1. A thermal solar panel comprising:
at least one heat collector to receive solar rays;
a housing for the heat collector, the housing being delimited by walls surrounding the heat collector, at least one of the walls including at least one slit for passage of the solar rays;
at least one reflective area arranged facing the heat collector, the reflective area being suited to reflect thermal radiation emitted by the heat collector;
at least one reflective strip, arranged outside of the housing, each of the at least one reflective strip being arranged facing one respective slit so as to focus radiation received towards the respective slit; and
a plurality of elongated reflective elements, each elongated reflective element including a flat base and two concave surfaces so as to define a perceptively triangular cross section, the elongated reflective elements being arranged side by side such that the flat bases are coplanar and, together, define the wall of the housing including the at least one slit, each slit being formed by a space between two adjacent elongated reflective elements, and each concave surface being arranged facing a respective reflective strip so that radiation reflected by a concave surface is focused towards the corresponding reflective strip.
2. The thermal solar panel as recited in claim 1 wherein the at least one slit includes a plurality of slits.
3. The thermal solar panel as recited in claim 1 wherein each pair of adjacent reflective elements defines a primary parabolic mirror having the slit in a center,
the reflective strip arranged to face the pair of reflective elements forming a secondary hyperbolic convex mirror, and
the reflective elements and the reflective strip being arranged such that the optical axes of the primary and secondary mirrors coincide, and a focal line of the primary parabolic mirror coinciding with that of the hyperbolic mirror.
4. The thermal solar panel as recited in claim 1 wherein each pair of adjacent reflective elements defines a primary parabolic mirror having the slit in a centre,
the reflective strip arranged to face the pair of reflective elements forming a secondary elliptical concave mirror, and
the reflective elements and the reflective strip being arranged such that the optical axes of the primary and secondary mirrors coincide, and a focal line of the primary parabolic mirror coincides with that of the elliptical mirror.
5. The thermal solar panel as recited in claim 1 wherein each wall of the housing has at least one reflective area arranged to face the heat collector.
6. The thermal solar panel as recited in claim 5 wherein the reflective area extends over an entirety of the respective wall.
7. The thermal solar panel as recited in claim 1 wherein the housing has thermal insulation spacers arranged between the heat collector and at least one of the walls of the housing.
8. The thermal solar panel as recited in claim 1 wherein the panel is generally plane-parallel in shape and defined by lateral faces, a lower face, and an upper face delimiting together an inner space in which the housing is arranged, such that:
a lower wall of the walls of the housing is formed by the lower face;
lateral walls of the walls is formed by the lateral faces; and
the wall comprising the at least one slit being an upper wall of the walls and arranged between the upper and lower faces of the panel, parallel to the upper and lower faces,
the upper face being formed by a transparent plate.
9. The thermal solar panel as recited in claim 8 wherein the upper wall is made of glass.
10. The thermal solar panel as recited in claim 1 further comprising a heat transporter, comprising:
a heat exchanger between the heat collector and a coolant housed in the heat collector;
at least one tubular element transferring the coolant and linking the heat exchanger with the outside of the solar panel, passing through an orifice placed in at least one of the walls of the housing; and
at least one airtight, thermally insulating joint between the tubular element and the orifice.
11. The thermal solar panel as recited in claim 1 wherein the heat collector includes a wrapping capable of absorbing the solar andor thermal radiation.
12. The thermal solar panel as recited in claim 11 wherein the wrapping is metallic and enveloping a phase-changing material.
13. The thermal solar panel as recited in claim 12 wherein the phase-changing material is chosen from anthraquinone or aluminium.
14. The thermal solar panel as recited in claim 1 wherein the heat collector is formed by a tubular element, in which a coolant circulates.
15. The thermal solar panel as recited in claim 14 wherein the tubular element is provided with a highly heat-absorbent external coating with low heat emission.
16. The thermal solar panel as recited in claim 14 wherein a reflective area is formed by a tubular reflection element, coaxially surrounding the tubular heat collector, the tubular reflection element being formed by an insulating material having an internal surface that is treated to permit reflection of residual thermal radiation emitted by the tubular heat collection element, and including on its upper generator a further slit so as to let incident thermal radiation pass through.
17. The thermal solar panel as recited in claim 16 wherein the internal surface is treated with metal.
18. The thermal solar panel as recited in claim 1 further comprising at least one thermal fluid introduction or evacuation element connected to all of the heat collectors, housed within a surrounding wall laterally extending the panel, delimited by walls made of thermally insulating material.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A resonator structure for a wireless power transfer system, comprising:
resonators, which are to transfer wireless power; and
a dielectric substance, which includes at least one exposure region formed on the dielectric substance to fix the resonators in a covered shape and to selectively expose parts of the resonators.
2. The resonator structure of claim 1, wherein the resonator has a circular spiral structure.
3. The resonator structure, of claim 2, wherein the resonator is a conductor plate having a predetermined line width and line thickness.
4. The resonator structure of claim 2, wherein the dielectric substance has a center cavity which is formed in a center region of the spiral structure.
5. The resonator structure of claim 1, wherein the resonator has a rectangular spiral structure.
6. The resonator structure of claim 5, wherein the resonator is a conductor plate having a predetermined line width and line thickness.
7. A resonator structure for a wireless power transfer system, comprising:
resonators, which are in a form of a rectangle to transfer wireless power; and
a dielectric substance, which includes a plurality of dielectric branches that extend in outward directions based on a center of the rectangle to fix each part of the resonators in a covered form.
8. The resonator structure of claim 7, wherein the plurality of dielectric branches include four dielectric branches which extend in four directions based on the center.
9. The resonator structure of claim 7, wherein the resonator is a conductor plate of a spiral structure having a predetermined line width and line thickness.
10. A resonator structure for a wireless power transfer system, comprising:
resonators, which are in a form of circles to transfer wireless power; and
a dielectric substance, which includes a plurality of dielectric branches that extend in diametrically opposed directions based on a center of the circle to fix each part of the resonators in a covered shape.
11. The resonator structure of claim 10, wherein the dielectric substance has a circular center cavity which is formed in a center region of the dielectric branches in the circle.
12. The resonator structure of claim 10, wherein the plurality of dielectric branches include eight dielectric branches which extend in eight directions based on the center.
13. The resonator structure of claim 7, wherein the resonator is a conductor plate of a spiral structure having a predetermined line width and line thickness.