CN101660502A - Controllable blade surface movement velocity and direction lift-force type vertical shaft wind force generating device - Google Patents

Controllable blade surface movement velocity and direction lift-force type vertical shaft wind force generating device Download PDF

Info

Publication number
CN101660502A
CN101660502A CN200910196578A CN200910196578A CN101660502A CN 101660502 A CN101660502 A CN 101660502A CN 200910196578 A CN200910196578 A CN 200910196578A CN 200910196578 A CN200910196578 A CN 200910196578A CN 101660502 A CN101660502 A CN 101660502A
Authority
CN
China
Prior art keywords
blade
wind
movement velocity
surface movement
cam
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN200910196578A
Other languages
Chinese (zh)
Other versions
CN101660502B (en
Inventor
黄典贵
蒋磊
罗大海
邓召义
陈波
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
University of Shanghai for Science and Technology
Original Assignee
University of Shanghai for Science and Technology
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by University of Shanghai for Science and Technology filed Critical University of Shanghai for Science and Technology
Priority to CN2009101965788A priority Critical patent/CN101660502B/en
Publication of CN101660502A publication Critical patent/CN101660502A/en
Application granted granted Critical
Publication of CN101660502B publication Critical patent/CN101660502B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • 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
    • Y02E10/74Wind turbines with rotation axis perpendicular to the wind direction

Abstract

The invention relates to a controllable blade surface movement velocity and direction lift-force type vertical shaft wind force generating device comprising a blade, an empennage and a wind wheel-driving electric machine main shaft, wherein the blade is a blade being capable of regulating an attack angle and controlling surface movement velocity and direction; the regulating of the blade attack angle and the control of the surface movement velocity and direction are realized by a regulation and control device. The regulation and control device has a structure that the empennage drives a cam path, and the cam path drives a link mechanism; the link mechanism drives the blade to change the attack angle formed by the blade and incoming flow along with the change of a rotation phase, and the change of the movable surface rotating speed and the rotating direction on the controllable blade is controlled while the attack angle is changed so as to realize that the blade restrains flow separation and increase the lift force under a big attack angle during the rotating process so as to effectively increase the wind energy use ratio. The wind force generating device can increase the wind energy use ratio of wind machines, is suitable for any incoming flow wind direction and has simple structure and easy realization.

Description

Controllable blade surface movement velocity and direction lift-force type vertical shaft wind force generating device
Technical field
The present invention relates to a kind of wind generating unit, particularly a kind of controllable blade surface movement velocity that is suitable for any wind direction and direction are to increase the lift-force type vertical shaft wind force generating device of output torque.
Technical background
Wind energy is a clean energy resource with fastest developing speed in the renewable energy sources, also is the generation mode that has large-scale development and commercialized development prospect most.In recent ten years, world's wind-power electricity generation is to surpass 30% speed increment.Be accompanied by the fast development of world's wind-powered electricity generation industry, China also more and more payes attention to the development of wind-powered electricity generation industry.The promulgation in February, 2005 " renewable energy sources method " indicates that China's energy strategy enters new period, and National Development and Reform Committee has also proposed the layout of high-power wind power generation industrialization simultaneously, and the wind energy resources of China's abundant also provides development condition for the wind-powered electricity generation industry.The THE WIND ENERGY RESOURCES IN CHINA reserves are abundant, and according to preresearch estimates, the wind energy resources of the land overhead 10 meters height layers of China can the exploitation amount be 2.53 hundred million kilowatts; The wind energy content of off sea 10 meters height layers of greater coasting area is about 7.5 hundred million kilowatts.
By statistics, in the end of the year 2005,1,260,000 kilowatts of China's wind-powered electricity generation electric motor powers increased by 64%, 2007 year China with respect to 2004 and increase 3155 electric motor powers of wind-powered electricity generation unit newly except that Taiwan Province, 330.4 ten thousand kilowatts of installation total amounts.Compare for 133.7 ten thousand kilowatts with newly-increased then installation in 2006, newly-increased then installation growth rate was 147.1% in 2007.To accumulative total electric motor power in the end of the year 2007 is 590.6 kilowatts, and electricity volume is estimated about 5,200,000,000 kilowatt hours.The installation total amount of China in 2008 is that 12152MW has turned over some than total amount before, occupies the 3rd in the world.
Existing wind-driven generator, as shown in Figure 1, the incoming flow angle of attack hour, lift coefficient increases along with the increase of the angle of attack; When the incoming flow angle of attack during greater than the aerofoil profile maximum lift angle of attack (stall angle), flowing occurs separating, and makes lift coefficient descend, and causes before and after the pressure distribution asymmetricly simultaneously, so-called pressure drag occurs, and resistance coefficient is sharply risen.
Summary of the invention
The object of the invention is to provide a kind of controllable blade surface movement velocity and direction lift-force type vertical shaft wind force generating device to control its blade surface movement velocity at the problem of above-mentioned essence and direction suppresses the separation of air-flow at the big angle of attack, thereby improves the wind energy utilization of wind energy conversion system.
In order to achieve the above object, design of the present invention is: (be generally on the bigger outline position of curvature) in the blade appropriate location and load onto 1 ~ N running shaft or control whole blade surface movement velocity and direction (as shown in Figure 2) and separate to suppress big angle of attack downstream.
In rotation process, remain certain ideal angle of attack (greater than the maximum lift angle of attack of common blade) (as shown in Figure 3) by cam link mechanism control blade with incoming flow, and sense of rotation and speed by running shaft on the Electric Machine Control blade, blade is become under the situation of the big angle of attack with coming flow path direction in rotation process all the time, air-flow does not separate, and reduces its resistance coefficient with the lift coefficient that improves blade.As shown in Figure 4, blade is main acting section at HAB and DEF section, be the adjustment changeover portion at BCD and FGH section, blade is when the HAB section, keep certain angle of attack by the attack angle regulator adjusting vane angle of attack with coming flow path direction, motor driving blade upper whorl axial turns clockwise simultaneously, blade is when the BCD section, blade rotation transition, the drive vane of motor counter-rotating simultaneously wheel shaft is turned to by dextrorotation and is rotated counterclockwise transition, blade keeps certain angle of attack in DEF section and incoming flow, wheel shaft is rotated counterclockwise simultaneously, at FGH section blade rotation transition simultaneous wheels axle by being rotated counterclockwise to clockwise transition (coming flow path direction when Wi is the i position among Fig. 4, Li is the lift direction that blade produces when the i position).
The structural principle that it is concrete such as Fig. 4, Fig. 5, shown in Figure 6: during change of the wind, the wind vane of empennage (2) top is adjusted the direction of cam (5) simultaneously because the effect of moment will be consistent with wind direction.The cantilever of hollow (6) connects firmly together with generator shaft (1) upper flanges dish (9), a push rod (7) is arranged in each cantilever (6), push rod (7) is inner to lean in the cam path (14) of described cam (5) by a needle roller (11), described linkage mechanism is: push rod (7) outer end and a connecting rod (10) hinge connection, connecting rod (10) and blade hinge, blade is rotated around rotating center (12), when flange plate (9) rotates on electric machine main shaft (1), the cam path (14) of needle roller (11) in cam (5) that is associated in the inner push rod (7) of cantilever (6) rolls, needle roller (11) drives push rod (7) and slides in cantilever (6) inner chamber, the connecting rod (10) that connects together with push rod (7) will drive vane rotate around blade rotating center (12), and push rod (7) upper stroke switch (15) drives actuating motor (8) thereby the angle of attack of forward and reverse change blade and wheel axle steer and rotating speed reach expection.
According to above design, the present invention by the following technical solutions:
A kind of controllable blade surface movement velocity and direction lift-force type vertical shaft wind force generating device, comprise blade, the electric machine main shaft that empennage and wind wheel drive, it is characterized in that described blade is the blade of its surface movement velocity of may command and direction and angle of attack adjusting, its control surface movement velocity and direction and the angle of attack are regulated and are realized by a regulating controller, the structure of described regulating controller is: described empennage drives a cam, linkage mechanism of described cam drive, described linkage mechanism drive vane with the angle of attack of the variation adjustment of rotation phase and incoming flow with and the turning to and rotating speed of wheel shaft, realize the efficient utilization of wind energy.
The wheel shaft and the actuating motor of control surface movement velocity and direction are housed on the above-mentioned blade, described empennage is a fixedly connected wind vane in rotating shaft upper end, wind vane on the empennage is owing to the effect of moment will be consistent with wind direction, the rotating shaft of empennage is connected with described cam by key, and cam rotates with the rotation of empennage; Described each blade two ends are vertically mounted on two hollow cantilever outer ends up and down, wherein the cantilever of a hollow and described generator shaft upper flanges dish connect firmly together, a push rod is arranged in each cantilever, push rod the inner is leaning in the cam path of described cam by a needle roller, described linkage mechanism is: push rod outer end and a connecting rod hinge connection, connecting rod and blade hinge, blade is rotated around rotating center, when flange plate rotates on electric machine main shaft, the needle roller that is associated in the push rod of cantilever inside rolls at the cam path of cam, needle roller drives push rod and slides in cantilever cavity, the connecting rod that connects together with push rod will drive vane rotate around the blade rotating center, thereby the angle of attack of push rod upper stroke switch control actuating motor forward and reverse change blade and wheel axle steer and rotating speed reach expection.
Above-mentioned blade can be installed 1 ~ 30 wheel shaft with control blade surface movement velocity and direction.
Above-mentioned wind wheel with 2~30 blade central shafts around wind wheel rotary middle spindle symmetrical placement.
The radius of above-mentioned wind wheel is 0.001m~1000m, and vertical height is 0.001m~1000m.
Above-mentioned blade can make the airfoil geometry string become-30 °~30 ° angles with the rotation tangent direction with the wind vector relation according to the rotational velocity of design.
The present invention compared with prior art, have following conspicuous substantive outstanding feature and significant advantage: wind generating unit provided by the invention, adopt the mode of control blade surface movement velocity and direction to improve blade lift, be applicable to any incoming flow wind direction, related mechanism simply is easy to realize, the lift that can effectively improve in the blade rotation process reduces its rotational resistance, effectively improves wind energy utilization.
Description of drawings
Fig. 1 is that common blade separates schematic representation in big angle of attack downstream.
Fig. 2 is the blade structure schematic representation of controlled surface movement velocity of the present invention and direction.
Fig. 3 is the air flow over blade schematic representation of controlled surface movement velocity of the present invention and direction.
Fig. 4 is that the blade of controllable blade surface movement velocity of the present invention and direction lift-force type vertical shaft wind force generating device is at each position motion change schematic representation.
The structural representation of Fig. 5 one embodiment of the invention.
Fig. 6 is the cantilever place sectional view of Fig. 5 example.
Fig. 7 is Fig. 5 example empennage and cam structure schematic representation.
Embodiment
The preferred embodiments of the present invention accompanying drawings is as follows:
Embodiment one: referring to Fig. 5, this controllable blade surface movement velocity and direction lift-force type vertical shaft wind force generating device, comprise blade 4, the electric machine main shaft 1 that empennage 2 and wind wheel drive, described blade 4 is the blade of controllable blade surface movement velocity and direction and angle of attack adjusting, its control surface movement velocity and direction and the angle of attack are regulated and are realized by a regulating controller 3, the structure of described regulating controller 3 is: described empennage 2 drives a cam 5, described cam 5 drives a linkage mechanism, described linkage mechanism drive vane 4 with the angle of attack of the variation adjustment of rotation phase and incoming flow with and the turning to and rotating speed of wheel shaft 13, three blades 4 are distributed on the circumference of diameter 10m, and blade 4 is fixed on the flange plate 9 by two cantilevers 6 up and down.Flange plate 9 connects the generator of below by electric machine main shaft 1.Empennage 2 is adjusted the blade windward side by cam 5.
Vane airfoil profile adopts the NACA0018 aerofoil profile, as Fig. 6, shown in Figure 7, and chord-length 1m.Adorn the wheel shaft that a diameter is 80mm in the aerofoil profile leading edge, an actuating motor 8 is adorned in its rear end, and actuating motor 8 is by belt drives wheel shaft 13.The rotating shaft 16 of empennage 2 is connected with described cam 5 by key 17, and push rod 7 is through in the cantilever 6 of hollow, an end and connecting rod 10 hinge connection, and the other end and needle roller 11 are hinged, and needle roller 11 places the cam path 14 of cam 5.The clockwise and anticlockwise that cantilever 6 is installed position limit switch 15 control actuating motors 8 near the tail end place of blade, when blade occupy upwind, control actuating motor 8 live axles 13 turned clockwise, and occupy down wind direction time control system actuating motor 8 live axles 13 and are rotated counterclockwise.
The design focal point of cam 5 is the design of cam path, and the push rod motion conditions when getting blade the angle of attack changing during uniform 24 positions in a week motion simulates the movement locus of needle roller 11.
Above-mentioned blade 4 can be installed 1 ~ 30 wheel shaft (13).
Having 2~30 blades 4 on the above-mentioned wind wheel settles axisymmetricly around the wind wheel center.
The airfoil geometry string of above-mentioned blade 4 becomes-30 °~30 ° angles with the rotation tangent direction.

Claims (7)

1, a kind of controllable blade surface movement velocity and direction lift-force type vertical shaft wind force generating device, comprise blade (4), the electric machine main shaft (1) that empennage (2) and wind wheel drive, it is characterized in that the blade of described blade (4) for its surface movement velocity of may command and direction and angle of attack adjusting, its control surface movement velocity and direction and the angle of attack are regulated and are realized by a regulating controller (3), the structure of described regulating controller (3) is: described empennage (2) drives a cam (5), described cam (5) drives a linkage mechanism, described linkage mechanism drive vane (4) with the angle of attack of the variation adjustment of rotation phase and incoming flow with and the turning to and rotating speed of wheel shaft (13), realize the efficient utilization of wind energy.
2, controllable blade surface movement velocity according to claim 1 and direction lift-force type vertical shaft wind force generating device, it is characterized in that wheel shaft (13) and actuating motor (8) that described blade (4) is equipped with control surface movement velocity and direction, by position limit switch (15) control actuating motor (8) thus forward and reverse change the angle of attack of blade and wheel shaft (13) to be turned to rotating speed and reaches expection.
3, controllable blade surface movement velocity according to claim 1 and direction lift-force type vertical shaft wind force generating device, it is characterized in that the effect of the wind vane on the described empennage (2) owing to moment will be consistent with wind direction, the rotating shaft (16) of empennage (2) is connected with described cam (5) by key (17), and cam (5) rotates with the rotation of empennage (2); Described each blade (4) two ends are vertically mounted on two hollow cantilevers (6) outer end up and down, wherein the cantilever of a hollow (6) connects firmly together with described generator shaft (1) upper flanges dish (9), a push rod (7) is arranged in each cantilever (6), push rod (7) is inner to lean in the cam path (14) of described cam (5) by a needle roller (11), described linkage mechanism is: push rod (7) outer end and a connecting rod (10) hinge connection, connecting rod (10) and blade (4) hinge, blade is rotated around rotating center (12), when flange plate (9) rotates on electric machine main shaft (1), the cam path (14) of needle roller (11) in cam (5) that is associated in the inner push rod (7) of cantilever (6) rolls, needle roller (11) drives push rod (7) and slides in cantilever (6) inner chamber, the connecting rod (10) that connects together with push rod (7) will drive vane rotate around blade rotating center (12), so that incoming flow and blade keep the big angle of attack.
4, controllable blade surface movement velocity according to claim 1 and direction lift-force type vertical shaft wind force generating device, it is characterized in that empennage (2) driving cam (5) is consistent with wind direction, the push rod (7) that cam path (14) by cam (5) drives in drive vane in main acting section, upwind acting section and following wind direction acting section keep the big angle of attack with incoming flow, when changeover portion is adjusted the angle of attack, the positive and negative wheel shaft (13) that transfers on the control blade (4) that push rod (7) also is fixed in position limit switch (15) the control motor (8) on the cantilever (6) by control is in the wind and is turned clockwise to the acting section, be rotated counterclockwise during acting section on the leeward, when changeover portion, realize the conversion that the wheel axle steer changes.
5, controllable blade surface movement velocity according to claim 1 and direction lift-force type vertical shaft wind force generating device is characterized in that being equipped with on the described blade (4) 1~30 wheel shaft (13).
6, controllable blade surface movement velocity according to claim 1 and direction lift-force type vertical shaft wind force generating device is characterized in that having 2~30 blade central shafts and install around wind wheel rotating center axisymmetric.
7, controllable blade surface movement velocity according to claim 1 and direction lift-force type vertical shaft wind force generating device is characterized in that the airfoil geometry string of blade (4) becomes-30 °~30 ° angles with the rotation tangent direction.
CN2009101965788A 2009-09-27 2009-09-27 Controllable blade surface movement velocity and direction lift-force type vertical shaft wind force generating device Expired - Fee Related CN101660502B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009101965788A CN101660502B (en) 2009-09-27 2009-09-27 Controllable blade surface movement velocity and direction lift-force type vertical shaft wind force generating device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009101965788A CN101660502B (en) 2009-09-27 2009-09-27 Controllable blade surface movement velocity and direction lift-force type vertical shaft wind force generating device

Publications (2)

Publication Number Publication Date
CN101660502A true CN101660502A (en) 2010-03-03
CN101660502B CN101660502B (en) 2012-06-20

Family

ID=41788722

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2009101965788A Expired - Fee Related CN101660502B (en) 2009-09-27 2009-09-27 Controllable blade surface movement velocity and direction lift-force type vertical shaft wind force generating device

Country Status (1)

Country Link
CN (1) CN101660502B (en)

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101943120A (en) * 2010-06-12 2011-01-12 彭勇 Abrasive disc type wind turbine
CN102162427A (en) * 2011-06-08 2011-08-24 南通大学 Perpendicular shaft wind turbine rotor with adjustable dip angles of blades
CN102305167A (en) * 2011-07-07 2012-01-04 安义 Waterflow source and airflow source power composite rudder blade element
CN102767477A (en) * 2011-05-03 2012-11-07 杜满河 Variable-paddle type vertical axis wind turbine
CN105134495A (en) * 2015-09-09 2015-12-09 青岛经济技术开发区泰合海浪能研究中心 Vertical-axis wind generator blade attack angle regulation and speed limitation device
CN105240209A (en) * 2015-11-04 2016-01-13 王振铎 Dynamic adjustment type wind collection device
CN106593768A (en) * 2017-01-16 2017-04-26 中国石油大学(华东) Constantly variable attack-angle device of H-shaped vertical-axis wind driven generator blade

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3451085B1 (en) * 2002-09-20 2003-09-29 常夫 野口 Windmill for wind power generation
CN100389261C (en) * 2005-03-28 2008-05-21 李锋 Impeller of power device utilizing wind energy
CN101225794B (en) * 2008-01-25 2010-06-23 严强 Blade structure, wind wheel and generator device of vertical axis wind power generator

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101943120A (en) * 2010-06-12 2011-01-12 彭勇 Abrasive disc type wind turbine
CN101943120B (en) * 2010-06-12 2013-02-13 彭勇 Abrasive disc type wind turbine
CN102767477A (en) * 2011-05-03 2012-11-07 杜满河 Variable-paddle type vertical axis wind turbine
CN102162427A (en) * 2011-06-08 2011-08-24 南通大学 Perpendicular shaft wind turbine rotor with adjustable dip angles of blades
CN102162427B (en) * 2011-06-08 2012-10-31 南通大学 Perpendicular shaft wind turbine rotor with adjustable dip angles of blades
CN102305167A (en) * 2011-07-07 2012-01-04 安义 Waterflow source and airflow source power composite rudder blade element
CN102305167B (en) * 2011-07-07 2014-03-19 安义 Waterflow source and airflow source power composite rudder blade element
CN105134495A (en) * 2015-09-09 2015-12-09 青岛经济技术开发区泰合海浪能研究中心 Vertical-axis wind generator blade attack angle regulation and speed limitation device
CN105134495B (en) * 2015-09-09 2018-01-05 中国石油大学(华东) A kind of vane of vertical shaft wind-driven generator angle of attack regulation and speed-limiting device
CN105240209A (en) * 2015-11-04 2016-01-13 王振铎 Dynamic adjustment type wind collection device
CN106593768A (en) * 2017-01-16 2017-04-26 中国石油大学(华东) Constantly variable attack-angle device of H-shaped vertical-axis wind driven generator blade
CN106593768B (en) * 2017-01-16 2023-10-20 中国石油大学(华东) H-shaped vertical axis wind turbine blade real-time variable attack angle device

Also Published As

Publication number Publication date
CN101660502B (en) 2012-06-20

Similar Documents

Publication Publication Date Title
CN101660502B (en) Controllable blade surface movement velocity and direction lift-force type vertical shaft wind force generating device
EP2341245B1 (en) Apparatus for increasing lift on wind turbine blade
US20110006526A1 (en) Pitch control arrangement for wind turbine
CN102305182B (en) Vertical axis wind turbine (VAWT) with support bars with variable pitch angle blades
CN101225794B (en) Blade structure, wind wheel and generator device of vertical axis wind power generator
CN201381942Y (en) Loose blade speed regulation type wind generating set
CN102116264A (en) Megawatt-stage vertical shaft wind power generator with adjustable attack angle
CN109826749B (en) Large-scale darrieus fan with auxiliary wings capable of changing pitch and being started automatically
CN202991352U (en) Lift-drag combined type vertical shaft wind driven generator with vane capable of automatic regulation
Shuqin Magnetic suspension and self-pitch for vertical-axis wind turbines
CN102536643A (en) Vertical axis wind turbine
CN104564530A (en) Lift and drag combined vertical axis wind turbine
CN100478563C (en) Wind power generator with vertical shaft C-type blade
CN101270720B (en) Double-vane upright shaft wind motor
CN104214042B (en) Vertical axis wind turbine capable of continuously keeping effective attack angle of blades
CN101560956A (en) Blade shape-adjustable lift-type wind power generation device
CN106894948A (en) Based on bionic vertical axis windmill
CN201982251U (en) Efficient wind energy transforming device with sail type vertical shaft
CN201193587Y (en) Wind mill with rotating wind-guiding device
CN103291539B (en) Blade swing wing design method and H-type vertical axis wind turbine with blade swing wings
CN201865839U (en) Swinging vane type power-generation wind wheel
CN101487443B (en) Track sail power-generating apparatus
CN2040168U (en) Wind adjustable vertical shaft wind-driven engine
CN101956653A (en) Vertical axis wind turbine with blade angle varying along with wind direction and wind velocity
CN202926528U (en) Plate-type vertical-axis wind turbine generator

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120620

Termination date: 20140927

EXPY Termination of patent right or utility model