CN102705194A - Vertical-axis wind-power air compressor - Google Patents
Vertical-axis wind-power air compressor Download PDFInfo
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- CN102705194A CN102705194A CN2012100209592A CN201210020959A CN102705194A CN 102705194 A CN102705194 A CN 102705194A CN 2012100209592 A CN2012100209592 A CN 2012100209592A CN 201210020959 A CN201210020959 A CN 201210020959A CN 102705194 A CN102705194 A CN 102705194A
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Abstract
The invention discloses a vertical-axis wind-power air compressor which comprises a driving shaft, an air compressor body, a wind power regulating device and a decompression regulation valve. The driving shaft (1) is vertically arranged on the ground via a support. The air compressor body (3) comprises a plurality of air cylinders (33), and the pressure air generated by the air cylinders (33) is transmitted to an air storage room (4) via connecting pipes (5). The wind power regulating device (6) is connected with the decompression regulation valve (7) and used for controlling the on/off of the decompression regulation valve (7). The decompression regulation valve (7) is communicated with the connecting pipes (5) via a decompression pipe (8), and the connecting pipes (5) are connected with parts of the air cylinders (33). The vertical-axis wind-power air compressor is capable of working in breeze condition and generating compressed air, thus utilization rate of the air compressor is improved, and adaptability of the air compressor to environment is further improved.
Description
Technical field
The present invention relates to the wind-powered machine technical field, particularly a kind of vertical shaft wind-force air press of utilizing wind-force to carry out the air energy storage.
Background technique
Wind energy is as a kind of pollution-free green energy, and reserves are big, and it is wide to distribute, and is a kind of development potentiality renewable energy sources greatly.Utilize wind energy; At first to the wind energy that moving air had be transformed into mechanical rotation kinetic energy; This just needs the effect of wind energy conversion system; Utilize wind energy conversion system to drive air compressor and carry out pressurized air, then pressurized air is carried out storage application in irrigation by pumping or other technical field, make full use of the effect of wind energy.All through motor or diesel engine or petrol engine drive, power consumption is big, befouling environment for traditional compressor.
Disclose a kind of wind-force compressor among the Chinese patent CN 2575335Y, this wind-force compressor connects air cylinder by blower fan through air pipe and constitutes, and described blower fan is horizontal axis blower fan or vertical shaft cartridge type blower fan; Be formed by connecting fan blade, speed increaser, compression pump shaft, wherein, the front end of the horizontal axis of described horizontal axis blower fan connects fan blade through flexible rod; Speed increaser connects on the horizontal axis, and the compression pump shaft connects speed increaser, and the other end that connects the air pipe of compressor pump is communicated with air cylinder; Connect the cartridge type fan blade on the vertical shaft of described vertical shaft cartridge type blower fan; Its lower end connects speed increaser, and the compression pump shaft connects speed increaser, and the air pipe that connects compressor pump is communicated with air cylinder.
In realizing process of the present invention, the inventor finds that there is following shortcoming at least in existing technology:
Upright shaft wind motor is compared with the wind energy conversion system of horizontal axis, and there is the problem that starts difficulty in upright shaft wind motor, but after in a single day upright shaft wind motor started up, the influence factor of its wind-engaging was less.Above-mentioned patent documentation is applicable to the small wind compressor; Because small wind turbine needs less wind-force can make its rotation when starting or during operation; And for large-scale or medium-sized wind-force compressor, because its diameter of propeller blade is bigger, and the more cylinder of top driving; Especially under the situation of gentle breeze, be difficult to start or make it keep normal running state.Need adopt certain measure to reduce the operating load of driving wheel in this case, make it in gentle breeze, also can keep proper functioning.
Do not disclose the concrete structure of air compressor in the above-mentioned in addition patent documentation, therefore can't know it obtains pressurized gas through which kind of means.
Summary of the invention
Technical problem to be solved by this invention is: solve the problem that the startup of air press under gentle breeze is difficult or operation is difficult, make air press under breeze conditions, be convenient to start and obtain pressurized gas, for usefulness such as irrigations by pumping.
For realizing the foregoing invention purpose, the invention provides vertical shaft wind-force air press, said technological scheme is following: live axle; Vertically be arranged on the ground through support;
Air compressor, it comprises a plurality of cylinders, the pressed gas that said cylinder produced is delivered to gas storage chamber through connecting tube;
It is characterized in that; Said air press also comprises: wind regulating device and pressure release modulating valve; Said wind regulating device connects with said pressure release modulating valve; Be used to control the keying of said pressure release modulating valve, said pressure release modulating valve is connected with the connecting tube that is connected with the said cylinder of part through pressure relief pipe.
Said wind regulating device is a main drive wheel, and said main drive wheel is nested with the bottom of being fixed in said live axle;
Said pressure release modulating valve comprises:
One running shaft; Its rotatable being fixed on the support, moulding one follower on the said running shaft, said main drive wheel drive said follower rotation; Form the vent of perforation along the axis of said running shaft, be provided with the valve pocket that is connected with said vent in the said running shaft;
Centrifugal opening/closing mechanism connects with said valve pocket, is used to control the break-make of said vent with ambient atmosphere;
Connecting joint is arranged at the end of said running shaft, and forms rotary seal with said running shaft and connect, and said connecting joint is provided with the suction tude that is connected with said vent, and said pressure relief pipe is communicated with said suction tude.
Said centrifugal opening/closing mechanism comprises:
Piston places in the said valve pocket, forms the adjustment hole that is communicated with said vent on it;
Piston rod, perpendicular to said running shaft setting, an end of said piston rod passes said running shaft and is fixedly connected with said piston, and its other end is provided with one centrifugal;
Be nested with a Returnning spring on the said piston rod, an end of said Returnning spring is fixedly connected with said running shaft, and its other end is fixed on the said piston rod.
Further, said centrifugal opening/closing mechanism also comprises: a balanced connecting rod, and said balanced connecting rod is symmetricly set in the both sides of said running shaft with said piston rod, and an end of said balanced connecting rod flexibly connects with said running shaft, and its other end is provided with an equilibrium block;
Be nested with a Returnning spring on the said piston rod, an end of said Returnning spring is fixedly connected with said running shaft, and its other end is fixed on the said balanced connecting rod.
Preferably; Said air compressor also comprises a driving wheel; Said driving wheel is nested with and is fixed on the said live axle, forms closed rail structure on the drive surface of said driving wheel, and the piston rod effect end of said cylinder is constrained in the rail structure of said driving wheel; And along said rail structure slip; Said live axle is arranged at the center of said rail structure, and perpendicular to also being provided with a connecting rod guide mechanism on the axial direction of said cylinder piston rod, said connecting rod guide mechanism rolls with said piston rod and connects.
Further preferred, said connecting rod guide mechanism comprises a plurality of upper saw pulleys, and said upper saw pulley is fixed on the inboard wall of cylinder block of said cylinder through connecting rod; A plurality of said upper saw pulleys are distributed on the excircle of said piston rod, and connect with said piston rod rolling.
Preferably, said rail structure is formed by connecting the multistage arc-shaped slide rail from beginning to end, and the said arc-shaped slide rail of multistage connects the back and forms a concavo-convex closed rail structure that distributes alternately;
Said arc-shaped slide rail comprises up exhaust arc-shaped slide rail and descending air-breathing arc-shaped slide rail; Said exhaust arc-shaped slide rail and air-breathing arc-shaped slide rail are formed by connecting evagination arc section, straightway and indent arc section respectively; Said straightway is tangent with said evagination arc section and indent arc section respectively; The end of said evagination arc section is corresponding to the top dead center position of said cylinder, and the end of said indent arc section is corresponding to the bottom dead center position of said cylinder.
Further preferred, said rail structure takes shape on the cylindrical end face of said driving wheel, and described arc-shaped slide rail is the groove that takes shape on the said driving wheel cylindrical end face; One side of said groove forms the anticreep retainer; The effect end of said piston rod is provided with a bearing, and said bearing is placed in the said groove, and retrained by said anticreep retainer; When said driving wheel rotated, the bearing that is arranged at said piston rod effect end was done periodically to-and-fro motion around said arc-shaped slide rail.
The beneficial effect of technological scheme provided by the invention is:
1) the present invention has increased wind regulating device and pressure release modulating valve on the wind-force press machine; Pressure release modulating valve wherein is connected with the connecting tube that is connected with the said cylinder of part through pressure relief pipe; When the wind-force press machine was in gentle breeze, the piston rod in the wind regulating device made piston reset under the effect of Returnning spring, and then realized that the adjustment hole on the piston is communicated with said vent; At this moment; The pressed gas that partial cylinders produced gets into the vent of running shaft by relief tube, and then partial pressure gas is effluxed, and this part cylinder is in unloaded state; The operating load that this has significantly reduced driving wheel to a certain extent makes press machine keep normal working; Otherwise; Be in when the wind-force press machine under the environment of big wind speed, make it produce the higher air of pressure, produce bigger centrifugal force at this moment when centrifugal rotates in order to make full use of the wind-force press machine; Piston rod overcomes the elastic force of Returnning spring and spurs piston outwards mobile under action of centrifugal force; Adjustment hole on the piston misplaces with the vent of running shaft, and then vent is isolated with ambient atmosphere, and then makes more cylinder maintenance proper functioning and produce pressurized gas.
2) for the ease of realizing the startup of air press; The present invention can make partial cylinders be in the no-load running state under the environment of gentle breeze; The gas that partial cylinders produced drains into atmosphere outward; The inside and outside air pressure balance that keeps of cylinder, the suffered load of driving wheel of this moment is less, is convenient to realize the startup under the breeze conditions.
Description of drawings
In order to be illustrated more clearly in the technological scheme in the embodiment of the invention; The accompanying drawing of required use is done to introduce simply in will describing embodiment below; Obviously, the accompanying drawing in describing below only is some embodiments of the present invention, for those of ordinary skills; Under the prerequisite of not paying creative work, can also obtain other accompanying drawing according to these accompanying drawings.
Fig. 1 is a vertical shaft wind-force air press structural representation provided by the present invention;
Fig. 2 is the pressure release modulating valve enlarged view of A portion among Fig. 1;
Fig. 3 is the centrifugal opening/closing mechanism structural representation among Fig. 1;
Fig. 4 is the air compressor structural representation among Fig. 1;
Fig. 5 is the A-A cross section structure schematic representation among Fig. 4;
Fig. 6 is the B-B cross section structure schematic representation among Fig. 1;
Fig. 7 is the structural drawing of driving wheel provided by the present invention;
Fig. 8 is a kind of upright shaft wind motor structural representation that does not have upright post type provided by the invention;
Fig. 9 is a kind of upright shaft wind motor structural representation that upright post type is arranged provided by the invention;
Figure 10 is the upright shaft wind motor structural representation that another kind provided by the invention has upright post type.
Among the figure: 1-live axle, 2-arc-shaped slide rail, 21-evagination arc section, 22-straightway, 23-indent arc section;
3-air compressor, 31-casing, 32-driving wheel, 321-groove, 322-anticreep retainer, 33-cylinder, 331-piston rod, 332-bearing, 4-gas storage chamber, 5-connecting tube, 6-wind regulating device;
7-pressure release modulating valve, 71-running shaft, 711-follower, 712-vent, 713-valve pocket, the centrifugal opening/closing mechanism of 72-, 721-piston, 7211-adjustment hole, 722-piston rod, centrifugal of 7221-, 7222-Returnning spring, 723-balanced connecting rod, 7231-equilibrium block, 7232-Returnning spring, 73-connecting joint, 731-suction tude;
8-pressure relief pipe, 9-connecting rod guide mechanism, 91-upper saw pulley, 92-connecting rod, 10-fan blade, 101-bearing support, 20-sealing gland element.
Embodiment
For making the object of the invention, technological scheme and advantage clearer, will combine accompanying drawing that embodiment of the present invention is done to describe in detail further below.
Shown in Figure 1 is a kind of vertical shaft wind-force air press structure provided by the present invention, comprises compositions such as fan blade 10, live axle 1 and air compressor 3.
Live axle 1; Vertically be arranged on the ground through support;
Air compressor 3, it comprises: casing 31, driving wheel 32 and a plurality of cylinder 33, said cylinder 33 are arranged on the said casing 31, and said driving wheel 32 is arranged in the said casing 31 and is nested with and is fixed on the said live axle 1;
Gas storage chamber 4; It is communicated with the outlet pipe on the said cylinder 33 is corresponding through connecting tube 5; On air press, also be provided with wind regulating device 6 and pressure release modulating valve 7; Wind regulating device 6 connects with said pressure release modulating valve 7, is used to control the keying of said pressure release modulating valve 7, and said pressure release modulating valve 7 is connected with the connecting tube 5 that is connected with the said cylinder 33 of part through pressure relief pipe 8.
Wind regulating device 6 wherein is a main drive wheel, and said main drive wheel is nested with the bottom of being fixed in said live axle 1, rotates together with live axle.
Shown in Figure 2ly be the structural drawing of pressure release modulating valve 7, it comprises: running shaft, centrifugal opening/closing mechanism and connecting joint.
The bottom of running shaft 71 is arranged in the bearing support 101; And with said bearing support 101 rotatable connections, upper end moulding one follower 711 of running shaft 71, said main drive wheel drive said follower 711 rotations; Form the vent 712 of perforation along the axis of running shaft 71; Be provided with the valve pocket 713 that is connected with said vent 712 in the said running shaft 71, main drive wheel here and follower can directly adopt the kind of drive of gear engagement, and the two also can be belt pulley; Carry out transmission of power through belt, also can adopt the kind of drive of other form;
Centrifugal opening/closing mechanism 72 is connected with said valve pocket 713; Be used to control the break-make of said vent 712 with ambient atmosphere; And connecting joint 73 is arranged at the end of said running shaft 71, and connects with forming rotary seal between the running shaft 71, and the lower end of running shaft 71 is connected through sealing gland element 20 with connecting joint 73; Connecting joint 73 is provided with the suction tude 731 that is connected with said vent 712, and pressure relief pipe 8 is communicated with suction tude 731.
Centrifugal opening/closing mechanism 72 wherein is as shown in Figure 3, and it is formed as follows:
Piston 721 places in the said valve pocket 713, forms the adjustment hole 7211 that is communicated with vent 712 on it;
Piston rod 722 is provided with perpendicular to said running shaft 71, and an end of piston rod 722 passes running shaft 71 and is fixedly connected with piston 721, and its other end is provided with one centrifugal 7221.
Be nested with a Returnning spring 7222 on the piston rod 722, an end of said Returnning spring 7222 is fixedly connected with said running shaft 71, and its other end is fixed on the piston rod 722.
In order to reduce the vibrations of operation, increase the stability of running, preferably also be provided with balanced connecting rod 723 at centrifugal opening/closing mechanism 72; Balanced connecting rod 723 and piston rod 722 are symmetricly set in the both sides of said running shaft 71; One end of balanced connecting rod 723 flexibly connects with running shaft 71, and its other end is provided with an equilibrium block 7231, is nested with a Returnning spring 7232 on the piston rod; One end of Returnning spring 7232 is fixedly connected with running shaft 71, and its other end is fixed on the balanced connecting rod 723.
When the wind-force press machine is in gentle breeze; Piston rod 722 in the wind regulating device 6 makes piston 721 reset under the effect of Returnning spring 7222; And then realize that the adjustment hole 7211 on the piston 721 is communicated with said vent 712, at this moment, the pressed gas that partial cylinders 33 is produced is got into the vent 712 of running shaft 71 by relief tube 8; And then partial pressure gas is effluxed; This part cylinder 33 is in unloaded state, and the load that this has significantly reduced driving wheel 32 to a certain extent makes air press keep normal work; Otherwise; Be in when the wind-force press machine under the environment of big wind speed, produce the higher air of pressure in order to make the wind-force press machine, centrifugal 7221 rotation produces centrifugal force; Piston rod 722 overcomes the elastic force of Returnning spring 7232 and spurs piston 721 and moves under action of centrifugal force; Adjustment hole 7211 on the piston 721 misplaces with the vent 712 of running shaft 71, and then vent 712 is isolated with ambient atmosphere, and the pressed gas that is produced in the cylinder 33 is delivered in the gas storage chamber 4 through connecting pipeline.
In order to realize the steady speedup operation of air compressor; The driving wheel 32 that the present invention adopted is on the drive surface of driving wheel 32, to form closed rail structure; The piston rod 331 effect ends of cylinder 33 are constrained in the rail structure of driving wheel 32, and slide along said rail structure, and live axle 1 is arranged at the center of said rail structure; Also be provided with a connecting rod guide mechanism 9 on the axial direction perpendicular to said cylinder 33 piston rods 331, connecting rod guide mechanism 9 rolls with piston rod 331 and connects.
Fig. 5 is the sectional view of connecting rod guide mechanism, and combines Fig. 4, and connecting rod guide mechanism 9 comprises a plurality of upper saw pulleys 91, and upper saw pulley 91 is fixed on the inboard wall of cylinder block of cylinder 33 through connecting rod 92; A plurality of upper saw pulleys 91 are distributed on the excircle of piston rod 331, and connect with piston rod 331 rollings.
Rail structure wherein such as Fig. 6 and shown in Figure 7.
Rail structure is formed by connecting multistage arc-shaped slide rail 2 head and the tail, and multistage arc-shaped slide rail 2 connects the back and forms a concavo-convex closed rail structure that distributes alternately; Wherein arc-shaped slide rail 2 comprises up exhaust arc-shaped slide rail and descending air-breathing arc-shaped slide rail; Exhaust arc-shaped slide rail and air-breathing arc-shaped slide rail are connect by evagination arc section 21, straightway 22 and indent arc section 23 respectively and form; Straightway is tangent with indent arc section 23 with said evagination arc section 21 respectively; The end of evagination arc section 21 is corresponding to the top dead center position of cylinder 33, and the end of indent arc section 23 is corresponding to the bottom dead center position of cylinder 33.
See Fig. 6, rail structure takes shape on the cylindrical end face of driving wheel 32, and arc-shaped slide rail 2 is for taking shape in the groove 321 on the driving wheel 32 cylindrical end faces; One side of groove 321 forms anticreep retainer 322, and the effect end of piston rod 331 is provided with a bearing 332, and bearing 332 is placed in the groove 321; And retrained by said anticreep retainer 322; During driving wheel 32 rotations, the bearing 332 that is arranged at piston rod 331 effect ends is done periodically to-and-fro motion around arc-shaped slide rail 2, and this rail structure and connecting rod guide mechanism combine; Stability that can well control cylinder, thus reach the purpose of stablizing speedup.
In addition, a kind of upright shaft wind motor structure of not having upright post type provided by the invention, as shown in Figure 8;
Other two kinds of upright shaft wind motor structures that upright post type is arranged also are provided, like Fig. 9 and shown in Figure 10.
The invention described above embodiment's sequence number is not represented embodiment's quality just to description.
The above is merely preferred embodiment of the present invention, and is in order to restriction the present invention, not all within spirit of the present invention and principle, any modification of being done, is equal to replacement, improvement etc., all should be included within protection scope of the present invention.
Claims (8)
1. vertical shaft wind-force air press comprises:
Live axle (1); Vertically be arranged on the ground through support (10);
Air compressor (3), it comprises a plurality of cylinders (33), the pressed gas that said cylinder (33) is produced is delivered to gas storage chamber (4) through connecting tube (5);
It is characterized in that; Said air press also comprises: wind regulating device (6) and pressure release modulating valve (7); Said wind regulating device (6) connects with said pressure release modulating valve (7); Be used to control the keying of said pressure release modulating valve (7), said pressure release modulating valve (7) is connected with the connecting tube (5) that is connected with the said cylinder of part (33) through pressure relief pipe (8).
2. vertical shaft wind-force air press according to claim 1 is characterized in that,
Said wind regulating device (6) is a main drive wheel, and said main drive wheel is nested with the bottom of being fixed in said live axle (1);
Said pressure release modulating valve (7) comprising:
One running shaft (71); Its rotatable being fixed on the support; Said running shaft (71) is gone up moulding one follower (711); Said main drive wheel drives said follower (711) rotation, and the axis of the said running shaft in edge (71) forms the vent (712) of perforation, is provided with the valve pocket (713) that is connected with said vent (712) in the said running shaft (71);
Centrifugal opening/closing mechanism (72) connects with said valve pocket (713), is used to control the break-make of said vent (712) with ambient atmosphere;
Connecting joint (73); Be arranged at the end of said running shaft (71); And with said running shaft (71) formation rotary seal connection, said connecting joint (73) is provided with the suction tude (731) that is connected with said vent (712), and said pressure relief pipe (8) is communicated with said suction tude (731).
3. to go 2 described vertical shaft wind-force air press according to right, it is characterized in that,
Said centrifugal opening/closing mechanism (72) comprising:
Piston (721) places in the said valve pocket (713), forms the adjustment hole (7211) that is communicated with said vent (712) on it;
Piston rod (722) is provided with perpendicular to said running shaft (71), and an end of said piston rod (722) passes said running shaft (71) and is fixedly connected with said piston (721), and its other end is provided with one centrifugal (7221);
Be nested with a Returnning spring (7222) on the said piston rod (722), an end of said Returnning spring (7222) is fixedly connected with said running shaft (71), and its other end is fixed on the said piston rod (722).
4. vertical shaft wind-force air press according to claim 3 is characterized in that,
Said centrifugal opening/closing mechanism (72) also comprises: a balanced connecting rod (723); Said balanced connecting rod (723) and said piston rod (722) are symmetricly set in the both sides of said running shaft (71); One end of said balanced connecting rod (723) flexibly connects with said running shaft (71), and its other end is provided with an equilibrium block (7231);
Be nested with a Returnning spring (7232) on the said piston rod, an end of said Returnning spring (7232) is fixedly connected with said running shaft (71), and its other end is fixed on the said balanced connecting rod (723).
5. according to the arbitrary described vertical shaft wind-force air press of claim 1-4, it is characterized in that,
Said air compressor (3) also comprises a driving wheel (32); Said driving wheel (32) is nested with and is fixed on the said live axle; Form closed rail structure on the drive surface of said driving wheel (32); Piston rod (331) the effect end of said cylinder (33) is constrained in the rail structure of said driving wheel (32), and slides along said rail structure, and said live axle (1) is arranged at the center of said rail structure; Also be provided with a connecting rod guide mechanism (9) on the axial direction perpendicular to said cylinder (33) piston rod (331), said connecting rod guide mechanism (9) rolls with said piston rod (331) and connects.
6. vertical shaft wind-force air press according to claim 5 is characterized in that,
Said connecting rod guide mechanism (9) comprises a plurality of upper saw pulleys (91), and said upper saw pulley (91) is fixed on the inboard wall of cylinder block of said cylinder (33) through connecting rod (92); A plurality of said upper saw pulleys (91) are distributed on the excircle of said piston rod (331), and connect with said piston rod (331) rolling.
7. according to claim 5 or 6 described vertical shaft wind-force air press, it is characterized in that,
Said rail structure is formed by connecting multistage arc-shaped slide rail (2) head and the tail, and the said arc-shaped slide rail of multistage (2) connects the back and forms a concavo-convex closed rail structure that distributes alternately;
Said arc-shaped slide rail (2) comprises up exhaust arc-shaped slide rail and descending air-breathing arc-shaped slide rail; Said exhaust arc-shaped slide rail and air-breathing arc-shaped slide rail are formed by connecting evagination arc section (21), straightway (22) and indent arc section (23) respectively; Said straightway is tangent with said evagination arc section (21) and indent arc section (23) respectively; The end of said evagination arc section (21) is corresponding to the top dead center position of said cylinder (33), and the end of said indent arc section (23) is corresponding to the bottom dead center position of said cylinder (33).
8. vertical shaft wind-force air press according to claim 7 is characterized in that,
Said rail structure takes shape on the cylindrical end face of said driving wheel (32); Described arc-shaped slide rail (2) is for taking shape in the groove (321) on said driving wheel (32) the cylindrical end face; One side of said groove (321) forms anticreep retainer (322); The effect end of said piston rod (331) is provided with a bearing (332), and said bearing (332) is placed in the said groove (321), and receives said anticreep retainer (322) constraint; During said driving wheel (32) rotation, the bearing (332) that is arranged at said piston rod (331) effect end is done periodically to-and-fro motion around said arc-shaped slide rail (2).
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
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CN201210020959.2A CN102705194B (en) | 2012-01-30 | 2012-01-30 | Vertical-axis wind-power air compressor |
PCT/CN2013/070728 WO2013113259A1 (en) | 2012-01-30 | 2013-01-18 | Wind-power air press, and pneumatic pumping energy storage and potential energy generation and remote water delivery system using wind-power air press |
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Application Number | Priority Date | Filing Date | Title |
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CN201210020959.2A CN102705194B (en) | 2012-01-30 | 2012-01-30 | Vertical-axis wind-power air compressor |
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CN102705194A true CN102705194A (en) | 2012-10-03 |
CN102705194B CN102705194B (en) | 2014-08-20 |
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CN201210020959.2A Expired - Fee Related CN102705194B (en) | 2012-01-30 | 2012-01-30 | Vertical-axis wind-power air compressor |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2013113259A1 (en) * | 2012-01-30 | 2013-08-08 | Zhang Yansheng | Wind-power air press, and pneumatic pumping energy storage and potential energy generation and remote water delivery system using wind-power air press |
CN104165130A (en) * | 2014-08-03 | 2014-11-26 | 刘典军 | Air compressing system driven by vertical wind turbine |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH11287178A (en) * | 1998-03-31 | 1999-10-19 | Kayaba Ind Co Ltd | Generating set |
CN102162431A (en) * | 2010-02-21 | 2011-08-24 | 赵国华 | Stable wind driven generating device under air pressure/ hydraulic hybrid control |
CN202545164U (en) * | 2012-01-30 | 2012-11-21 | 新泰市风龙王设备有限公司 | Wind power air compressor with vertical shaft |
-
2012
- 2012-01-30 CN CN201210020959.2A patent/CN102705194B/en not_active Expired - Fee Related
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH11287178A (en) * | 1998-03-31 | 1999-10-19 | Kayaba Ind Co Ltd | Generating set |
CN102162431A (en) * | 2010-02-21 | 2011-08-24 | 赵国华 | Stable wind driven generating device under air pressure/ hydraulic hybrid control |
CN202545164U (en) * | 2012-01-30 | 2012-11-21 | 新泰市风龙王设备有限公司 | Wind power air compressor with vertical shaft |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2013113259A1 (en) * | 2012-01-30 | 2013-08-08 | Zhang Yansheng | Wind-power air press, and pneumatic pumping energy storage and potential energy generation and remote water delivery system using wind-power air press |
CN104165130A (en) * | 2014-08-03 | 2014-11-26 | 刘典军 | Air compressing system driven by vertical wind turbine |
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