A new greenhouse with real-time control
A real-time control and new type of technology, applied in greenhouse cultivation, agricultural machinery and equipment, climate change adaptation, etc., can solve the problems of manpower and material resources, high greenhouse cost, poor adaptability, etc., to save costs, save manpower and material resources, adaptability strong effect
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0029] Example 1: Such as Figure 1-8 As shown, a new type of greenhouse with real-time control includes wall 1, outer scaffold 2, inner scaffold 3, translucent film 4, top beam 5, unpowered fan 6, slide rail 7, stepper motor 8, heat preservation Was 9, Dayang energy collector plate 10, reservoir 11, water pump Ⅰ 12, water inlet pipe 13, water outlet pipe 14, collector pool 15, water pump Ⅱ 16, radiator 17, soil moisture sensor 18, water pump Ⅲ 19, irrigation pipe 20 , Control module 21, temperature and humidity sensor 22, solar photovoltaic panel 23, bracket 24, battery 25, light sensor I 26, LED growth lamp 27, fog machine 28, mist outlet 29, liquid level sensor I 50, liquid level sensor II 51; The wall 1 is made of high-insulation material, and its top adopts two layers of scaffolds, namely the outer scaffold 2 and the inner scaffold 3. The outer scaffold 2 and the inner scaffold 3 are connected to the top beam 5, and the light-transmitting film 4 covers On the top beam 5, ...
Embodiment 2
[0030] Example 2: Such as Figure 1-8 As shown, a new type of greenhouse with real-time control, this embodiment is the same as embodiment 1, in which:
[0031] The solar heat collecting plate 10 includes a stainless steel shell 30, transparent glass 31, a water inlet 32, a heat collecting pipe 33, a U-shaped heat collecting plate 34, a water outlet 35, and a light sensor II 36; wherein the water inlet 32 and the water outlet 35 are installed in Outside the stainless steel housing 30, the heat collecting pipe 33 and the U-shaped heat collecting plate 34 are installed inside the stainless steel housing 30. The heat collecting pipe 33 is connected to the water inlet 32 and the water outlet 35. The heat collecting pipe 33 is located at the focus of the U-shaped heat collecting plate 34. Above, the light sensor II 36 is installed in the lower part of the stainless steel housing 30 and connected to the control module 21. The water inlet 32 and the water outlet 35 are connected t...
Embodiment 3
[0032] Example 3: Such as Figure 1-8 As shown, a new type of real-time control greenhouse, this embodiment is the same as embodiment 2, in which:
[0033] The control module 21 includes a single-chip microcomputer module 37, a temperature and humidity detection module 38, a light intensity detection module I 39, a light intensity detection module II 40, a soil moisture detection module 41, a liquid level detection module 42, a heat collection control module 43, and a heat dissipation control module 44 , Irrigation control module 45, heat preservation control module 46, humidification control module 47, LED growth lamp control module 48, battery 49, liquid level detection module Ⅱ 52; of which the single-chip module 37, temperature and humidity detection module 38, light intensity detection module Ⅰ 39, light Strong detection module Ⅱ 40, soil moisture detection module 41, liquid level detection module 42, heat collection control module 43, heat dissipation control module 44, irr...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


