Intelligent irrigation system in greenhouse
An intelligent irrigation and irrigation system technology, applied in greenhouse cultivation, forecasting, resources, etc., can solve the problems of poor applicability, poor forecasting accuracy, difficult calculation, etc. Effect
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Embodiment 1
[0026] Embodiment 1: This embodiment aims to provide an intelligent irrigation system in a greenhouse. Aiming at the regional limitations of the solar greenhouse water consumption estimation model, it is difficult to be widely used; the parameters are difficult to obtain, and the simulation accuracy is not high; the model structure and parameters are complex , some parameters are difficult to measure, and the equipment used is expensive and a series of problems. Through the observation of environmental factors in the greenhouse, such as radiation, temperature, humidity, water vapor pressure, wind speed, etc., and by analyzing the relationship between different environmental factors and transpiration ET, the two parameters of total radiation R and water vapor pressure difference VPD are finally determined. The first factor is the key factor affecting the change of transpiration ET, the total radiation R is the total solar radiation per unit time, and the unit is MJm -2 d -1 , ...
Embodiment 2
[0064] Embodiment 2: This embodiment further describes the technical solution of the present invention on the basis of Embodiment 1. The specific content is as follows: the described early warning irrigation system also includes artificially set irrigation, and someone can set the irrigation time and irrigation time manually. water volume.
[0065] Automatic irrigation means that when the system issues an irrigation warning, the user only needs to confirm it, and the system will automatically irrigate according to the amount of irrigation water calculated according to the irrigation basis, and send a text message to the user to inform after irrigation; artificially set irrigation, that is, the user can adjust according to agronomic needs or In special cases, set the amount of irrigation water by yourself. For example, before transplanting, the amount of irrigation water required is relatively large; during the fruit picking period, the amount of irrigation should be reduced to ...
Embodiment 3
[0066] Embodiment 3: This embodiment further illustrates the technical solution of the present invention on the basis of Embodiment 1, and the specific content is as follows: the described water demand estimation model uses total radiation R, average temperature T and average The relative humidity RH establishes water demand estimation models in multiple corresponding time periods, and uses the water demand estimation models in the multiple corresponding time periods to evaluate transpiration ET in the next corresponding multiple time periods.
[0067] The units of multiple time periods in this embodiment are quarters, such as spring, summer, autumn and winter; for example: using the spring water demand estimation model of the previous year to evaluate the spring water demand of the next year, the year is divided into In the four seasons, water demand estimation models were established respectively, and the transpiration ET of the corresponding quarter in the next year was eval...
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