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CN201739098U - Wind driven generator blade stretching structure - Google Patents

Wind driven generator blade stretching structure Download PDF

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Publication number
CN201739098U
CN201739098U CN2010202159819U CN201020215981U CN201739098U CN 201739098 U CN201739098 U CN 201739098U CN 2010202159819 U CN2010202159819 U CN 2010202159819U CN 201020215981 U CN201020215981 U CN 201020215981U CN 201739098 U CN201739098 U CN 201739098U
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China
Prior art keywords
blade
section
wind
lead screw
stretching structure
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Expired - Lifetime
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CN2010202159819U
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Chinese (zh)
Inventor
吴东垠
朱良松
姚季
王武强
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Xian Jiaotong University
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Xian Jiaotong University
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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

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Abstract

本实用新型公开了一种风力发电机叶片拉伸结构,该叶片结构为拉伸结构,叶片第一段在其和叶片第二段的接口处,设有一段截面有四段折叠叶片,该四段折叠叶片与钢纵梁通过弹性铰链连接,同时四段折叠叶片相互之间的接触面和其与叶片第二段的接触面都呈斜坡型;在叶片第一段的内部设有钢纵梁和两个丝杠孔,丝杠的一端与叶片第一段的内部丝杠孔连接,另一端与叶片第二段末端即叶根处的电机通过齿轮连接连接。本实用新型可以降低风轮的能量捕获,使功率输出保持在额定值附近。同时减少叶片承受负荷和整个风力机收到的冲击,保证风力机不至失速受到损害。该结构能自动调节叶片的迎风面积,从而扩大风力发电机的所适应的经济风速范围、充分利用风能。

Figure 201020215981

The utility model discloses a stretching structure of a blade of a wind power generator. The blade structure is a stretching structure. The first section of the blade is at the interface with the second section of the blade. There is a section with four folded blades. The four sections The first section of the folded blade is connected to the steel longitudinal beam through an elastic hinge, and the contact surfaces between the four sections of the folded blade and the second section of the blade are slope-shaped; a steel longitudinal beam is arranged inside the first section of the blade And two lead screw holes, one end of the lead screw is connected with the internal lead screw hole of the first section of the blade, and the other end is connected with the end of the second section of the blade, that is, the motor at the blade root through a gear connection. The utility model can reduce the energy capture of the wind wheel and keep the power output near the rated value. At the same time, it reduces the load on the blades and the impact received by the entire wind turbine, so as to ensure that the wind turbine will not stall and be damaged. The structure can automatically adjust the windward area of the blades, thereby expanding the economical wind speed range that the wind power generator can adapt to and making full use of wind energy.

Figure 201020215981

Description

A kind of blade stretching structure for wind driven generator
Technical field
The utility model relates to technical field of wind power generating equipment, relates in particular to a kind of power-driven generator leaf structure.
Background technique
Along with the mankind to the requirement of ecotope with to the needs of the energy, the exploitation exploitation of wind energy comes into one's own day by day, wind-power electricity generation will become a kind of renewable and clean energy resource of 21 century large-scale development.Wind energy is a kind of as renewable energy sources, and is quite abundant the reserves of China.Along with improve constantly the continuous maturation with small-size wind power-generating technology of people to wind-power electricity generation understanding, its application also more and more widely.
Wind-driven generator is to utilize the wind energy of occurring in nature to make it to be converted into the electricity generating device of electric energy.Wind power generating set is operated in certain wind speed range, under a lot of situations, no matter require the wind energy conversion system wind speed how to change, always rotating speed keeps constant or is no more than a certain limit value.Wind power generating set is after surpassing rated wind speed, because the restriction of mechanical strength and physical properties such as generator, power electronics capacity, must reduce the energy capture of wind wheel, reduce blade and bear the impact that load and whole wind machine are received, power output is remained near the rating value, guarantee that wind energy conversion system does not come to harm.Wind speed is an amount that randomness is very big, all may change with changes of seasons in time, in addition fast changing.The formula of energy in the wind: W=1/2 ρ v 3In the F formula, W is a wind power, kg-m 2/ s 3ρ is an air density, kg-m 3V is a wind speed, m/s; F is the section area that air flows through, m 2From then on formula as can be seen, cube being directly proportional of area, air density and the airspeed that the size of wind energy and air communication are crossed.Wind speed doubles, and wind energy can increase octuple, and like this surprising energy changing has proposed high requirement to the reliability of wind-driven generator etc.Present power mode mainly can be divided into two kinds of stall-adjusted and feathers.Though stall-adjusted is simple in structure, easy to maintenance, the cabin is heavier, and transportation and hoisting difficulty are big, and the basis is big, cost is high; Feather structure stress minimum, main frame and pylon are in light weight, and transportation and hoisting difficulty are little, but the system architecture complexity of feather, rate of fault is high slightly, and is higher to operation, administrative staff's competency profiling.
Summary of the invention
The purpose of this utility model is to overcome above-mentioned prior art deficiency, and a kind of blade stretching structure for wind driven generator is provided.
The technical solution of the utility model is achieved in that the jointing of second section in first section in blade and blade, be provided with one section folding blade, should folding blade totally four sections and be connected by elastic hinge with the steel longeron respectively, the steel longeron is arranged on the inside of first section in blade, one end of leading screw is connected with the inside lead screw hole of first section in blade, and second section end of the other end and blade is that the motor at blade root place connects by gear.
Four sections folding blades each other surface of contact and the surface of contact of second section in blade all be ramp type.
Be provided with two rhizoid thick sticks in blade interior.
The utility model reduces the energy capture of wind wheel, and wheel speed is remained on below the rating value, reduces blade simultaneously and bears the impact that load and whole wind machine are received, the assurance wind energy conversion system does not come to harm.
Description of drawings
Fig. 1 blade effect schematic representation; Fig. 2 is Figure 1A-A schematic cross-section; Fig. 3 is Figure 1B-B schematic cross-section; Fig. 4 is that Fig. 2 C-C schematic cross-section sharf is to (before stretching); Fig. 5 is that sharf is to (back stretches) schematic cross-section (C-C); The enlarged view of D among Fig. 6 Fig. 4; The enlarged view of E among Fig. 7 Fig. 4; Label among the figure is represented respectively: 1, blade is first section; 2, blade is second section; 3, lead screw hole; 4, steel longeron; 5, glass fibre reinforced plastics covering; 6, leading screw; 7, elastic hinge; 8, folding blade.
Embodiment
Shown in Fig. 1-5, this blade structure comprises first section 1 in blade, second section 2 in blade, lead screw hole 3, steel longeron 4, elastic hinge 7, leading screw 6 and folding blade 8.Wherein, as Fig. 2, shown in 3, be provided with two rhizoid thick sticks 6 in blade interior, can guarantee that so blade does not overturn for first section 1 in the process that moves, inside in first section 1 in blade is provided with steel longeron 4 and two lead screw hole 3, the inside lead screw hole 3 that one end of leading screw 6 and blade are first section 1 is connected, second section 2 end of the other end and blade is that the motor at blade root place connects by gear. with reference to shown in Figure 4, first section 1 in blade is at the jointing of second section 2 in itself and blade, be provided with one section folding blade 8, should folding blade 8 totally four sections and be connected D by elastic hinge 7 with steel longeron 4 respectively, E is respectively the interface of second section 2 in folding blade 8 and blade; Leading screw 6 is connected with lead screw hole 3; As shown in Figure 5, blade enters second section 2 in blade for first section 1 under the effect of leading screw 6, and folding blade 8 recovers original state under the effect of elastic hinge 7 after entering second section 2 one segment distance of blade.
Shown in Fig. 6,7, the surface of contact that four sections folding blades 8 surface of contact each other and itself and blade are second section 2 all is ramp type.
Blade is the parts of the most basic and most critical in the wind-driven generator, and its good design, quality and superior performance are the determinant factors that guarantees the normal stable operation of unit reliably.Thereby the purpose of this utility model is to propose a kind of wind-exposuring area of regulating automatically enlarges the economic wind speed range that is adapted to of horizontal wind-driven generator, the new blade stretching structure that makes full use of wind energy.The new blade that the utility model relates to is a stretching structure, this structure is divided into two section according to end of blade 1/2-1/3 place with blade along the axial direction of blade, be second section in first section in blade and blade, first section in blade indentation blade second intersegmental part as required reaches the purpose that reduces wind speed to reduce the wind-exposuring area of blade.
When impeller hub place wind speed surpasses the rated wind speed certain value, electric motor starting and rotational lead screw 6, leading screw 6 first section 1 in blade of pulling in the process of rotation moves for second section 2 to blade, simultaneously under the effect of four sections folding blade 8 ramp type surface of contact to first section 1 folded inside of blade, blade like this just can enter second section 2, four sections folding blade of blade for first section 1 smoothly and recover original state under the effect of elastic hinge 7 after entering second section 2 one segment distance of blade.Along with the wind-exposuring area of first section 1 in blade reduces gradually, the energy capture of wind wheel reduces, and power output is remained near the rating value.When impeller hub place wind speed is lower than or during less than rated wind speed, motor counter-rotating (or regulate by gear be the leading screw counter-rotating) is moved up to returning to rated condition first section 1 backward vane of blade for second section 2.

Claims (3)

1. wind-driven generator new blade stretching structure, this blade structure comprises first section in blade (1), second section in blade (2), lead screw hole (3), steel longeron (4), elastic hinge (7), leading screw (6) and folding blade (8), it is characterized in that, the jointing of blade first section (1) and blade second section (2), be provided with one section folding blade (8), should folding blade (8) totally four sections and be connected by elastic hinge (7) with steel longeron (4) respectively, steel longeron (4) is arranged on the inside of blade first section (1), the inside lead screw hole (3) of one end of leading screw (6) and blade first section (1) is connected, and second section (2) end of the other end and blade is that the motor at blade root place connects by gear.
2. according to claims 1 described blade stretching structure, it is characterized in that, four sections folding blades (8) each other surface of contact and the surface of contact of blade second section (2) all be ramp type.
3. according to claims 1 described blade stretching structure, it is characterized in that, be provided with two rhizoid thick sticks (6) in blade interior.
CN2010202159819U 2010-06-04 2010-06-04 Wind driven generator blade stretching structure Expired - Lifetime CN201739098U (en)

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Application Number Priority Date Filing Date Title
CN2010202159819U CN201739098U (en) 2010-06-04 2010-06-04 Wind driven generator blade stretching structure

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101825068A (en) * 2010-06-04 2010-09-08 西安交通大学 Blade stretching structure for wind driven generator
CN102230453A (en) * 2011-06-22 2011-11-02 三一电气有限责任公司 Fan, fan wind wheel, fan wind wheel blade and fan control device
CN107299878A (en) * 2016-04-15 2017-10-27 天津市盛佳怡电子有限公司 A kind of wind driven generator blade device
CN113653591A (en) * 2021-09-15 2021-11-16 昆明理工大学 A retractable fan blade with electric heating and anti-icing function
CN114483435A (en) * 2022-02-10 2022-05-13 上海电机学院 Wind turbine blades whose length can be automatically adjusted by the incoming wind speed

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101825068A (en) * 2010-06-04 2010-09-08 西安交通大学 Blade stretching structure for wind driven generator
CN101825068B (en) * 2010-06-04 2012-09-05 西安交通大学 Blade stretching structure for wind driven generator
CN102230453A (en) * 2011-06-22 2011-11-02 三一电气有限责任公司 Fan, fan wind wheel, fan wind wheel blade and fan control device
CN107299878A (en) * 2016-04-15 2017-10-27 天津市盛佳怡电子有限公司 A kind of wind driven generator blade device
CN113653591A (en) * 2021-09-15 2021-11-16 昆明理工大学 A retractable fan blade with electric heating and anti-icing function
CN114483435A (en) * 2022-02-10 2022-05-13 上海电机学院 Wind turbine blades whose length can be automatically adjusted by the incoming wind speed

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20110209

Effective date of abandoning: 20120905

AV01 Patent right actively abandoned

Granted publication date: 20110209

Effective date of abandoning: 20120905