1. Field of the Invention
The invention relates to a solar tile structure, and more particularly, to a solar tile structure adapted to engage with an adjacent tile structure and capable of draining liquid.
2. Description of the Prior Art
Generally, a conventional solar panel can be disposed on an outside surface of a building. For example, the conventional solar panel can be installed on a housetop or an external wall so as to transform solar energy into electrical energy effectively. The conventional solar panel disposed on the housetop of the building can transform the solar energy into the electrical power in a sunny day and can protect the building in a rainy day. However, the conventional solar panel tile can not drain water away from the solar panel effectively in the rainy day, so that electronic elements inside the solar panels of the conventional solar panel tile are damaged by the water easily. Thus, design of a solar panel tile structure capable of draining the water around the solar panel effectively is an important issue in the solar panel industry.
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The invention provides a solar tile structure adapted to engage with an adjacent tile structure and capable of draining liquid for solving above drawbacks.
According to the claimed invention, a solar tile structure includes a base whereon an accommodating space is formed, and the accommodating space is for accommodating a solar panel. The solar tile structure further includes a first hook structure disposed on a first side of the base, a second hook structure disposed on a second side of the base opposite to the first side for engaging with an adjacent solar tile structure so as to constrain a movement of the base relative to the adjacent solar tile structure, a first slot structure disposed on a third side of the base different from the first side for draining liquid from the base, and a second slot structure disposed on a fourth side of the base opposite to the third side for engaging with other adjacent solar tile structure so as to constrain a movement of the base relative to the other adjacent solar tile structure.
According to the claimed invention, a guiding structure is formed on an end of the first hook structure.
According to the claimed invention, the solar tile structure further includes a buckling structure disposed on the first side of the base for buckling a roof.
According to the claimed invention, a plurality of holes are formed on a surface of the base adjacent to the first side, the solar tile structure further comprises a plurality of locking components, and each locking component is adapted to pass through the corresponding hole for fixing the base on a roof.
According to the claimed invention, the first slot structure includes a first channel for draining the liquid, and a second channel disposed by a side of the first channel for draining the liquid overflowing from the first channel.
According to the claimed invention, the solar tile structure further includes a connecting module disposed on a surface of the base different from the solar panel.
According to the claimed invention, a front end of the first hook structure and a front end of the second hook structure respectively are toward different directions, and a front end of the first slot structure and a front end of the second slot structure respectively are toward different directions.
According to the claimed invention, a solar tile structure combination includes a first solar tile structure, and a second solar tile structure combined with the first solar tile structure. The first solar tile structure includes a first base whereon a first accommodating space is formed, and the first accommodating space is for accommodating a first solar panel. The first solar tile structure further includes a first hook structure disposed on a first side of the first base, a second hook structure dispose on a second side of the first base opposite to the first side, a first slot structure disposed on a third side of the first base different from the first side, and a second slot structure disposed on a fourth side of the first base opposite to the third side. The second solar tile structure includes a second base whereon a second accommodating space is formed, and the second accommodating space is for accommodating a second solar panel. The second solar tile structure further includes a third hook structure disposed on a first side of the second base, a fourth hook structure dispose on a second side of the second base opposite to the first side for engaging with the first hook structure of the first solar tile structure so as to constrain a movement of the second base relative to the first solar tile structure, a third slot structure disposed on a third side of the second base different from the first side, and a fourth slot structure disposed on a fourth side of the second base opposite to the third side.
The solar tile structure of the invention can drain the water on the base effectively, and each solar tile structure can be combined with the adjacent solar tile structures rapidly and stably for forming the solar tile structure combination. Thus, the solar tile structure combination of the invention with enhanced draining system has advantages of simple structure and easy assembly. The invention can decrease catchment on the solar panel for preventing the solar panel from short.
These and other objectives of the invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
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As shown in
The first hook structure 22 and the second hook structure 24 can respectively be disposed on the first side 201 and the second side 202 of the first base 20 (the upper side and the lower side), and a front end of the first hook structure 22 and a front end of the second hook structure 24 respectively are toward different directions. For example, the front end of the first hook structure 22 and the front end of the second hook structure 24 are toward inner area of the first solar tile structure 12 oppositely. The first solar tile structure 12 can be combined with the adjacent solar tile structures via the first hook structure 22 and the second hook structure 24 for forming the solar tile structure combination 10. The first slot structure 26 and the second slot structure 28 are respectively disposed on the third side 203 and the fourth side 204 of the first base (the lift side and the right side), and front ends of the two slot structures respectively are toward different directions. For example, the first end of the first slot structure 26 is toward an upper side of the first solar tile structure 12, and the front end of the second slot structure 28 is toward a lower side of the first solar tile structure 12. The first solar tile structure 12 can be combined with the adjacent solar tile structures via the first slot structure 26 and the second slot structure 28 for forming the solar tile structure combination 10, an assembly of the slot structures drains the liquid from the solar tile structure combination 10, and a detailed description is introduced as follows.
In addition, a guiding structure 221 can be formed on an end of the first hook structure 22 of the first solar tile structure 12. The first hook structure 22 of the first solar tile structure 12 can be smoothly engaged with the hook structure of the adjacent solar tile structure via the guiding structure 221. The first solar tile structure 12 can further include a first buckling structure 30 disposed on the first side 201 of the first base 20 for buckling the roof. A plurality of holes 206 can be formed on a surface of the first base 20 adjacent to the first side 201 of the first solar tile structure 12. The first solar tile structure 12 can further include a plurality of locking components 32. Each locking component 32 can pass through the corresponding hole 206, so as to fix the first base 20 on the roof. The first solar tile structure 12 can further include a first connecting module 34 disposed on a surface of the first base 20 different from the first solar panel 18 for outputting the electric power generated by the first solar panel 18.
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Besides, the liquid (such as rainwater) can flow toward the first solar tile structure 12 or the third solar tile structure 16 at the direction opposite to the first direction D1 when the rainwater falls on the second base 50 of the second solar tile structure 14. The rainwater can further flow toward two lateral sides of the second base 50, and then flow onto the first base 20 and the third base 70 via the third slot structure 56 and the fourth slot structure 58. After, the rainwater on the first base 20 (or the third base 70) can flow at the direction opposite to the first direction D1, or can flow into the first slot structure 26 and the second slot structure 28 (or the fifth slot structure 76 and the sixth slot structure 78) via the corresponding first channel 261 and the second channel 262 for draining the rainwater. The sixth slot structure 78 not only can constrain a movement of the third base 70 relative to the first base 20, but also can drain the liquid via the first slot structure 26. Furthermore, the liquid on the second base 50 can flow at the first direction D1 as being driven by wind at the first direction D1. As shown in
Comparing to the prior art, the solar tile structure of the invention can drain the water on the base effectively, and each solar tile structure can be combined with the adjacent solar tile structures rapidly and stably for forming the solar tile structure combination. Thus, the solar tile structure combination of the invention with enhanced draining system has advantages of simple structure and easy assembly. The invention can decrease catchment on the solar panel for preventing the solar panel from short.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention.
Number | Date | Country | Kind |
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100209098 | May 2011 | TW | national |