CN102979489A - Wind power oil pumping system - Google Patents

Wind power oil pumping system Download PDF

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Publication number
CN102979489A
CN102979489A CN2012105399428A CN201210539942A CN102979489A CN 102979489 A CN102979489 A CN 102979489A CN 2012105399428 A CN2012105399428 A CN 2012105399428A CN 201210539942 A CN201210539942 A CN 201210539942A CN 102979489 A CN102979489 A CN 102979489A
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wind
oil pumping
power
shaft
pumping system
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CN2012105399428A
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Chinese (zh)
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田育均
高景轩
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Priority to CN2012105399428A priority Critical patent/CN102979489A/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/72Wind turbines with rotation axis in wind direction
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/50Manufacturing or production processes characterised by the final manufactured product

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Abstract

The invention discloses a wind power oil pumping system, which comprises an oil field kowtow-type oil pumping machine, and also comprises a support and a wind energy collecting device arranged at the top of the support, wherein power is transmitted to the oil field kowtow-type oil pumping machine by the wind energy collecting device through a long shaft transmission mechanism; the wind energy collecting device is mainly composed of a case, a speed increasing box, a power input shaft, wind impellers and a steering output device, and is also provided with a 22KW or 37KW stand-by motor, a wind power and electric power conversion clutch, a programmable logic controller (PLC) and a rotating speed and torque transducer. As a working mode of adopting wind power oil pumping first, and electric power oil pumping second, not only can the energy be saved and is the environment protected, but also continuous production operation is ensured; the wind power oil pumping system has the characteristics of stable operating performance, low production cost and high brake degree; and as a yawing device is additionally arranged, the wind impellers can just face to a wind direction, so as to obtain maximal wind power; certainly, if the wind power is too large, the case is rotated through the yawing device, so that a deflection angle can be formed by the wind impellers relative to the wind direction, therefore input of the wind power is regulated.

Description

A kind of wind-force oil pumping system
Technical field
The present invention relates to a kind of used pumping unit of oil exploitation that carries out in the oil field, specifically refer to a kind of wind-force oil pumping system.
Background technology
So far, various environmental protection and energy saving policy and the measure civilized life development trend that all become us what's frequently heard can be repeated in detail, around major fields such as wide application, boiler kiln that energy-saving potential is large, electric system, the utilizations of waste heat overbottom pressure, by great technology and equipment production demonstration, scale application etc., form 10-15 large-scale fluidized bed boiler, coal gasification (15.25,0.14,0.93%), the manufacture base take efficient burning and heat transfer technology as characteristic such as heat storage type combustion, high-performance heat exchanger; The efficient electric motor and controller system such as 15-20 rare earth permanent magnetic non-iron-core motor, high-pressure frequency-conversion control, reactive-load compensation industrialization base; The residual heat and energy utilizations such as 5-10 low grade residual heat generating, middle low concentration coal-bed gas utilization equipment manufacture base.By 2015, high-efficiency energy-saving technology and EQUIPMENT MARKET GUIDE occupation rate were brought up to about 30% by present less than 5%, and the output value reaches 5,000 hundred million yuan.
Yet the oil pumping system that traditional oil recovery factory is used, all be as power source with electric power, general oil field all is positioned at remote districts, natural wind energy in the oil field is very large, but be not fully utilized, pump take electric power as power source exactly such as the Liaohe Oil Field Huanxiling oil production plant, the most of rated power of employed motor are these two kinds of 22KW or 37KW, the oil field power electric calculates with 0.81 yuan/degree, and the motor power consumption of 22KW is 80000 degree/year; For the motor of 37KW, power consumption is larger, is 104000 degree/year, and above-mentioned so big power consumption does not meet the requirement of the present energy-conserving and environment-protective of advocating of China.
It is the patent documentation of CN1515781 that China Intellectual Property Office discloses publication number on 07 28th, 2004, the invention discloses a kind of oil exploitation well pumping apparatus, comprise ground surface platform, be placed on the well head, install motor-type fuel oil, gas engine and pump on this platform, described pump is that the entrance of vacuum pump, pump is connected with well head and downhole oil tubing string, installs ball-and-seat on the downhole oil tubing string.Above-mentioned oil exploitation well pumping apparatus is exactly as power source with motor-type fuel oil, gas engine and pump.Although this invention structure is unique, simple and practical characteristics can be widely used in the pumpingh well technique of oil exploitation, still can not satisfy the requirement of energy-conserving and environment-protective.
For another example, it is the patent of invention of CN200710077401.7 that China Intellectual Property Office discloses the patent No. on 06 10th, 2009, this patent is the gentle double dynamic multi-well pumping well system device of a kind of vacuum, comprises many vacuum pressure deep well machines that are comprised of Underwell stepped oil pumping system, aboveground pipeline regulator control system; Comprise by a plurality of vacuum acquisition devices, vacuum freezing device, moisture trap, water pump, hydraulic pipeline, electric appliance control box, circulating water pool, temperature pick up, working platform and form water plunger type vacuum pump and compressor, with water plunger type vacuum pump and compressor set many vacuum pressure deep well machine centers, by vacuum line and Compressed Gas pipeline and many vacuum pressure deep well machines formation that links into an integrated entity.The present invention utilizes many vacuum pressure deep well machines; water plunger type vacuum pump and compressor; pass through vacuum line; the Compressed Gas pipeline is integrally formed composition with its connection; the vacuum energy and the Compressed Gas that utilize water plunger type vacuum pump and compressor scale to obtain are power; make many vacuum pressure deep well machines finish simultaneously the large flow oil pumping of deep-well work; although the foregoing invention patent has certain scientific and technological content; but its power source is vacuum pressure deep well machine; water plunger type vacuum pump and compressor; these several equipment all are as power take electricity; power consumption is equally very large, does not also meet the requirement of the present energy-conserving and environment-protective of advocating of China.
Summary of the invention
In order to overcome above-mentioned deficiency, the object of the present invention is to provide the wind-force oil pumping system of a kind of energy-conserving and environment-protective, stable work in work.
For solving the problems of the technologies described above, the technical solution adopted in the present invention is:
A kind of wind-force oil pumping system comprises the oil field formula oil pumper of kowtowing, and also comprises support and is located at the Wind energy collecting device of a top of the trellis, and described Wind energy collecting device is passed to the oil field formula oil pumper of kowtowing by long shaft transmission mechanism with power.
Described Wind energy collecting device mainly by cabinet, gearbox, power input shaft, fan blade, turn to output device to consist of, described gearbox and turn to output device to be located in the cabinet, described turning on the output shaft that output device is located at gearbox, turn to output device that power is passed to long shaft transmission mechanism, one end of the power input shaft of described gearbox passes in cabinet, is positioned at the outer described fan blade of cabinet and is located on the power input shaft.
Also comprise yaw device, described yaw device is by battery, controller, anemobiagraph, anemoscope, servomotor, reduction box, gear, bearing and driftage ring-type brake disc and ring gear consist of, described ring gear is fixedly supported on the top of the trellis, described cabinet is fixedly supported on the driftage ring-type brake disc, described driftage ring-type brake disc is installed in the outer of ring gear by bearing and places, described gear is located on the output shaft of reduction box and with ring gear and is meshed, described battery provides power supply for controller, described controller, the wind speed information and the wind direction information that send in order to receive anemobiagraph and anemoscope, controller according to wind speed information and wind direction information to the startup of servomotor with turn to and control, servomotor after the startup rolls along ring gear by the reduction box driven gear, and the reduction box that is fixed in the cabinet drives cabinet and the rotation of driftage ring-type brake disc.
Described servomotor, reduction box, gear are one group, are provided with altogether two groups, and every group gear is meshed with ring gear.
Also be provided with the fluid pressure type brake disc on the output shaft of described gearbox, described fluid pressure type brake disc is connected with Hydraulic Station in being located at cabinet by hydraulic oil pipe, and the hydraulic buttery valve on the Hydraulic Station is electrically connected with described controller.
Be provided with the 12V generator in the described cabinet, described 12V generator connects with the shaft end of the output shaft of gearbox, and described 12V generator is charge in batteries.
The top of described support is vertically fixed with support tube, and described ring gear is fixed on the top of support tube.
What described gearbox adopted is the spider gear gearbox.
Also be provided with motor for subsequent use, wind-force electric power conversion clutch, PLC controller and rotating speed and the torque sensor of 22KW or 37KW, described wind-force electric power conversion clutch, power intake in order to the formula oil pumper of being kowtowed in the oil field connects with long shaft transmission mechanism or connects with the output shaft of motor for subsequent use, rotating speed and torque sensor send rotating speed and the moment information of long shaft transmission mechanism to the PLC controller, described PLC controller is according to the conversion of the power source of rotating speed and moment information control wind-force electric power conversion clutch, and motor for subsequent use is started control.
Described long shaft transmission mechanism is by vertical power transmission shaft, turns to follower and horizontal drive shaft to consist of, the upper end of described vertical power transmission shaft connects with the described axle shaft of output device that turns to, the lower end of described vertical power transmission shaft is by turning to follower to connect with an end of horizontal drive shaft, and the other end of described horizontal drive shaft connects by the kowtow power intake of formula oil pumper of described wind-force electric power conversion clutch and oil field.
Beneficial effect of the present invention is: because the oil pumping of employing wind-force is main, the electric power oil pumping is auxiliary mode of operation, not only more energy-conserving and environment-protective, but also guaranteed continuous production operation have stable work in work, cost of production is low, the brakingization degree is high characteristics; Owing to set up yaw device, make fan blade to obtain maximum wind-force, certainly, if wind-force is excessive, rotate cabinet by yaw device over against wind direction, make fan blade can apparent wind to a drift angle is arranged, thereby the input of wind-force is regulated.
Description of drawings
Below in conjunction with the drawings and specific embodiments the present invention is described in further detail:
Fig. 1 is structural representation of the present invention;
Fig. 2 is lateral view shown in Figure 1;
Fig. 3 is the structural representation of Wind energy collecting device shown in Figure 1;
Fig. 4 is the structural representation of overlooking shown in Figure 3;
Fig. 5 is lateral view shown in Figure 3.
Among the figure: 1, the oil field formula oil pumper of kowtowing; 2, support; 3, Wind energy collecting device; 4, cabinet; 5, gearbox; 6, power input shaft; 7, fan blade; 8, turn to output device; 9, the output shaft of gearbox; 10, battery; 11, controller; 12, anemobiagraph; 13, anemoscope; 14, servomotor; 15, reduction box; 16, gear; 17, bearing; 18, driftage ring-type brake disc; 19, ring gear; 20, support tube; 21, fluid pressure type brake disc; 22, Hydraulic Station; 23,12V generator; 24, motor for subsequent use; 25, wind-force electric power conversion clutch; 26, PLC controller; 27, rotating speed and torque sensor; 28, vertical power transmission shaft; 29, turn to follower; 30, horizontal drive shaft.
The specific embodiment
Such as Fig. 1,2, shown in 3, a kind of wind-force oil pumping system, comprise the oil field formula oil pumper 1 of kowtowing, also comprise support 2 and the Wind energy collecting device 3 that is located at support 2 tops, described Wind energy collecting device 3 is mainly by cabinet 4, gearbox 5, power input shaft 6, fan blade 7, turn to output device 8 to consist of, described gearbox 5 and turn to output device 8 to be located in the cabinet 4, described turning on the output shaft 9 that output device 8 is located at gearbox, turn to output device 8 that power is passed to long shaft transmission mechanism, one end of the power input shaft of described gearbox 5 passes in cabinet 4, is positioned at cabinet 4 outer described fan blades 7 and is located on the power input shaft 6.What described gearbox 5 adopted is the spider gear gearbox.Described long shaft transmission mechanism is by vertical power transmission shaft 28, turns to follower 29 and horizontal drive shaft 30 to consist of, the upper end of described vertical power transmission shaft 28 connects with the described axle shaft of output device 8 that turns to, the lower end of described vertical power transmission shaft 28 is by turning to follower 29 to connect with an end of horizontal drive shaft 30, and the other end of described horizontal drive shaft 30 connects by the kowtow power intake of formula oil pumper 1 of described wind-force electric power conversion clutch 25 and oil field.Fan blade 7 rotates, and the power of wind is passed to the oil field formula oil pumper 1 of kowtowing by above-mentioned long shaft transmission mechanism.
Shown in Fig. 3,4,5, also comprise yaw device, its effect mainly makes the fan blade can be over against wind direction, to obtain maximum wind-force, certainly, if wind-force is excessive, rotate cabinet by yaw device, make fan blade energy apparent wind to a drift angle is arranged, so yaw device can be regulated the input of wind-force.Described yaw device is by battery 10, controller 11, anemobiagraph 12, anemoscope 13, servomotor 14, reduction box 15, gear 16, bearing 17 and driftage ring-type brake disc 18 and ring gear 19 consist of, the top of described support 2 is vertically fixed with support tube 20, described ring gear 19 is fixed on the top of support tube 20, described cabinet 4 is fixedly supported on the driftage ring-type brake disc 18, described driftage ring-type brake disc 18 is installed in the outer of ring gear 19 by bearing 17 and places, described servomotor 14, reduction box 15, gear 16 is one group, be provided with altogether two groups, every group gear 16 is located on the output shaft of reduction box 15 and with ring gear 19 and is meshed, described battery 10 provides power supply for controller 11, anemobiagraph 12 and anemoscope 13 are located at the top of cabinet 4, described controller 11, the wind speed information and the wind direction information that send in order to receive anemobiagraph 12 and anemoscope 13, controller 11 according to wind speed information and wind direction information to the startup of servomotor 14 with turn to and control, servomotor 14 after the startup rolls along ring gear 19 by reduction box 15 driven gears 16, the reduction box 15 that is fixed in the cabinet 4 drives cabinet 4 and 18 rotations of driftage ring-type brake disc, turn to thereby drive fan blade 7, thus regulate fan blade 7 apparent winds to the drift angle.
Also be provided with fluid pressure type brake disc 21 on the output shaft 9 of described gearbox, in order to fan blade is braked, described fluid pressure type brake disc 21 is connected with Hydraulic Station 22 in being located at cabinet 4 by hydraulic oil pipe, and the hydraulic buttery valve on the Hydraulic Station 22 is electrically connected with described controller 11.Be provided with 12V generator 23 in the described cabinet 4, described 12V generator 23 connects with the shaft end of the output shaft 9 of gearbox, and described 12V generator is battery 10 chargings.
As shown in Figure 1, also be provided with the motor for subsequent use 24 of 22KW or 37KW, wind-force electric power conversion clutch 25, PLC controller 26 and rotating speed and torque sensor 27, described wind-force electric power conversion clutch 25, power intake in order to the formula oil pumper 1 of being kowtowed in the oil field connects with long shaft transmission mechanism or connects with the output shaft of motor 24 for subsequent use, rotating speed and torque sensor 27 send rotating speed and the moment information of long shaft transmission mechanism to the PLC controller, described PLC controller 26 is according to the conversion of the power source of rotating speed and moment information control wind-force electric power conversion clutch, and motor 24 for subsequent use is started control.
Operating principle: the present invention is as main power source with wind energy, can work normally in order to guarantee the oil field formula oil pumper 1 of kowtowing, motor for subsequent use replenishing as electric power source with 22KW or 37KW, when wind-force is very little, rotating speed and torque sensor 27 are passed to PLC controller 26 with this information, PLC controller 26 sends instruction to wind-force electric power conversion clutch 25, wind-force electric power conversion clutch 25 is thrown off the kowtow power input shaft of formula oil pumper 1 of the long shaft transmission mechanism in the wind energy system and oil field, meanwhile, kowtow power input shaft and the motor for subsequent use of formula oil pumper 1 of oil field linked, and start motor for subsequent use, provide kinetic energy by motor for subsequent use for the oil field formula oil pumper 1 of kowtowing; In addition, make fan blade to obtain maximum wind-force, certainly, if wind-force is excessive, rotate cabinet by yaw device over against wind direction by yaw device, make fan blade energy apparent wind to a drift angle is arranged, realize yaw device is regulated the input of wind-force.
In a word; although the present invention has enumerated above-mentioned preferred embodiment, should illustrate, although those skilled in the art can carry out various variations and remodeling; unless such variation and remodeling have departed from scope of the present invention, otherwise all should be included in protection scope of the present invention.

Claims (10)

1. wind-force oil pumping system comprises the oil field formula oil pumper of kowtowing, and it is characterized in that: also comprise support and be located at the Wind energy collecting device of a top of the trellis that described Wind energy collecting device is passed to the oil field formula oil pumper of kowtowing by long shaft transmission mechanism with power.
2. wind-force oil pumping system according to claim 1, it is characterized in that: described Wind energy collecting device mainly by cabinet, gearbox, power input shaft, fan blade, turn to output device to consist of, described gearbox and turn to output device to be located in the cabinet, described turning on the output shaft that output device is located at gearbox, turn to output device that power is passed to long shaft transmission mechanism, one end of the power input shaft of described gearbox passes in cabinet, is positioned at the outer described fan blade of cabinet and is located on the power input shaft.
3. wind-force oil pumping system according to claim 2, it is characterized in that: also comprise yaw device, described yaw device is by battery, controller, anemobiagraph, anemoscope, servomotor, reduction box, gear, bearing and driftage ring-type brake disc and ring gear consist of, described ring gear is fixedly supported on the top of the trellis, described cabinet is fixedly supported on the driftage ring-type brake disc, described driftage ring-type brake disc is installed in the outer of ring gear by bearing and places, described gear is located on the output shaft of reduction box and with ring gear and is meshed, described battery provides power supply for controller, described controller, the wind speed information and the wind direction information that send in order to receive anemobiagraph and anemoscope, controller according to wind speed information and wind direction information to the startup of servomotor with turn to and control, servomotor after the startup rolls along ring gear by the reduction box driven gear, and the reduction box that is fixed in the cabinet drives cabinet and the rotation of driftage ring-type brake disc.
4. wind-force oil pumping system according to claim 3, it is characterized in that: described servomotor, reduction box, gear are one group, are provided with altogether two groups, every group gear is meshed with ring gear.
5. wind-force oil pumping system according to claim 4, it is characterized in that: also be provided with the fluid pressure type brake disc on the output shaft of described gearbox, described fluid pressure type brake disc is connected with Hydraulic Station in being located at cabinet by hydraulic oil pipe, and the hydraulic buttery valve on the Hydraulic Station is electrically connected with described controller.
6. wind-force oil pumping system according to claim 4, it is characterized in that: be provided with the 12V generator in the described cabinet, described 12V generator connects with the shaft end of the output shaft of gearbox, and described 12V generator is charge in batteries.
7. wind-force oil pumping system according to claim 4, it is characterized in that: the top of described support is vertically fixed with support tube, and described ring gear is fixed on the top of support tube.
8. wind-force oil pumping system according to claim 4 is characterized in that: what described gearbox adopted is the spider gear gearbox.
9. wind-force oil pumping system according to claim 4, it is characterized in that: the motor for subsequent use that also is provided with 22KW or 37KW, wind-force electric power conversion clutch, PLC controller and rotating speed and torque sensor, described wind-force electric power conversion clutch, power intake in order to the formula oil pumper of being kowtowed in the oil field connects with long shaft transmission mechanism or connects with the output shaft of motor for subsequent use, rotating speed and torque sensor send rotating speed and the moment information of long shaft transmission mechanism to the PLC controller, described PLC controller is according to the conversion of the power source of rotating speed and moment information control wind-force electric power conversion clutch, and motor for subsequent use is started control.
10. wind-force oil pumping system according to claim 9, it is characterized in that: described long shaft transmission mechanism is by vertical power transmission shaft, turns to follower and horizontal drive shaft to consist of, the upper end of described vertical power transmission shaft connects with the described axle shaft of output device that turns to, the lower end of described vertical power transmission shaft is by turning to follower to connect with an end of horizontal drive shaft, and the other end of described horizontal drive shaft connects by the kowtow power intake of formula oil pumper of described wind-force electric power conversion clutch and oil field.
CN2012105399428A 2012-12-14 2012-12-14 Wind power oil pumping system Pending CN102979489A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110701000A (en) * 2019-11-28 2020-01-17 刘鹏志 Novel oil field water injection wind energy utilization process system
CN112593898A (en) * 2020-11-30 2021-04-02 内蒙古民族大学 Wind power hybrid power driven oil pumping unit system and working method thereof
CN117266796A (en) * 2023-10-30 2023-12-22 海洋动力 (北京)科技有限公司 Movable wind-force beam-pumping unit

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2498373Y (en) * 2001-09-26 2002-07-03 祝喜忱 Wine energy aid for cooker hood
CN201606229U (en) * 2010-02-04 2010-10-13 山东建筑大学 Wind power complementation hydraulic oil pumping device
CN101915208A (en) * 2008-11-20 2010-12-15 维斯塔斯风力系统集团公司 Wind turbine yawing system
CN201738883U (en) * 2010-06-11 2011-02-09 刘玉春 Wind oil-pumping device
US20110140439A1 (en) * 2010-08-04 2011-06-16 Saravanan Ramanujam Yaw assembly for use in wind turbines
CN102395783A (en) * 2010-05-31 2012-03-28 三菱重工业株式会社 Wind power generation device, gear transmission mechanism, and gear-meshing control method
CN102639867A (en) * 2009-12-30 2012-08-15 尹瑨穆 Wind Turbine
CN203097835U (en) * 2012-12-14 2013-07-31 田育均 Wind-driven oil pumping system

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2498373Y (en) * 2001-09-26 2002-07-03 祝喜忱 Wine energy aid for cooker hood
CN101915208A (en) * 2008-11-20 2010-12-15 维斯塔斯风力系统集团公司 Wind turbine yawing system
CN102639867A (en) * 2009-12-30 2012-08-15 尹瑨穆 Wind Turbine
CN201606229U (en) * 2010-02-04 2010-10-13 山东建筑大学 Wind power complementation hydraulic oil pumping device
CN102395783A (en) * 2010-05-31 2012-03-28 三菱重工业株式会社 Wind power generation device, gear transmission mechanism, and gear-meshing control method
CN201738883U (en) * 2010-06-11 2011-02-09 刘玉春 Wind oil-pumping device
US20110140439A1 (en) * 2010-08-04 2011-06-16 Saravanan Ramanujam Yaw assembly for use in wind turbines
CN203097835U (en) * 2012-12-14 2013-07-31 田育均 Wind-driven oil pumping system

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110701000A (en) * 2019-11-28 2020-01-17 刘鹏志 Novel oil field water injection wind energy utilization process system
CN110701000B (en) * 2019-11-28 2024-01-26 刘鹏志 Oilfield water injection wind energy utilization process system
CN112593898A (en) * 2020-11-30 2021-04-02 内蒙古民族大学 Wind power hybrid power driven oil pumping unit system and working method thereof
CN117266796A (en) * 2023-10-30 2023-12-22 海洋动力 (北京)科技有限公司 Movable wind-force beam-pumping unit

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