1. Technical Field
The present invention relates to a solar module for greenhouse. More particularly, the present invention relates to a greenhouse for growing plants and a plurality of solar panels installed on the top of the greenhouse.
2. Related Art
Greenhouse (or agriculture greenhouse) is an installation for growing plants in house. Traditionally, greenhouses are made by assembling brackets to build a but and installing insect capture nets, glass, transparent plastic plates or covering transparent masks in order for sun to directly illuminate plants inside the greenhouse. Greenhouses are able to receive electromagnetic radiation heating from sun and slow down or isolate the convection of air inside and outside of the greenhouse. As a result, the air, water and soil inside of the greenhouse become warm and helpful to g row the plants.
Because the greenhouse can provide plants an individual natural environment to grow, it becomes more and more important for providing food in areas such as remote inland, mountain area, deserts or high-latitude area. However, many basic equipment for growing plants indoor, for example, plant cultivation light, watering device, fan and etc, need electricity, which cannot be easily obtained in remote inland, mountain area, deserts or high-latitude area. If the greenhouse cannot generate electricity itself, it is difficult to use greenhouse in areas stated above.
Taiwanese patent application 513914 and M341406 disclosed the technology of using solar panels for generating electricity in the greenhouse. However, those technologies fail to disclose in details the relatively best position and direction for solar panels to receive solar radiation. In addition, Chinese applications CN200420021500.5 and CN200710143184.7 disclosed that the solar panels were installed at the top of the roof. However, they failed to disclose the preferred direction for the solar panels to fully receive solar illumination in order to solve the issue that solar radiation cannot be fully received. Furthermore, planting areas of traditional greenhouses include dark planting areas for growing non-photosensitive plants and bright planting areas for growing photosensitive plants. Technologies stated above, besides providing electricity for greenhouses, do not provide any related strategies regarding structures for preventing, limiting or encouraging solar illumination for dark or bright planting areas. Therefore, technologies stated above need to be improved.
The present utility mode has the purpose for providing a solar module for greenhouse for growing plants, capable of substantially improving the relative matching position between solar panels and dark or bright planting area of the greenhouse which has mentioned above and also capable of preventing, limiting or opening sunlight from or to illuminate the planting area in order to solve the issue that the solar panels are not efficient to receive the sun radiation because of the different installation position and different direction of the solar panels.
To achieve the purpose, the present utility model provides a solar module for greenhouse, comprising:
a greenhouse, forming a dark planting area for glowing non-photosensitive plants inside; and
a plurality of non-light transmitting solar panels, installed at the top of the greenhouse and arranged vertically and horizontally, to form a roof tilted in a particular light receiving direction and to separate the dark planting area from outside air, the roof can be made of plane surface or surface having some arc changes.
Thus, the roof of the greenhouse formed by non-light transmitting solar panels is used to form a greenhouse capable of growing non-photosensitive plants. Thus, the solar panels may prevent sunlight from directly illuminating the dark planting area. Thus, an integrated structure of solar panels, greenhouse and dark planting area is formed to save the construction expense for solar panels and greenhouse, and to provide an installation position and tilted direction for solar panels to receive sunlight illumination at the top of greenhouse in order to increase the efficiency for solar panels to receive sun radiation. Furthermore, the greenhouse becomes an electricity generating factory to increase the value of the location of greenhouse.
A shaft is installed on the top of the greenhouse in the direction of earth's southern and northern axis and extends to both side ends of the greenhouse, the solar panels are installed on the shaft and are driven by the shaft to swing in the direction of eastern and western position of the earth to a positioning angle of tracing sunlight in order to further increase the efficiency of solar panels to receive the solar radiation;
A reflective surface for reflecting sunlight to the dark planting area is installed at the bottom of the solar panels.
Furthermore, the present utility model further provides a solar module for greenhouse, comprising:
a greenhouse, forming a bright planting area for glowing photosensitive plants inside; and
a plurality of non-light transmitting solar panels, installed at the top of the greenhouse and arranged vertically and horizontally, to form a roof tilted in a particular light receiving direction and to separate the bright planting area from outside air, the roof can be made of plane surface or surface having some arc changes.
Thus, the roof of the greenhouse formed by non-light transmitting solar panels is used to form a greenhouse capable of growing photosensitive plants. Thus, the solar panels may let sunlight directly illuminate the bright planting area. Thus, an integrated structure of solar panels, the greenhouse and the bright planting area is formed to save the construction expense for solar panels and greenhouse, and to increase the efficiency for solar panels to receive sun radiation.
The solar panels are capable of letting light of particular wavelength go through in order for the solar panels directly limit sunlight to illuminate the bright planting area and thus, to increase the photosensitive plants' speed for growing, having flowering or fruits.
A shaft is installed on the top of the greenhouse in the direction of earth's southern and northern axis and extends to both side ends of the greenhouse, the solar panels are installed on the shaft and are driven by the shaft to swing in the direction of eastern and western position of the earth to a positioning angle of tracing sunlight in order to further increase the efficiency of solar panels to receive the solar radiation;
Furthermore, the greenhouse is located on the northern hemisphere surface of the earth and the particular light receiving direction is south; or the greenhouse is located on the southern hemisphere surface of the earth and the particular light receiving direction is north.
The plurality of plant breeding lights are installed at the top of planting area and the plant breeding lights are made of Light Emitting Diodes illuminating light of a particular wavelength.
The northern side of the greenhouse extends to form a sub-greenhouse to be connected with, a sub bright planting area for photosensitive plants is formed inside, and a light transmitting plane ceiling tilted to the north is formed at the top of the sub-greenhouse, separating the sub bright planting area from the outside air in order to increase the diversity of the plants growing in the greenhouse.
A vertical wall is linked with both adjacent side edges of the roof and the ceiling, and a fan capable of facilitating inside and outside air to circulate is installed on the vertical wall.
These and other features and advantages of the various embodiments disclosed herein will be better understood with respect to the following description and drawings, in which like numbers refer to like parts throughout, and in which:
Hereinafter, the present invention will be described in detail with reference to the accompanying drawings. It should be understood that drawings do not limit the scope of the present invention.
Please refer to
Because of the structure of the present utility mentioned above, the roof 12 of the greenhouse 1 can be tilted, especially in daytime, towards north or south on the southern or northern surface. Because the illumination intensity closer to equation is larger than that of northern or southern hemisphere away from equation, solar panels 21 are able to receive the direct illumination from sunlight of high intensity coming from direction of equation (as shown in
The disclosure above fully discloses the necessary technology for the present utility model and particularly, discloses the roof 12 of greenhouse 1 formed by non-light transmitting solar panels 21 to form greenhouse 1 capable of growing non-photosensitive plants 91. Thus, the solar panels 21 may prevent sunlight from illuminating the dark planting area 10. Thus, an integrated structure of solar panels 21, greenhouse 1 and dark planting area 10 is formed to save the construction expense for solar panels 21 and greenhouse 1, and to provide an installation position and tilted direction for solar panels 21 to receive sunlight illumination at the top of greenhouse 1 in order to increase the efficiency for solar panels 21 to receive sun radiation. Furthermore, greenhouse 1 becomes an electricity generating factory to increase the value of the location of greenhouse 1.
In another embodiment, greenhouse 1 can extend its north side to form a sub-greenhouse 4 connected with its inside portion (as shown in
Please refer to
Solar panels 21 can install a reflective surface 8 on its bottom surface (as shown in
Please refer to
In another embodiment, the light transmitting solar panels 22b can be made of glass for light of particular wavelength (such as blue light, green light or red light) to go through (as shown in
Please refer to
The above description is given by way of example, and not limitation. Given the above disclosure, one skilled in the art could devise variations that are within the scope and spirit of the invention disclosed herein, including configurations ways of the recessed portions and materials and/or designs of the attaching structures. Further, the various features of the embodiments disclosed herein can be used alone, or in varying combinations with each other and are not intended to be limited to the specific combination described herein. Thus, the scope of the claims is not to be limited by the illustrated embodiments.
Number | Date | Country | Kind |
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201020250267.3 | Jul 2010 | CN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN2010/001201 | 8/6/2010 | WO | 00 | 3/15/2012 |