Green building capable of saving energy by utilizing solar energy
Technical Field
The utility model relates to a green building technical field, in particular to utilize green building of solar energy saving.
Background
The green building is a high-quality building which saves resources, protects the environment, reduces pollution, provides healthy, applicable and efficient use space for people and furthest realizes harmonious symbiosis between people and nature in the whole life cycle. Most of green buildings at present utilize solar energy to perform photo-thermal conversion or photoelectric conversion, but most of solar panels used for photoelectric conversion are fixed, cannot be subjected to angle adjustment, and are not beneficial to sunlight absorption.
Disclosure of Invention
The utility model provides an it utilizes solar energy saving's green building to compensate prior art not enough to provide one kind.
The utility model discloses a realize through following technical scheme:
the utility model provides an utilize green building of solar energy saving, includes the building, a plurality of photoelectric conversion subassemblies of top fixed mounting of building, the internally mounted of building has battery and controller, photoelectric conversion subassembly is including installing the solar panel on angle adjusting equipment, solar panel is connected with the battery electricity, angle adjusting equipment is connected with the controller electricity.
The angle adjusting device comprises a base fixedly connected with the building, a rotary mechanism is mounted on the base, a support is fixedly mounted at the top of the rotary mechanism, the first end of the support is hinged with the lifting device, the second end of the support is hinged with the first end of the solar panel, and the second end of the solar panel is hinged with the output end of the lifting device.
The slewing mechanism is including installing the slewing bearing at the base top, the last ring gear of installing of slewing bearing, the internally mounted of base has the second motor, the output of second motor is installed with the third gear of ring gear meshing, slewing bearing's top fixed mounting has the stand, the top fixed mounting support of stand.
The lifting device comprises a guide cylinder, the first end of the guide cylinder is hinged with the support, a nut is rotatably mounted at the second end of the guide cylinder, a second gear is fixedly mounted on the nut, and the nut is meshed with the screw rod; the top of lead screw and solar panel's second end are articulated, fixed mounting first motor on the guide cylinder, the first gear with second gear engagement is installed to the output of first motor.
And the solar panel is provided with a sunlight tracking sensor electrically connected with the controller.
The rainwater recycling system comprises a downpipe arranged on the eave of the building, the downpipe is connected with a rainwater filter box, the rainwater filter box is connected with a water tank, and the water tank is connected with a reclaimed water pipeline in the building through a water pump.
The water pump is electrically connected with the storage battery.
The utility model has the following technical advantages:
the photoelectric conversion of the utility model consists of a plurality of solar panels which are arranged in an array shape, and the solar panels can track sunlight under the coordination of a sunlight tracking sensor and a controller, so that the optimal irradiation angle between the solar panels and the sunlight is kept as far as possible, and the absorption of the sunlight is facilitated; and a rainwater recovery device is also arranged, and rainwater is filtered and then enters the building to be used as reclaimed water, so that water resources are saved.
Drawings
The present invention will be further described with reference to the accompanying drawings.
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of the photoelectric conversion module.
Fig. 3 is a schematic structural diagram of the lifting device.
Fig. 4 is a schematic structural view of the base.
In the figure, 1-building, 2-water pump, 3-water tank, 4-rainwater filter tank, 5-downpipe, 6-photoelectric conversion component, 7-base, 8-slewing bearing, 9-upright post, 10-bracket, 11-guide cylinder, 12-first motor, 13-first gear, 14-screw rod, 15-solar panel, 16-second gear, 17-nut, 18-limiting component, 19-second motor, 20-motor frame, 21-gear ring, and 22-third gear.
Detailed Description
The following are only embodiments of the present invention, but the scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention should be covered by the present invention.
In the present invention, the words describing the directional relationship such as "front", "back", "inner", "outer" are only used for convenience of description of the embodiment, and are not considered as limitations of the present invention. The terms "first," "second," and the like are used solely to distinguish one from another and are not to be construed as indicating or implying relative importance. The fixed connection mode includes but is not limited to welding, spiro union, joint, interference fit, integrated into one piece.
Fig. 1 to 4 show an embodiment of the present invention. The embodiment provides a green building for saving energy by utilizing solar energy, which comprises a building 1, wherein a plurality of photoelectric conversion assemblies 6 are fixedly arranged at the top of the building 1, and the photoelectric conversion assemblies 6 are rotatably arranged at the top of the building 1 in a rectangular array; the inside of the building 1 is provided with a storage battery and a controller, the storage battery and the photoelectric conversion assembly 6 are respectively electrically connected with the controller, and the photoelectric conversion assembly 6 is also electrically connected with the storage battery.
The photoelectric conversion assembly 6 comprises a solar panel 15 and angle adjusting equipment, wherein the solar panel 15 is arranged on the angle adjusting equipment and is electrically connected with the storage battery; the angle adjusting device comprises a hollow base 7 fixedly connected with the building 1, a rotary support 8 is mounted at the top of the base 7, a gear ring 21 is mounted on the rotary support 8, a motor frame 20 is mounted inside the base 7, a second motor 19 is mounted on the motor frame 20, and a third gear 22 meshed with the gear ring 21 is mounted at the output end of the second motor 19.
The top fixed mounting of slewing bearing 8 has stand 9, the top fixed mounting support 10 of stand 9, and the articulated elevating gear of first end of support 10, the second end is articulated with solar panel 15's first end, and solar panel 15's second end is articulated with elevating gear's output.
The lifting device comprises a guide cylinder 11, the first end of which is hinged with the bracket 10, a nut 17 is rotatably arranged at the second end of the guide cylinder 11, namely, the nut 17 is in rotary fit with the guide cylinder 11, a second gear 16 is fixedly arranged on the nut 17, and the nut 17 is meshed with the screw rod 14; the top end of the screw rod 14 is hinged with the second end of the solar panel 15, the bottom end of the screw rod is provided with a limiting part 18, and the limiting part 18 can enable the screw rod 14 to keep relatively stable in the movement process. The guide cylinder 11 is fixedly provided with a first motor 12, and the output end of the first motor 12 is provided with a first gear 13 connected with a second gear 16.
A sunlight tracking sensor is mounted on the solar panel 15. The first motor 12, the second motor 19 and the sunlight tracking sensor are all electrically connected with the controller.
Still install rainwater recovery system on building 1, including installing pipe in the water 5 on the eave of building 1, this pipe in the water 5 is connected with the water inlet of rainwater rose box 4, and the delivery port of rainwater rose box 4 is connected with the water inlet of water tank 3, and water tank 3 passes through water pump 2 and is connected with the well water pipe in the building. The water pump 2 is electrically connected with the storage battery.
The controller controls the first motor 12 and the second motor 19 to act according to the signal of the sunlight tracking sensor, so that the optimal irradiation angle is kept between the solar panel and the sunlight, and the sunlight is fully utilized; the solar panel 15 converts the light energy into electric energy, and the electric energy is sent into the storage battery to supply power for the indoor power equipment and the water pump 2. Rainwater enters the rainwater filter tank 4 through the downpipe 5, is filtered to remove impurities, then enters the water tank 3 for storage, and finally is sent to a reclaimed water pipeline in the building 1 by the water pump 2.