SOLAR TRACKER WITH MOVEMENT IN TWO AXES AND ACTUATION IN ONLY ONE OF THEM
According to FIG. 6, it consists of a solar tracking device with two axes of rotation, which is actuated only in one of them by virtue of the incorporation into the mechanism of a support bar of adjustable length (8), which is articulated at its two ends and anchored via one side to the body that tracks the sun (4) and via the other side to an adjustable support (5) joined to the base of the actual tracker or to the ground. In turn, the bar is equipped with a shock-absorbing spring system (10) that allows it to be operated as a dynamic control element for the whole assembly.
The present invention relates to a solar tracking device with two axes of rotation, which is actuated in only of them, by virtue of the incorporation into the mechanism of a support bar of adjustable length, which is articulated at its two ends and anchored at one side to the body carrying out the solar tracking, and at the other to an adjustable support joined to the base of the actual tracker or to the ground. In turn, the bar is equipped with a shock-absorbing spring system that allows it to be operated as a dynamic control element for the whole assembly.
BACKGROUND OF THE INVENTIONSolar tracking devices with two axes (orientation movement—tracking of the azimuth—and inclination movement—tracking of the elevation-) are known. These devices seek maximum energy collection from solar radiation by making the incidence of the solar rays be perpendicular throughout the day to the collection surface of the thermal or photovoltaic device.
The two rotations determining the orientation of the collection surface are carried out by means of two drive systems (they are normally geared motor, motorized screw, cable or lever system assemblies . . . ).
Compared with a tracker system with only one axis, the tracker with two actuated axes is more expensive to construct and maintain and less reliable since it incorporates more elements that can break down. By introducing a restriction suitably linking the two rotations, the movement in the two axes can be achieved by means of actuating the tracker in only one axis. A mechanical configuration has been devised which allows carrying out this movement, the features of which configuration are object of the present invention.
DESCRIPTION OF THE INVENTIONA solar tracking system with two axes is generically characterized by the position of the axes of rotation, as is described in
As described in
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- A point A, integral to the ground (1) or to the base of the tracker (2) indistinctly, separated a distance dA from the axis of orientation, such that the plane that it defines next to the axis of orientation is the North-South plane (5) (henceforth N-S plane) is considered.
- A point P belonging to the body (4), separated a distance dp from the axis of inclination, and belonging to the plane containing the axis of orientation and perpendicular to the axis of inclination is considered.
- A joint between points A and P, by means of an arm (6) with length L, articulated at its two ends by means of lashings preventing the movements between the lashed bodies but not rotations (ball and socket or universal joint) is considered. Despite the oscillation of the shock-absorbing spring system, the variation in the length of the bar can be considered negligible averaged throughout the day.
Under these premises, it can be geometrically deduced that the trajectory of point P is, as
The values of H and D will be fixed by the mechanical configuration of the tracker. If the value of dp is also fixed to place the support of the articulated arm in the most suitable place (coinciding with a bar or at a point where the robustness of the system is high), the position of the anchoring of point A, dA, and the length of the bar, L, would be like design parameters. These two parameters will be calculated such that, for a certain period of the year (for example, summer solstice) the difference between the trajectory of the tracker and the solar trajectory is minimal. As the solar trajectory continuously varies throughout the year, the mechanism allows adjusting:
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- The length of the bar which will allow, by adjusting the same to previously calculated positions, optimizing the trajectory of the tracker in all periods of the year.
- The distance dA from the support, always placed on the N-S plane, to the axis of orientation will allow in the same way the trajectory of the tracker to be optimized.
After the geometric description describing the operation of the invention, the details of the key elements are given: The bar of adjustable length and the adjustable anchorage support.
1. ARM OF ADJUSTABLE LENGTH:
2. ADJUSTABLE ANCHORAGE SUPPORT:
To better understand what has been described in the present specification, explanatory drawings described below are attached hereto.
As indicated in
A support formed by a fixed base (5) and a longitudinal adjustment system (6) responsible for varying the location of the fixing (7) of the support with the joint of the arm (8) is anchored to the floor.
The arm (8) incorporates a length adjustment system (9) by means of a double thread cylinder and a suspension system (10) formed by a spring and an absorber. The ends of the arm (8) incorporate ball and socket joints joining it with the fixing (7) of the support anchored to the ground and with the fixing (11) placed on the structure (4).
Claims
1. Solar tracker with movement in two axes and actuation in only one of them, one of them perpendicular to the plane of the ground, called axis of orientation, and the other one parallel to the plane of the ground, and not necessarily secant with the first, called axis of inclination, incorporating a joint, by means of an arm with ball and socket or universal joints, placed at its ends between a support anchored to the base of the tracker or to the ground, and the body carrying out the inclination rotation.
2. Solar tracker with movement in two axes and actuation in only one of them according to claim 1, characterized by the fact of having in the support anchored to the base or to the ground a system for adjusting the distance of the joint of the arm to the axis of orientation, carrying out that adjustment by means of manually or automatically actuated mechanical, electrical, magnetic, hydraulic or pneumatic devices.
3. Solar tracker with movement in two axes and actuation in only one of them according to claim 1, characterized by the fact of having in the articulated arm a system for adjusting the length thereof, carrying out that adjustment by means of manually or automatically actuated mechanical, electrical, magnetic, hydraulic or pneumatic devices.
4. Solar tracker with movement in two axes and actuation in only one of them according to claim 1, characterized by the fact of having in the articulated arm a shock-absorbing suspension spring system.
Type: Application
Filed: Jun 18, 2007
Publication Date: Dec 10, 2009
Inventors: Jesus Angel Humanes Asensio ( Palencia), Antolin Lorenzana Iban (Valladolid)
Application Number: 12/305,501
International Classification: F24J 2/38 (20060101); F24J 2/52 (20060101);