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Sunlight greenhouse utilizing solar gas flow to generate electricity and capable of automatically removing snow
The invention provides a sunlight greenhouse utilizing solar gas flow to generate electricity and capable of automatically removing snow, relating to the technical field of renewable energy utilization. The top of the greenhouse is formed by continuous conical greenhouse roofs. An overturning plate is arranged between two adjacent conical greenhouse roofs. One end of the overturning plate is connected to a rotary shaft. One end, connected to the rotary shaft, of each overturning plate is further connected with a counterweight rod, on which a counterweight block is arranged. Each conical greenhouse roof is composed of a dayside and a nightside. The gradient of each nightside is larger than that of each dayside. The lower portion outside of each nightside is provided with a pedestrian passage arranged above the rotary shaft. The outside of each nightside is provided with an armrest. The vertical height between each armrest and each pedestrian passage ranges from 1 to 1.5 meters. The sunlight greenhouse utilizing solar gas flow to generate electricity and capable of automatically removing snow has following beneficial effects: due to the fact that the roof is designed to be a conical surface, snow falling down on the roof can slide down to the overturning plate at the bottom by gravity effect; when snow on the overturning plate is accumulated at certain weight, one end of the overturning plate can be overturned downwards such that accumulated snow drops down into the greenhouse; and by thawing and vaporizing accumulated snow of the greenhouse into vapor, thermal gas flow can be further formed.
Sunlight greenhouse utilizing solar gas flow to generate electricity and capable of automatically removing snow
The invention provides a sunlight greenhouse utilizing solar gas flow to generate electricity and capable of automatically removing snow, relating to the technical field of renewable energy utilization. The top of the greenhouse is formed by continuous conical greenhouse roofs. An overturning plate is arranged between two adjacent conical greenhouse roofs. One end of the overturning plate is connected to a rotary shaft. One end, connected to the rotary shaft, of each overturning plate is further connected with a counterweight rod, on which a counterweight block is arranged. Each conical greenhouse roof is composed of a dayside and a nightside. The gradient of each nightside is larger than that of each dayside. The lower portion outside of each nightside is provided with a pedestrian passage arranged above the rotary shaft. The outside of each nightside is provided with an armrest. The vertical height between each armrest and each pedestrian passage ranges from 1 to 1.5 meters. The sunlight greenhouse utilizing solar gas flow to generate electricity and capable of automatically removing snow has following beneficial effects: due to the fact that the roof is designed to be a conical surface, snow falling down on the roof can slide down to the overturning plate at the bottom by gravity effect; when snow on the overturning plate is accumulated at certain weight, one end of the overturning plate can be overturned downwards such that accumulated snow drops down into the greenhouse; and by thawing and vaporizing accumulated snow of the greenhouse into vapor, thermal gas flow can be further formed.
Sunlight greenhouse utilizing solar gas flow to generate electricity and capable of automatically removing snow
QI RONGSHENG (Autor:in)
26.08.2015
Patent
Elektronische Ressource
Englisch
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