This application claims the priority benefit of Taiwan patent application number 100200890, filed on Jan. 14, 2011.
1. Field of the Invention
The present invention relates to solar panel mounting technology and more particularly, to a solar panel sun-tracing equipment, which has simple structure, low cost and high reliability characteristics and, which uses a support stand unit to support solar panels, a first driving mechanism for biasing the solar panels in the X-axis direction and a second driving mechanism for biasing the solar panels in the Y-axis direction.
2. Description of the Related Art
Green living is a healthy and eco-friendly living manner the government should promote. It is known that thermal radiation from a planetary surface is absorbed by atmospheric greenhouse gases and is re-radiated in all directions, causing a greenhouse effect and rise in temperature of the earth. Carbon dioxide (CO2), methane (CH4), nitrous oxide (N2O), chlorofluorocarbons (CFXClX) and many other vehicle discharged gases enhances the greenhouse effect. Thus, many countries around the work are trying hard to find substitute energies for electric power. Substitute energies include biomass energy, wind power, water power, solar energy and etc. Solar energy has been harnessed by humans since ancient times using a range of ever-evolving technologies. Solar energy accounts for most of the available renewable energy on earth.
Further, the motion of the sun, caused by the rotation of the Earth on its own axis, changes the angle at which the light will strike the Earth. Many sun-tracing devices have been created for use in a solar power system for tracing the direction of the sun. These sun-tracing devices enable the solar panels of the solar power system to be biased subject to the direction of the sun. However, these sun-tracing devices commonly have the drawbacks of complicated structure and high manufacturing cost. Further, because the solar panels of a solar power system are heavy and will bear wind resistance during application, the sun-tracing device used in this solar power system must be strong enough to bear wind resistance and the heavy weight of the solar panels so that the solar panels can be constantly kept in balance.
The present invention has been accomplished under the circumstances in view. It is one object of the present invention to provide a solar panel sun-tracing equipment, which has simple structure, low cost and high reliability characteristics.
To achieve this and other objects of the present invention, a solar panel sun-tracing equipment comprises a support stand unit, a plurality of solar panels and a power drive. The support stand unit comprises a first stand and at least one second stand, each of the first stand and the at least one second stand comprising an axle block located on the top side thereof, an elongated axle holder pivotally supported on the axle blocks of the stands and a plurality of transverse rods pivotally mounted in the elongated axle holder and spaced along the length of the elongated axle holder. The solar panels are respectively supported on the transverse rods and symmetrically disposed at two opposite lateral sides relative to the elongated axle holder. The power drive comprises a first driving mechanism adapted for rotating the elongated axle holder to bias the solar panels in the X-axis direction and a second driving mechanism adapted for rotating the transverse rods to bias the solar panels in the Y-axis direction.
Referring to
The support stand unit 1 comprises a plurality of stands 11. Each stand 11 has an axle block 111 located on the top side thereof. The axle block 111 at one stand 11 has a pivot hole 1111. The axle block 111 at each other stand 11 comprises two circular arc cambers 1113 bilaterally disposed at the top side thereof and an axle bearing 1112 disposed in between the two circular arc cambers 1113. The support stand unit 1 further comprises an elongated axle holder 12 rotatably supported on the axle blocks 111 of the stands 11. The elongated axle holder 12 comprises a longitudinal channel 120, a plurality of transverse openings 1201 extending across the longitudinal channel 120 at predetermined locations, a plurality of bearing blocks 1202 respectively disposed in the longitudinal channel 120 corresponding to the transverse openings 1201, and a plurality of supporting blocks 123 respectively disposed in the longitudinal channel 120 and spaced from one another along the longitudinal channel 120 at a predetermined distance, each supporting block 123 having two transverse through holes 1231 disposed at two opposite lateral sides thereof, a plurality of transverse rods 122 respectively mounted in the transverse through holes 1231 of the supporting blocks 123, each transverse rod 122 having a protruded actuating portion 1221, and a plurality of brackets 1222 respectively fastened to the two opposite ends of each of the transverse rods 122 for supporting the solar panels 3.
Further, the elongated axle holder 12 comprises a pivot pin 121 axially extended from its one end and pivotally coupled to the pivot hole 1111 of the axle block 111 at one stand 11, and its other end pivotally coupled to the axle bearings 1112 of the axle blocks 111 at the other stands 11 by means of the bearing blocks 1202. Thus, the elongated axle holder 12 can be biased relative to the stands 11 of the support stand unit 1.
When biasing the elongated axle holder 12 relative to the axle block 111 of the stands 11 of the support stand unit 1, the design of the transverse openings 1201 prevents interference of the circular arc cambers 1113 of the axle block 111 of the respective stand 11 with the biasing of the elongated axle holder 12. Further, subject to the arrangement of the bearing blocks 1202 in the longitudinal channel 120 and coupling of the bearing blocks 1202 to the axle bearings 1112 of the axle blocks 111 at the other stands 11, the stands 11 can positively bear the weight of the solar panels 3.
Further, each stand 11 can be formed of one single post or multiple posts. Further, any other support designs can be used to substitute for the stands 11 for supporting the elongated axle holder 12.
The aforesaid power drive 2 comprises a first driving mechanism 21 and a second driving mechanism 22. The first driving mechanism 21 comprises a motor mount 211 mounted in the axle block 111 of one stand 11 of the support stand unit 1, a first transmission gear box 214 affixed to the motor mount 211, a first reciprocating rod 2141 coupled to and axially movable in and out of the first transmission gear box 214, a first motor 213 fixedly mounted on the motor mount 211 and coupled with the transmission gear of the first transmission gear box 214 and operable to move the first reciprocating rod 2141 in and out of the first transmission gear box 214, and a curved link 212 having one end thereof pivotally connected to the distal end of the first reciprocating rod 2141 by a pivot 2121 and an opposite end thereof fixedly connected with the elongated axle holder 12. The second driving mechanism 22 comprises a second transmission gear box 222 affixed to the motor mount 211 and suspending in the longitudinal channel 120 of the elongated axle holder 12, a second reciprocating rod 2221 coupled to and axially movable in and out of the second transmission gear box 222 in the longitudinal channel 120 of the elongated axle holder 12, an elongated link 223 having a plurality of transverse through holes 2231 respectively coupled with the distal end of the second reciprocating rod 2221 and the protruded actuating portions 1221 of the transverse rods 122 of the elongated axle holder 12 by respective pivot pins 224, and a second motor 221 fixedly mounted on the motor mount 211 and coupled with the transmission gear of the second transmission gear box 222 and operable to move the second reciprocating rod 2221 in and out of the second transmission gear box 222.
Referring to
In conclusion, the invention provides a support stand unit 1 comprising multiple stands 11, an axle holder 12 pivotally supported on the stands 11 and a plurality of transverse rods 122 pivotally mounted in the elongated axle holder 12, a plurality of solar panels 3 supported on the transverse rods 122, and a power drive 2 comprising a first driving mechanism 21 operable to move the elongated axle holder 12 in biasing the solar panels 3 in the X-axis direction and a second driving mechanism 22 operable to move the elongated axle holder 12 in biasing the solar panels 3 in the Y-axis direction
Although particular embodiments of the invention have been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims.
Number | Date | Country | Kind |
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100200890 | Jan 2011 | TW | national |