CN102364235A - Wind energy and light energy complementary self-generating light-emitting diode (LED) streetlamp system - Google Patents
Wind energy and light energy complementary self-generating light-emitting diode (LED) streetlamp system Download PDFInfo
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- Y02B20/72—Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps in street lighting
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Abstract
The invention discloses a wind energy and light energy complementary self-generating light-emitting diode (LED) streetlamp system, which comprises a lamppost positioned on the ground and an energy storage device positioned underground, wherein a vertical-axis cylinder type magnetic suspension direct-drive fan is arranged at the top end of the lamppost; a wire mounting port and a mounting cavity are formed at the bottom end of the lamppost; a CIGS thin film photovoltaic battery pack, a rotatable battery board bracket, an LED lamp and a lamp cap outrigger are arranged on the lamppost from top to bottom in turn in a matching way; a wind-light complementary charging and discharging controller and a constant current voltage stabilizing LED light source driver which are connected with the LED lamp in turn are arranged in the mounting cavity; and the vertical-axis cylinder type magnetic suspension direct-drive fan, the CIGS thin film photovoltaic battery pack and the energy storage device are electrically connected with the wind-light complementary charging and discharging controller. By the invention, defects that a wind-light complementary power generation system has low reliability, is unfavorable for promotion and application and the like under the conditions of light wind and weak light are overcome, and the wind energy and light energy complementary self-generating LED streetlamp system has the advantages of high reliability, wide application area, and contribution to promotion and application.
Description
Technical field
The present invention relates to the wind light mutual complementing power generation lighting engineering, particularly, relate to a kind of wind energy and luminous energy complementary type self-power generation type LED road lamp system.
Background technology
At present, the growth momentum of wind light mutual complementing lighting engineering grows to even greater heights, and the scope that its product is used is more and more wider, and function is more and more.But also have some problems anxious to be solved, solar energy distributes extensively, grows on trees, and certain rules is arranged, but skewness.Though the distribution of wind energy also has certain rules, it is not extensive to distribute, and the wind speed in area is very low especially mostly, to a great extent the range of application of limit wind energy.
In general, daytime, solar radiation was strong, and wind is fewer, and overcast and rainy, night, dry monsoon are more, and summer, electric power was had a surplus, winter the electric power wretched insufficiency because road lamp system should not be installed large-area photovoltaic cell, and economy is very poor, no dissemination.Therefore, market presses for a kind of solar energy, wind energy impregnable wind and solar hybrid generating system on time and spatial distributions.
Defectives such as in realizing process of the present invention, the inventor finds to exist at least in the prior art natural energy resources under light breeze, low light condition, and the wind and solar hybrid generating system power supply reliability is poor, energy-saving effect is not good and be unfavorable for applying.
Summary of the invention
The objective of the invention is to,, propose a kind of wind energy and luminous energy complementary type self-power generation type LED road lamp system, to realize that the natural energy resources power supply reliability is good, good energy-conserving effect uses regional with expansion and to be beneficial to the advantage of applying to the problems referred to above.
For realizing above-mentioned purpose; The technical scheme that the present invention adopts is: a kind of wind energy and luminous energy complementary type self-power generation type LED road lamp system; Comprise the lamp stand that rest on the ground and be positioned at underground energy storage device; Be arranged on the straight wind dispelling machine of vertical axis cartridge type magnetic suspension on said lamp stand top; Be arranged on the remittance line installing port and installation cavity of said lamp stand bottom, on said lamp stand, from up to down cooperate successively to be provided with CIGS film photovoltaic cell assembly, rotatable battery board bracket, LED lamp and lamp holder cantilever shalving, be provided with complementary charging-discharging controller of the wind-light that is connected with the LED lamp successively and constant current voltage stabilizing led light source driver in said installation inside cavity;
The straight wind dispelling machine of said vertical axis cartridge type magnetic suspension, CIGS film photovoltaic cell assembly and energy storage device are electrically connected with the complementary charging-discharging controller of wind-light respectively; CIGS film photovoltaic cell assembly is installed on the rotatable battery board bracket, and the LED lamp is installed on the lamp holder cantilever shalving.
Further, above-described wind energy and luminous energy complementary type self-power generation type LED road lamp system also comprise luminous intensity distribution shape led light source; Said constant current voltage stabilizing led light source driver, luminous intensity distribution shape led light source are electrically connected with the LED lamp successively.
Further, the straight wind dispelling machine of said vertical axis cartridge type magnetic suspension comprise vertically disposed main shaft from up to down successively engage sleeves be located at top in shape blade assembly on the said main shaft, magnetic suspension shaft bearing assembly, the two wind wheel organizations of reverse serpentine cartridge type and wind-driven generator.Here, said magnetic suspension shaft bearing assembly, the two wind wheel organizations of reverse serpentine cartridge type and wind-driven generator, from up to down engage sleeves is located on the main shaft successively, and is arranged in the inner chamber that said top in shape blade assembly forms.
Further; Said top in shape blade assembly; Comprise the multi-disc top in shape flexible bar type bent blades that forms no moment of flexure stress curve around main axis rotation; Three-jaw flange on the top in shape blade that is socketed on the said main shaft and is connected with multi-disc top in shape flexible bar type bent blades top, and be socketed on the said main shaft and the top in shape blade that is connected with multi-disc top in shape flexible bar type bent blades bottom under the three-jaw flange; Above three-jaw flange on the said top in shape blade, also cooperate to be provided with main shaft upper end clamp nut and the plain cushion that from up to down is set in successively on the main shaft.
Further; Said magnetic suspension shaft bearing assembly, comprise between the two wind wheel organizations of three-jaw flange on the said top in shape blade and reverse serpentine cartridge type and from up to down successively engage sleeves be located at magnetic suspension bearing counter flange, upper bearing (metal), magnetic suspension bearing and lower bearing on the main shaft.
Further; The two wind wheel organizations of said reverse serpentine cartridge type, comprise between said lower bearing and the wind-driven generator and from up to down successively engage sleeves be located at wind wheel flange seat, magnetic suspension bearing, magnetic suspension bearing flange seat and serpentine leeward cartridge module on serpentine windward cartridge module on the main shaft, the serpentine; Said wind-driven generator is socketed on the main shaft, and cooperates and to be installed under the serpentine under the air duct and top in shape blade between the three-jaw flange.
Further, said serpentine windward cartridge module comprises air duct on the serpentine that opening is all arranged up and down that at least two semicircle sheet metals of employing process, and cooperates and be installed in wind wheel on the inboard serpentine of serpentine windward tube bottom; Said serpentine leeward cartridge module comprises air duct under the serpentine that opening is all arranged up and down that at least two semicircle sheet metals of employing process, and cooperates and be installed in wind wheel under the inboard serpentine of serpentine leeward tube bottom.
Further, between said top in shape blade assembly and magnetic suspension shaft bearing assembly, be provided with entad ball component; Said radial ball bearing assembly, comprise under the said top in shape blade between three-jaw flange and the load-bearing bearing and from up to down successively engage sleeves be located at upper bearing (metal) gland on the main shaft, on radial ball bearing, shell type bearing block, radial ball bearing and lower bearing gland down; Between said lower bearing gland and load-bearing bearing, also cooperate to be provided with lower shaft end plain cushion, lower shaft end bullet pad and the lower shaft end locking nut that from up to down is set in successively on the main shaft.
Further, said energy storage device comprises energy-storage battery.
Further, be provided with lightning rod, be provided with the lamp stand adpting flange in the bottom of said main shaft on the top of said main shaft.
The wind energy of various embodiments of the present invention and luminous energy complementary type self-power generation type LED road lamp system; Owing to comprise lamp stand and energy storage device; Be provided with the straight wind dispelling machine of vertical axis cartridge type magnetic suspension on the lamp stand top; Be provided with remittance line installing port in the lamp stand bottom and cavity is installed; On lamp stand, from up to down cooperate successively to be provided with CIGS film photovoltaic cell assembly, rotatable battery board bracket, lamp holder cantilever shalving and LED lamp, be provided with complementary charging-discharging controller of the wind-light that is connected with the LED lamp successively and constant current voltage stabilizing led light source driver in the installation inside cavity; The straight wind dispelling machine of vertical axis cartridge type magnetic suspension, CIGS film photovoltaic cell assembly and energy storage device are electrically connected with the complementary charging-discharging controller of wind-light respectively; Can have light breeze low light level power generation characteristics, help solving other wind-light complementary road lamp system, improve the stability of a system luminous energy and wind collecting problem of unstable; Adopt magnetic suspension bearing, can reduce staring torque, give full play to the double dominant of wind energy and optical energy power; Thereby can overcome in the prior art natural energy resources under light breeze, low light condition; The wind and solar hybrid generating system power supply reliability is poor, energy-saving effect is not good be unfavorable for the defective applied, to realize that the natural energy resources power supply reliability is good, good energy-conserving effect uses regional with expansion and to be beneficial to the advantage of applying.
Other features and advantages of the present invention will be set forth in specification subsequently, and, partly from specification, become obvious, perhaps understand through embodiment of the present invention.The object of the invention can be realized through the structure that in the specification of being write, claims and accompanying drawing, is particularly pointed out and obtained with other advantages.
Through accompanying drawing and embodiment, technical scheme of the present invention is done further detailed description below.
Description of drawings
Accompanying drawing is used to provide further understanding of the present invention, and constitutes the part of specification, is used to explain the present invention with embodiments of the invention, is not construed as limiting the invention.In the accompanying drawings:
Fig. 1 is the structural representation of wind energy and luminous energy complementary type self-power generation type LED road lamp system according to the present invention;
Fig. 2 is the operation principle block diagram of wind energy and luminous energy complementary type self-power generation type LED road lamp system according to the present invention.
In conjunction with accompanying drawing, Reference numeral is following in the embodiment of the invention:
The 1-lightning rod; 2-top in shape flexible bar type bent blades; Wind wheel on the 3-serpentine; Wind wheel under the 4-serpentine; The 5-magnetic suspension bearing; 6-lamp stand adpting flange; 7-CIGS (CIGS) film photovoltaic cell assembly; The rotatable battery board bracket of 8-; 9-lamp holder cantilever shalving; The 10-LED lamp; The 11-lamp stand; 12-remittance line installing port; 13-installs cavity; The 14-energy storage device; The 15-main shaft.
The specific embodiment
Below in conjunction with accompanying drawing the preferred embodiments of the present invention are described, should be appreciated that preferred embodiment described herein only is used for explanation and explains the present invention, and be not used in qualification the present invention.
According to the embodiment of the invention, a kind of wind energy and luminous energy complementary type self-power generation type LED road lamp system are provided.As depicted in figs. 1 and 2; Present embodiment comprises the lamp stand 11 that rest on the ground and is positioned at underground energy storage device 14; Be arranged on the straight wind dispelling machine of vertical axis cartridge type magnetic suspension on lamp stand 11 tops; Be arranged on the remittance line installing port 12 and installation cavity 13 of lamp stand 11 bottoms; From up to down be equipped with CIGS film photovoltaic cell assembly 7, rotatable battery board bracket 8, lamp holder cantilever shalving 9, luminous intensity distribution shape led light source and LED lamp 10 on lamp stand 11 successively, and be arranged on complementary charging-discharging controller of wind-light that cavity 13 inside are installed and constant current voltage stabilizing led light source driver.Energy storage device 14 comprises the energy-storage battery of colleges and universities, and the complementary charging-discharging controller of wind-light has from boosting and illumination scalable function.
Wherein, In the above-described embodiments; The straight wind dispelling machine of vertical axis cartridge type magnetic suspension, CIGS (CIGS) film photovoltaic cell assembly 7 and energy storage device 14; Be electrically connected with the complementary charging-discharging controller of wind-light respectively, the complementary charging-discharging controller of wind-light, constant current voltage stabilizing led light source driver and LED lamp 10 are electrically connected successively; CIGS film photovoltaic cell assembly 7 is installed on the rotatable battery board bracket 8, and LED lamp 10 is installed on the lamp holder cantilever shalving 9; Constant current voltage stabilizing led light source driver, luminous intensity distribution shape led light source and LED lamp 10 are electrically connected successively.
Here, photoelectricity partly is to utilize photocell to convert solar energy to electric energy, passes through the complementary charging-discharging controller of wind-light then to charge in batteries, through the complementary charging-discharging controller of wind-light power load is supplied power at last; Wind-powered electricity generation partly is to utilize magnetic suspending wind turbine generator, converts wind energy to electric energy, yet through the complementary charging-discharging controller of wind-light energy-storage battery is charged, and through the complementary charging-discharging controller of wind-light power load is supplied power at last; Therefore wind-powered electricity generation part and photoelectricity part all must, reasonably carry out the coupling of wind-powered electricity generation, photoelectricity and load through energy-storage battery accumulation of energy ability stable power-supplying, complementary from utilizing technical utilization, improve utilization ratio.
Particularly; In the above-described embodiments; The straight wind dispelling machine of above-mentioned vertical axis cartridge type magnetic suspension comprises vertically disposed main shaft 15; Be located at the lightning rod 1 on main shaft 15 tops; Be located at lamp stand 11 adpting flanges 6 of main shaft 15 bottoms, from up to down engage sleeves is located at top in shape blade assembly and radial ball bearing assembly on the main shaft 15 successively, and be arranged in inner chamber that the top in shape blade assembly forms and from up to down successively engage sleeves be located at the magnetic suspension shaft bearing assembly on the main shaft 15, the two wind wheel organizations of reverse serpentine cartridge type and wind-driven generator.
Above-mentioned top in shape blade assembly; Comprise multi-disc top in shape flexible bar type bent blades (like top in shape flexible bar type bent blades 2) around the no moment of flexure stress curve of main shaft 15 rotations formation; Three-jaw flange on the top in shape blade that is socketed on the main shaft 15 and is connected with multi-disc top in shape flexible bar type bent blades top, and be socketed on the main shaft 15 and the top in shape blade that is connected with multi-disc top in shape flexible bar type bent blades bottom under the three-jaw flange; On lightning rod 1 and the top in shape blade between the three-jaw flange, also cooperate to be provided with main shaft 15 upper end clamp nut and the plain cushions that from up to down are set in successively on the main shaft 15.
Above-mentioned magnetic suspension shaft bearing assembly, comprise between the two wind wheel organizations of three-jaw flange on the top in shape blade and reverse serpentine cartridge type and from up to down successively engage sleeves be located at magnetic suspension bearing counter flange, upper bearing (metal), magnetic suspension bearing 5 and lower bearing on the main shaft 15.
The two wind wheel organizations of above-mentioned reverse serpentine cartridge type, comprise between lower bearing and the wind-driven generator and from up to down successively engage sleeves be located at wind wheel 3 flange seats, magnetic suspension bearing, magnetic suspension bearing flange seat and serpentine leeward cartridge module on serpentine windward cartridge module on the main shaft 15, the serpentine; Wind-driven generator is socketed on the main shaft 15, and cooperates and to be installed under the serpentine under the air duct and top in shape blade between the three-jaw flange.
Here, serpentine windward cartridge module comprises air duct on the serpentine that opening is all arranged up and down that at least two semicircle sheet metals of employing process, and cooperates and be installed in wind wheel 3 on the inboard serpentine of serpentine windward tube bottom; Serpentine leeward cartridge module comprises air duct under the serpentine that opening is all arranged up and down that at least two semicircle sheet metals of employing process, and cooperates and be installed in wind wheel 4 under the inboard serpentine of serpentine leeward tube bottom.
Above-mentioned radial ball bearing assembly, comprise between three-jaw flange under the top in shape blade and the load-bearing bearing and from up to down successively engage sleeves be located at upper bearing (metal) gland on the main shaft 15, on radial ball bearing, shell type bearing block, radial ball bearing and lower bearing gland down; Between lower bearing gland and load-bearing bearing, also cooperate to be provided with lower shaft end plain cushion, lower shaft end bullet pad and the lower shaft end locking nut that from up to down is set in successively on the main shaft 15.
In the above-described embodiments; Wind energy and luminous energy complementary type self-power generation type LED road lamp system adopt the magnetic suspension wind generation technology, make wind-driven generator realize " light breeze startup, breeze wind "; Promptly under the faint wind speed of 1.5 meter per seconds, just can start; 2.5 the wind speed of meter per second just can generate electricity, the wind surface through wind wheel 4 under wind wheel on the serpentine 3 and the serpentine rotates blower fan, when the blower fan unitary rotation; The thrust of the wind surface of top in shape flexible bar type bent blades and begin to rotate, and drive whole typhoon machine and rotate; When whole typhoon machine turns to certain rotation, promptly form the strength that rises, and make the slow-roll stabilization of whole typhoon machine simultaneously, convert wind energy to electric energy, stablize output current voltage simultaneously; Through complementary charging-discharging controller of wind-light and constant current voltage stabilizing led light source driver,, through the complementary charging-discharging controller of wind-light power loads such as LED lamp 10 are supplied power at last then to the energy-storage battery charging.
CIGS (CIGS) film photovoltaic cell assembly 7 photoelectric transformation efficiencies occupy first of the various thin-film solar cells, utilize light to convert solar energy to electric energy through CIGS (CIGS) film photovoltaic cell assembly 7, stablize output current voltage simultaneously; Through the complementary charging-discharging controller of wind-light,, through complementary charging-discharging controller of wind-light and constant current voltage stabilizing led light source driver power loads such as LED lamp 10 are supplied power at last then to the energy-storage battery charging.Wherein, magnetic suspending wind turbine generator, CIGS (CIGS) film photovoltaic cell assembly 7 can be worked simultaneously according to field condition and also can separately be worked, and do not receive the restriction in time and space.
In the above-described embodiments, wind energy and luminous energy complementary type self-power generation type LED road lamp system adopt magnetic suspension bearing 5, can reduce staring torque, have light breeze and start low light level power generation characteristics, give full play to the double dominant of wind energy and optical energy power; Help solving other wind and light complementary road lamp systems to luminous energy and wind collecting problem of unstable, improve the stability of a system; Wind energy and solar energy are inexhaustible regenerative resources, but solar energy and wind energy all have intermittence, unsettled characteristics, influenced greatly by natural climate condition; Through reasonable disposition and optimal design to each parts; Can guarantee characteristics such as the generating of gentle breeze, the low light level, reliable and stable, economy, long-life; And do not receive the illuminator of the wind light mutual complementing of seasonal effect, solved " have wind unglazed ", " have light calm " or the energy resource collecting difficult problem under low wind speed and low light condition effectively; Range of application can expand 70% zone from existing 7% zone to, and the future market prospect is very optimistic.
In sum; The wind energy of various embodiments of the present invention and luminous energy complementary type self-power generation type LED road lamp system; Owing to comprise lamp stand and energy storage device; Be provided with the straight wind dispelling machine of vertical axis cartridge type magnetic suspension on the lamp stand top; Be provided with remittance line installing port in the lamp stand bottom and cavity is installed, on lamp stand, from up to down cooperate successively to be provided with CIGS film photovoltaic cell assembly, rotatable battery board bracket, lamp holder cantilever shalving and LED lamp, be provided with wind-light complementation charging-discharging controller and the constant current voltage stabilizing led light source driver that is connected with the LED lamp successively in the installation inside cavity; The straight wind dispelling machine of vertical axis cartridge type magnetic suspension, CIGS film photovoltaic cell assembly and energy storage device are electrically connected with the complementary charging-discharging controller of wind-light respectively; Can have light breeze low light level power generation characteristics, help solving other wind-light complementary road lamp system, improve the stability of a system luminous energy and wind collecting problem of unstable; Adopt magnetic suspension bearing, can reduce staring torque, give full play to the double dominant of wind energy and optical energy power; Thereby can overcome in the prior art natural energy resources under light breeze, low light condition; The wind and solar hybrid generating system power supply reliability is poor, energy-saving effect is not good be unfavorable for the defective applied, to realize that the natural energy resources power supply reliability is good, good energy-conserving effect uses regional with expansion and to be beneficial to the advantage of applying.
What should explain at last is: the above is merely the preferred embodiments of the present invention; Be not limited to the present invention; Although the present invention has been carried out detailed explanation with reference to previous embodiment; For a person skilled in the art, it still can be made amendment to the technical scheme that aforementioned each embodiment put down in writing, and perhaps part technical characterictic wherein is equal to replacement.All within spirit of the present invention and principle, any modification of being done, be equal to replacement, improvement etc., all should be included within protection scope of the present invention.
Claims (10)
1. wind energy and luminous energy complementary type self-power generation type LED road lamp system; It is characterized in that; Comprise the lamp stand that rest on the ground and be positioned at underground energy storage device; Be arranged on the straight wind dispelling machine of vertical axis cartridge type magnetic suspension on said lamp stand top; Be arranged on the remittance line installing port and installation cavity of said lamp stand bottom, on said lamp stand, from up to down cooperate successively to be provided with CIGS film photovoltaic cell assembly, rotatable battery board bracket, LED lamp and lamp holder cantilever shalving, be provided with complementary charging-discharging controller of the wind-light that is connected with the LED lamp successively and constant current voltage stabilizing led light source driver in said installation inside cavity;
The straight wind dispelling machine of said vertical axis cartridge type magnetic suspension, CIGS film photovoltaic cell assembly and energy storage device are electrically connected with the complementary charging-discharging controller of wind-light respectively; CIGS film photovoltaic cell assembly is installed on the rotatable battery board bracket, and the LED lamp is installed on the lamp holder cantilever shalving.
2. wind energy according to claim 1 and luminous energy complementary type self-power generation type LED road lamp system is characterized in that, also comprise luminous intensity distribution shape led light source; Said constant current voltage stabilizing led light source driver, luminous intensity distribution shape led light source are electrically connected with the LED lamp successively.
3. wind energy according to claim 1 and 2 and luminous energy complementary type self-power generation type LED road lamp system; It is characterized in that, the straight wind dispelling machine of said vertical axis cartridge type magnetic suspension comprise vertically disposed main shaft from up to down successively engage sleeves be located at top in shape blade assembly on the said main shaft, magnetic suspension shaft bearing assembly, the two wind wheel organizations of reverse serpentine cartridge type and wind-driven generator.
4. wind energy according to claim 3 and luminous energy complementary type self-power generation type LED road lamp system; It is characterized in that; Said top in shape blade assembly; Comprise the multi-disc top in shape flexible bar type bent blades that forms no moment of flexure stress curve around main axis rotation; Three-jaw flange on the top in shape blade that is socketed on the said main shaft and is connected with multi-disc top in shape flexible bar type bent blades top, and be socketed on the said main shaft and the top in shape blade that is connected with multi-disc top in shape flexible bar type bent blades bottom under the three-jaw flange;
Above three-jaw flange on the said top in shape blade, also cooperate to be provided with main shaft upper end clamp nut and the plain cushion that from up to down is set in successively on the main shaft.
5. wind energy according to claim 4 and luminous energy complementary type self-power generation type LED road lamp system; It is characterized in that; Said magnetic suspension shaft bearing assembly, comprise between the two wind wheel organizations of three-jaw flange on the said top in shape blade and reverse serpentine cartridge type and from up to down successively engage sleeves be located at magnetic suspension bearing counter flange, upper bearing (metal), magnetic suspension bearing and lower bearing on the main shaft.
6. wind energy according to claim 5 and luminous energy complementary type self-power generation type LED road lamp system; It is characterized in that; The two wind wheel organizations of said reverse serpentine cartridge type, comprise between said lower bearing and the wind-driven generator and from up to down successively engage sleeves be located at wind wheel flange seat, magnetic suspension bearing, magnetic suspension bearing flange seat and serpentine leeward cartridge module on serpentine windward cartridge module on the main shaft, the serpentine; Said wind-driven generator is socketed on the main shaft, and cooperates and to be installed under the serpentine under the air duct and top in shape blade between the three-jaw flange.
7. wind energy according to claim 6 and luminous energy complementary type self-power generation type LED road lamp system; It is characterized in that; Said serpentine windward cartridge module; Comprise air duct on the serpentine that opening is all arranged up and down that at least two semicircle sheet metals of employing process, and cooperate and be installed in wind wheel on the inboard serpentine of serpentine windward tube bottom; Said serpentine leeward cartridge module comprises air duct under the serpentine that opening is all arranged up and down that at least two semicircle sheet metals of employing process, and cooperates and be installed in wind wheel under the inboard serpentine of serpentine leeward tube bottom.
8. wind energy according to claim 7 and luminous energy complementary type self-power generation type LED road lamp system is characterized in that, between said top in shape blade assembly and magnetic suspension shaft bearing assembly, are provided with entad ball component; Said radial ball bearing assembly, comprise under the said top in shape blade between three-jaw flange and the load-bearing bearing and from up to down successively engage sleeves be located at upper bearing (metal) gland on the main shaft, on radial ball bearing, shell type bearing block, radial ball bearing and lower bearing gland down;
Between said lower bearing gland and load-bearing bearing, also cooperate to be provided with lower shaft end plain cushion, lower shaft end bullet pad and the lower shaft end locking nut that from up to down is set in successively on the main shaft.
9. wind energy according to claim 1 and 2 and luminous energy complementary type self-power generation type LED road lamp system is characterized in that said energy storage device comprises energy-storage battery.
10. wind energy according to claim 1 and 2 and luminous energy complementary self-power generation type LED road lamp system is characterized in that, are provided with lightning rod on the top of said main shaft, are provided with the lamp stand adpting flange in the bottom of said main shaft.
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| Application Number | Priority Date | Filing Date | Title |
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| CN 201110361369 CN102364235B (en) | 2011-11-15 | 2011-11-15 | Wind energy and light energy complementary self-generating light-emitting diode (LED) streetlamp system |
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| CN 201110361369 CN102364235B (en) | 2011-11-15 | 2011-11-15 | Wind energy and light energy complementary self-generating light-emitting diode (LED) streetlamp system |
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| CN102364235A true CN102364235A (en) | 2012-02-29 |
| CN102364235B CN102364235B (en) | 2013-04-10 |
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Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102980131A (en) * | 2012-10-29 | 2013-03-20 | 宋小卫 | Improved wind energy street lamp |
| CN107178991A (en) * | 2017-06-16 | 2017-09-19 | 山东琦泉能源科技有限公司 | Lossless electric-type air-supply drying system and its control method |
| CN107664287A (en) * | 2016-07-27 | 2018-02-06 | 江苏绿扬光伏科技有限公司 | A kind of wind energy, the system of light energy complementary and lighting device |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN200986132Y (en) * | 2006-11-08 | 2007-12-05 | 湖南中科恒源风电产业科技有限公司 | Magnetic suspension type wind energy and solar complementary lighting road lamp |
| CN101649986A (en) * | 2009-09-07 | 2010-02-17 | 南通大学 | Intelligent magnetic suspension vertical turbine generator led street lamp |
| CN202327971U (en) * | 2011-11-15 | 2012-07-11 | 新疆尚能太阳能科技有限公司 | Wind energy and light energy complementary type spontaneous LED (Light-emitting Diode) street lamp system |
-
2011
- 2011-11-15 CN CN 201110361369 patent/CN102364235B/en not_active Expired - Fee Related
Patent Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN200986132Y (en) * | 2006-11-08 | 2007-12-05 | 湖南中科恒源风电产业科技有限公司 | Magnetic suspension type wind energy and solar complementary lighting road lamp |
| CN101649986A (en) * | 2009-09-07 | 2010-02-17 | 南通大学 | Intelligent magnetic suspension vertical turbine generator led street lamp |
| CN202327971U (en) * | 2011-11-15 | 2012-07-11 | 新疆尚能太阳能科技有限公司 | Wind energy and light energy complementary type spontaneous LED (Light-emitting Diode) street lamp system |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102980131A (en) * | 2012-10-29 | 2013-03-20 | 宋小卫 | Improved wind energy street lamp |
| CN107664287A (en) * | 2016-07-27 | 2018-02-06 | 江苏绿扬光伏科技有限公司 | A kind of wind energy, the system of light energy complementary and lighting device |
| CN107178991A (en) * | 2017-06-16 | 2017-09-19 | 山东琦泉能源科技有限公司 | Lossless electric-type air-supply drying system and its control method |
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| CN102364235B (en) | 2013-04-10 |
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