Assembled energy storage greenhouse

Assembled energy storage greenhouses are agricultural and horticultural facilities formed on the basis of the scientific use of solar energy, and reflect low-cost and high-efficiency in production. Its performance characteristics are:


Good lighting: The design of the front roof of the solar greenhouse takes full account of the solar altitude angle under different latitude conditions and the incident angle of solar light on the greenhouse, making it ideal for direct sunlight in different seasons and different sun light incidence periods. The conditions minimize the scattering and refraction of light and maximize the use of solar energy.


Insulation is good: Solar greenhouse, using the transparent covering materials and insulation materials of the rear wall, the rear roof and the front roof to save the radiant heat caused by the sunlight during the daytime to minimize the heat conduction and heat radiation at night The gap diffusion effect of heat and heat makes the indoor temperature not less than 8°C at night to ensure the safe production of vegetables in winter.


Good heat storage (good heat storage): Solar greenhouses use wall heat absorption and heat load on the rear roof. Under the conditions of solar radiation during the daytime, as much as possible, the wall, the back roof, and the ground surface absorb heat to a large extent, and heat capacity is used. Large materials, large amounts of heat storage, and then continue to release at night to compensate for the loss of greenhouse temperature, in order to ensure that the indoor temperature reaches the required interval.


Assembled energy storage greenhouse features:


1. Solar panels can be installed on the top of the back wall of the greenhouse greenhouse to provide electricity and heat for the greenhouse;

2. The perfect combination with the building means that the hair (heat) electric material is used as building material and decoration material at the same time;

3, solar energy can be selective, according to the actual needs of electricity (heat) need to choose solar cell silicon components, solar collectors;

4, to meet the needs of plant growth, but also to achieve the photoelectric (thermal) conversion;

5. The use of solar thermal technology can achieve off-season crop production and increase greenhouse output value;

6. Use intelligent greenhouse control technology to achieve the four seasons constant temperature of the greenhouse, which can plant various crops throughout the year;

7. To achieve the North-fruit North species, artificially control the crop florescence, growth, and results, and autonomously control the time to market;

8. Break through the constraints of time and space in traditional agricultural production and save a lot of land;

9, full use of material resources, play a variety of functions;

All materials are processed in the factory and assembled on site, saving the installation cycle;

Electronic Components

Electronic components are components of electronic components and small machines and instruments. They are often composed of several parts and can be used in similar products; often refer to certain parts of electrical appliances, radios, instruments and other industries, including capacitors, transistors, General term for electronic devices such as hairspring and spring

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