ALIGNMENT AND/OR TRACKING DEVICE FOR SOLAR COLLECTORS
The invention relates to an alignment and/or tracking device (1) for solar collectors (x), comprising a plurality of pivot axles (S) on each of which a plurality of solar collectors (5, 5′) are mounted, and a jointly acting adjustment device (6, 7, 8) which couples the pivot axles (S) to one another in such a way that the pivot axles (S) are jointly pivotable. The alignment and/or tracking device according to the invention is characterised in that the adjustment device (6, 7, 8) is coupled to each of the pivot axles (S) by at least one articulation joint (GL), in particular a universal joint.
The invention relates to an alignment and/or tracking device for solar collectors according to the preamble of independent claim 1.
PRIOR ARTConventional collector arrays are aligned in a simple design to a central position of the sun which, however, has significant disadvantages as a result of the changing position of the sun over the course of the day and seasons. Improved systems may have, for example, column supports which have a “tracking” function for tracking according to the position of the sun which changes over the course of the day. For example, WO 2009/015221 A2 thus discloses a known tracking system for solar collectors.
Such column supports with tracking systems are relatively expensive to manufacture and involve a relatively high maintenance outlay in terms of installation and operation. They are also regarded as relatively prone to faults since a plurality of movable mechanical parts is exposed to the elements.
Moreover, the applicant is aware of alignment and tracking devices according to the preamble of claim 1. These, however, have the disadvantage that they can only be erected on flat ground or complex measures are required in the case of changeable terrain topography, such as, for example, compensated foundations, flattening work or the like. It should be noted here that, for example, the flattening work cannot or may not be carried out in all areas.
EXPLANATION OF THE INVENTIONThe primary objective of the present invention is to make available a simple and low-cost system for aligning and tracking solar collectors to a changing position of the sun, which system is largely independent of the ground and the formation of the terrain.
This objective of the invention is achieved with the subject matter of the independent claim. Features of advantageous further developments of the invention will become apparent from the dependent claims.
In order to achieve the stated objective, the invention proposes a generic alignment and/or tracking device for solar collectors in the case of which the adjustment device is coupled to the pivot axles in each case via at least one articulated joint, in particular a cardanically acting articulated joint. The articulated joint makes it possible to even out angle deviations which may arise, for example, from the terrain topography. As a result, the alignment and/or tracking device according to the invention can be used on practically any terrain and, despite changeable terrain topography, enable an adjustment of the pivot axles which is adapted to the incident solar radiation. All this is achieved with a comparatively simple construction.
According to a further development of the invention, it is provided that at least one pivot axle has at least two carrying elements, between which a connecting articulated joint, in particular a cardanically acting connecting articulated joint, is arranged. As a result of this, an even better capacity for adjustment to different terrain topographies can be achieved.
Moreover, according to a further development of the invention, it is provided that the pivot axles are supported on support elements, wherein a support articulated joint, in particular, a separable ball joint, is provided between the pivot axles and at least a few support elements. As a result of this, a particularly stable system can be provided which can be aligned and tracked at the same time without constraining forces and precisely.
The adjustment device has, according to a further development of the invention, at least one pivot drive which operates, for example, hydraulically or electromotorically. Hydraulic pivot drives have the particular advantage here that they are also suitable for continuous application of a drive force without energy being permanently consumed. This is particularly important in the case of the highly continuous alignment and tracking operations.
Although it is in principle possible that only one individual pivot drive is provided, it is provided according to a further development of the invention that the adjustment device has two pivot drives which are arranged at opposite ends of the adjustment device and preferably act in opposite directions. As a result of this particular configuration, it becomes possible to significantly simplify the construction of the alignment and tracking device according to the invention. It is thus, for example, possible to effect the transmission of the drive forces which come from the pivot drives exclusively or at least primarily via tension elements (e.g. wires or rods) so that complex and heavy pressure or bending elements can be largely omitted.
Against this background, it is provided according to a further development of the invention that the adjustment device has a control device which is set up to control the pivot drives in such a manner that connecting elements of the adjustment device are always tensioned at least in operation.
According to a further development of the invention, it is furthermore provided that the adjustment device has a plurality of adjusting lever units, wherein in each case a rod-shaped element, in particular a traction means, is provided between two adjacent adjusting lever units. As a result of this, a reliable and at the same time simple construction which can also be mounted quickly is produced with a small number of structural units which can be premanufactured in large quantities without any problems. It is particularly advantageous here that the adjusting lever units in each case have one adjusting lever which couples the adjustment device to the assigned pivot axle. As a result, small adjustment forces and precise adjustability or precise alignment and tracking operation are produced.
According to a further development of the invention, it is furthermore provided that at least one adjusting lever unit has a restoring means, in particular a spring, in order to actuate the respective adjusting lever in the direction of a starting position. As a result of this, the torques which are generated in the course of the alignment and tracking operation and primarily result from the dead weight of the solar collectors can be reduced or absorbed. This results in a reduction in the adjustment forces and thus a significant relief of load on the drives which can then potentially be configured to be more compact and with less power. Moreover, these torques do not have to be introduced in the support construction and foundations. As a result of this, the corresponding components can be significantly simplified—up to the anchoring in the ground. Moreover, fewer deformations occur in the overall system.
According to a further development of the invention, it is furthermore provided that the adjustment device has articulated joints, preferably ball heads, in particular in the region of a connection between adjusting lever units and rod-shaped elements. As a result of this, an adjustment operation free of constraint is produced without complex components being necessary.
Exemplary embodiments are intended to explain the invention and its advantages in greater detail below on the basis of the enclosed figures. The size ratios of the individual elements to one another in the figures do not always correspond to the real size ratios since several shapes are simplified and other shapes are shown in an enlarged form in comparison to other elements for the sake of clarity.
Pivot axle S preferably runs in a North-South direction and is, according to the invention, pivoted by approx. +/−45°. The drive region generally lies centrally in the East-West direction. The dimensions of a unit can be, for example, up to 60 m by 120 m. An adjustment to the terrain or its formation and/or inclination is thus also generally required.
A more expedient variant provides an actuation of both sides via an electric control unit so that these two sides are only connected by cable. A radio control unit would also be possible. A tensioned system has the advantage above all in the event of a storm that vibrations do not build up so easily.
The invention has been described with reference to a preferred embodiment. It is, however, conceivable for a person skilled in the art to be able to make modifications or changes to the invention without departing from the scope of protection of the following claims.
Claims
1. Alignment and/or tracking device for solar collectors, having:
- a plurality of pivot axles on which in each case a plurality of solar collectors are mounted, and
- a jointly acting adjustment device which couples the pivot axles to one another in such a manner that the pivot axles are jointly pivotable,
- wherein
- the adjustment device is coupled to the pivot axles in each case via at least one articulated joint, in particular a cardanically acting articulated joint.
2. Alignment and/or tracking device according to claim 1, wherein at least one pivot axle has at least two carrying elements, between which a connecting articulated joint, in particular a cardanically acting connecting articulated joint, is arranged.
3. Alignment and/or tracking device according to claim 1, wherein the pivot axles are supported on support elements, wherein a support articulated joint, in particular a separable ball joint, is provided between the pivot axles and at least a few support elements.
4. Alignment and/or tracking device according to claim 1, wherein the adjustment device has at least one pivot drive.
5. Alignment and/or tracking device according to claim 4, wherein at least one pivot drive operates hydraulically or electromotorically.
6. Alignment and/or tracking device according to claim 4, wherein the adjustment device has two pivot drives which are arranged at opposite ends of the adjustment device and act in opposite directions.
7. Alignment and/or tracking device according to claim 4, wherein the adjustment device has a control device which is set up to control the pivot drives in such a manner that connecting elements of the adjustment device are always tensioned at least in operation.
8. Alignment and/or tracking device according to claim 1, wherein the adjustment device has a plurality of adjusting lever units, wherein in each case a rod-shaped element, in particular a traction means, is provided between two adjacent adjusting lever units.
9. Alignment and/or tracking device according to claim 8, wherein the adjusting lever units in each case have one adjusting lever which couples the adjustment device to the assigned pivot axle.
10. Alignment and/or tracking device according to claim 8, wherein at least one adjusting lever unit has a restoring means, in particular a spring, in order to actuate the respective adjusting lever in the direction of a starting position.
11. Alignment and/or tracking device according to claim 1, wherein the adjustment device has articulated joints, preferably ball heads, in particular in the region of a connection between adjusting lever units and rod-shaped elements.
12. Alignment and/or tracking device according to claim 1, wherein the pivot axle extends substantially in the North-South direction.
Type: Application
Filed: Dec 15, 2011
Publication Date: Feb 27, 2014
Applicant: Contour-Track GmbH (Essenbach)
Inventors: Stephan Reisch (Essenbach), Johann Rainer (Gottfrieding)
Application Number: 13/884,006
International Classification: F24J 2/54 (20060101);