SOLAR TRACKER
20230038259 · 2023-02-09
Assignee
Inventors
Cpc classification
F24S2030/136
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/47
GENERAL 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
F24S30/425
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S2030/134
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A solar tracker provides sun tracking to solar panels, and includes several gearboxes for one single motor. In an embodiment, the solar tracker includes a torsion beam. defining a longintudinal direction of rotation and rotating the solar panels; motor, with motor shaft; first gearbox, at torsion beam at first position, and connected to motor shaft for transmitting to torsion beam rotation of motor shaft; second (Tarbox, mounted to torsion beam at second position further from motor than first position; and primary shaft, coaxial to motor shaft, and connected to second gearbox, for transmitting to second gearbox rotation of the motor shaft. Gearboxes define embedments withstanding torsion moment caused by wind loads for restricting rotation of torsion beam. It provides higher resistance to wind loads and allows for longer solar trackers.
Claims
1. A solar tracker for providing sun tracking to a module of solar panels, the solar tracker comprising: a torsion beam for providing rotation to the module of solar panels, the torsion beam defining a longitudinal direction of rotation: a motor with a rotatable motor shaft along the longitudinal direction: a first gearbox, mounted to the torsion beam at a first position nearer the motor, and connected to the motor shaft for transmitting to the torsion beam the rotation of the motor shaft: a second gearbox mounted to the torsion beam at a second position which is, along the longitudinal direction, further from the motor than the first position: and a primary shaft coaxial to the motor shaft, and connected to the second gearbox, for transmitting to the second gearbox the rotation of the motor shaft: wherein the first gearbox and the second gearbox are configured and mounted so as to define corresponding embedments withstanding torsion moment.
2. The solar tracker according to claim I. wherein the primary shaft is connected to the motor shaft, which is passing through the first gearbox.
3. The solar tracker according to claim 1, further comprising an additional connection part connected to an input shaft of the first gearbox and to the primary shaft for maintaining in the primary shaft a same rotation speed than in the motor shaft.
4. The solar tracker according to claim I. further comprising leaning supports along the primary shaft for supporting and aligning the primary shaft.
5. The solar tracker according to claim 1, wherein the torsion beam is a hollow torsion tube.
6. The solar tracker according to claim 5, wherein the torsion tube is made of a plurality of adjacently-connected coaxial tube portions.
7. The solar tracker according to claim 6, wherein the leaning supports are located at the connections of the tube portions.
8. The solar tracker according to claim 1. wherein the motor is housed within the torsion tube.
9. The solar tracker according to claim 1, wherein the first gearbox is connected to the torsion tube.
10. The solar tracker according to claim 7, wherein the motor and the first gearbox are intecYrated making part of a aearmotor system.
11. The solar tracker according to claim 1 wherein the second gearbox is connected to the torsion tube.
12. The solar acker according to claim 1. wherein the primary shaft is housed within the torsion tube.
13. The solar tracker according to claim 1, further comprising at least one additional fYearbox the at least one additional gearbox being located subsequently further than the second gearbox and, as the case might be, a corresponding immediately previous additional gearbox respectively, wherein any additional gearbox is connected to the second gearbox using a motor rotation transmission system or the corresponding immediately previous additional gearbox using a motor rotation transmission system. and wherein the at least one additional gearbox defines a corresponding embedment withstanding torsion moment.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The advantages mentioned above, as well as other advantages and features of the present invention, shall be better understood with reference to the following detailed description of a preferred embodiment of the invention, with due regard to the attached set of figures, which are to be construed in an illustrative, non-limitative manner, and wherein:
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DETAILED DESCRIPTION OF A PREFERRED EMBODIMENT OF THE INVENTION
[0025] Next a detailed description of a preferred embodiment of the solar tracker (1) of the invention shall be provided, with the help of
[0026] The solar tracker (1) comprises a torsion beam (2), for providing sun-tracking rotation to a module of solar panels (not shown). The torsion beam (2) is configured so as to define a longitudinal direction around which the torsion beam (2) is to be rotated. The torsion beam (2) may be a torsion tube (2), in particular of the type made by several tube portions (3) which are adjacently connected. The solar tracker (1) also includes a motor (4), such as an electric motor (4), which comprises a rotatable motor shaft (5), which is oriented along the longitudinal direction of rotation. As explained below, the solar tracker (1) further comprises at least a first gearbox (6) and a second gearbox (7).
[0027] The first gearbox (6) is mounted to the torsion beam (2) at a first position nearer the motor (4), and connected to the motor shaft (5) for transmitting to the torsion beam (2) the rotation of the motor shaft (5), whereas the second gearbox (7) is mounted to the torsion beam (2) at a second position which is, along the longitudinal direction, further from the motor (4) than the first position.
[0028] The solar tracker (1) further comprises a primary shaft (8), coaxial to the motor shaft (5), and connected to the second gearbox (7) for transmitting to the second gearbox (7) the rotation of the motor shaft (5).
[0029] The first gearbox (6) and the second gearbox (7) are configured and mounted so as to define corresponding embedments withstanding torsion moment caused by wind loads for restricting rotation of the torsion beam (2) at their corresponding positions due to the wind loads.
[0030] The primary shaft (8) is also connected to the motor shaft (5) for transmitting the rotation of the motor shaft (5) to the second gearbox (7). Therefore, the rotation of the motor shaft (5) is transmitted both to the first gearbox (6) as well as to the primary shaft (8) which is connected to the second gearbox (7). Both gearboxes (6, 7) are preferably identical. Two possibilities are considered for transmitting the rotation from the motor shaft (5) to the primary shaft (8). [0031] The motor shaft (5) is passing through the first gearbox (6) and on the other side is connected to the primary shaft (8). [0032] An additional connection part (not shown) connects the first gearbox (6) to the primary shaft (8) maintaining the same rotation speed than the motor shaft (5). So as to make the primary shaft (8) rotate at the same speed as the motor shaft (5), the additional connection, may be any conventional means, such as a cotter and cotter pin mechanism, connecting an input shaft (not shown) of the first gearbox (6) to the primary shaft (8).
[0033] Along the primary shaft (8), leaning supports (9), for example, with bearings (13) and / or bushings (not shown) may be located for supporting the primary shaft (8), thereby providing correct alignment to the primary shaft (8). In the case that, as explained above, the torsion beam (2) comprises a torsion tube (2) made up of a plurality of coaxial tube portions (3) adjacently connected, the leaning supports (9) may be located also at connections (10) between any two adjacent tube portions (3).
[0034] The motor (4) is preferably housed within the torsion beam (2). The same applies to the primary shaft (8). The inclusion of any such elements within the torsion beam (2) reduces, even avoids, interferences with other elements of the solar tracker (1). The gearboxes (6, 7) are connected to the torsion beam (2).
[0035] The motor (4) and the first gearbox (6) are preferably integrated making part of one gearmotor system.
[0036] It has been tested that, with respect to one current 45-panel solar tracker (100) according to the state of the art, as shown on
[0037] Longer solar trackers (1) may be made according to the invention. In particular, two possibilities are considered to that end:
[0038] 1) If the wind conditions allow so, the above referred solar tracker (1) may include longer portions (11, 12), i.e. portions (11, 12) comprising a higher number of solar panels; or
[0039] 2) The solar tracker (1) may additionally include one or several additional gearboxes (not shown), each one additional gearbox(es) being located subsequently further than the second gearbox (7) and, as the case might be, a corresponding immediately previous additional gearbox respectively, wherein any additional gearbox is connected to the second gearbox (7) or, as the case might be, the corresponding immediately previous additional gearbox, by means of a motor rotation transmission system, for example, additional shafts (not shown).