) moves forward along the positive spiral thread (11.5) and moves backward along the reverse circulation thread (11.6).

4. The chemical fixed-point injector for oil and water wells according to claim 3, characterized in that: The described lead screw nut (10) includes a first fixing hole (10.1), a second fixing hole (10.2), a nut body (10.3), a lead screw connection cavity (10.4), a piston rod connection cavity (10.5), and a half-moon keyway (10.6). A lead screw connection cavity (10.4) and a piston rod connection cavity (10.5) are axially provided in the middle of the nut body (10.3). A half-moon keyway (10.6) is provided in the vertical direction of the lead screw connection cavity (10.4) for installing a half-moon key (35). First fixing holes (10.1) and second fixing holes (10.2) are radially provided on the outer wall of the nut body (10.3). The nut body (10.3) is connected to the strip-shaped groove (34) on the outer wall of the upper housing (2) by installing a second screw (23) through the first fixing hole (10.1). The half-moon key (35) and a limit bolt (36) are installed through the half-moon keyway (10.6) so that the half-moon key (35) is in mating connection with the reversing track of the lead screw (11). The second screw (23) on the strip-shaped groove (34) is used to limit the rotation of the lead screw nut (10) and move along the position of the strip-shaped groove (34); A bolt is installed in the second fixing hole (10.2) to connect the connection hole (12.4) of the piston (12) with the second fixing hole (10.2) to realize the connection between the first upper joint (12.3) of the piston (12) and the nut body (10.3), and further realize the reciprocating movement of the piston (12) driven by the lead screw nut (10).

5. The chemical fixed-point injector for oil and water wells according to claim 4, wherein: The described half-moon key (35) includes a half-moon key body (35.1), a body tail handle (35.2), and an arc-shaped half-moon (35.3). A cylindrical body tail handle (35.2) is provided at the tail of the half-moon key body (35.1), and an arc-shaped half-moon (35.3) is provided at the front end of the half-moon key body (35.1). The arc-shaped half-moon (35.3) is used to cooperate with the reversing track of the lead screw (11).

6. The chemical fixed-point injector for oil and water wells according to claim 5, wherein: A limit bolt (36) is installed on the outer side of the half-moon key (35). A cylindrical end is provided at the front end of the limit bolt (36), and the cylindrical end is sleeved on the outer side of the body tail handle (35.2). External threads are provided on the outer side of the limit bolt (36) for threaded connection with the half-moon keyway (10.6).

7. The chemical agent fixed-point injector for oil and water wells according to claim 6, characterized in that: The front end of the arc-shaped crescent (35.3) is an arc-shaped groove structure for cooperating with the reversing track of the lead screw (11). The two sides of the arc-shaped crescent (35.3) are arc-shaped convex structures, which facilitate reversing within the reversing track.

8. The chemical fixed-point injector for oil and water wells according to claim 7, characterized in that: The connection hole (12.4) of the first upper joint (12.3) of the piston (12) is fixedly connected to the second fixing hole (10.2) by bolts, realizing the connection and fixation of the piston (12) to the lead screw nut (10). Further, driven by the movement of the lead screw nut (10), the piston (12) is driven to move its position.

9. The chemical agent fixed-point injector for oil and water wells according to claim 8, wherein: The guide head (19) includes a guide head body (19.1), a guide head joint (19.2), a pressure balance hole (19.3), a check valve spring installation hole (19.4), an external thread (19.5), a sealing ring installation groove (19.6), a nozzle installation hole (19.7), a check valve installation cavity (19.8), and a support frame installation cavity (19.9). The inner cavity of the guide head body (19.1) is, from bottom to top, a pressure balance hole (19.3), a check valve spring installation hole (19.4), a check valve installation cavity (19.8), and a support frame installation cavity (19.9). A check valve spring (18) is installed in the check valve spring installation hole (19.4), a second check valve (17) is installed in the check valve installation cavity (19.8), and a support frame (15) is installed in the support frame installation cavity (19.9). Above the guide head body (19.1), a group of nozzle installation holes (19.7) are provided on the outer peripheral wall for installing nozzles (16). A guide head joint (19.2) is provided on the upper part of the guide head body (19.1). An external thread (19.5) and a sealing ring installation groove (19.6) are provided on the outside of the guide head joint (19.2). The external thread (19.5) is used for threaded connection with the lower housing (14), and the sealing ring installation groove (19.6) is used for installing a sealing ring (21).

10. The method for using the chemical fixed-point injector for oil and water wells according to claim 9, characterized in that: It includes the following processes: After the chemical agent fixed-point delivery device for oil and water wells is lowered to the target position in the oil wellbore, start the motor (3), control the motor (3) to rotate at a lower speed. The output end of the motor (3) drives the lead screw (11) to rotate through the transmission shaft (5) and the universal joint (9). Since a lead screw nut (10) is installed outside the lead screw (11), and the outer wall of the lead screw nut (10) is matched with the strip groove (34) provided on the outer wall of the upper housing (2) through the second screw (23), and the half-moon key (35) installed in the lead screw nut (10) is matched with the positive spiral thread (11.5) of the reversing track on the lead screw (11). In this way, under the rotational movement of the lead screw (11), the lead screw nut (10) moves downward along the strip groove (34); in addition, since the lead screw nut (10) is also connected to the piston (12), the piston (12) is driven to move downward, and then the chemical agent is pushed downward along the lower housing (14). At this time, the first one-way valve (20) is in a closed state, and the chemical agent pushes the second one-way valve (17) to move downward. The chemical agent is sprayed onto the scaling or waxing part of the inner wall of the downhole tubing through the nozzle (16) installed on the guide head (19); after a period of time, the piston head (12.6) is pushed to the bottom of the lower housing (14), and part of the chemical agent injection is completed; Then, the motor (3) continues to rotate, and the half-moon key (35) enters the reverse circulation thread (11.6) of the reversing track on the lead screw (11), thereby driving the lead screw nut (10) to move in the reverse direction along the lead screw (11); at this time, the first one-way valve (20) is in an open state, and the second one-way valve (17) returns to its original position under the action of the one-way valve spring (18), blocking the channel for chemical agent spraying; and at this time, the liquid in the wellbore enters the inner cavity of the upper housing (2) through the strip groove (34) on the outer wall of the upper housing (2), and then enters the chemical agent chamber below the piston (12) through the liquid-changing groove (12.5) on the outer wall of the connecting rod (12.1) and the first one-way valve (20) until the piston (12) moves up to the top dead center and stops liquid intake; After that, the half-moon key (35) continues to repeat commutation in the commutation track, and the piston (12) moves downward again, and the mixed chemical agent is continuously sprayed onto the scaling or waxing part of the inner wall of the downhole tubing through the nozzle (16). After multiple cycles until the chemical agent is completely discharged.

Citation Information

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