What are the components of an intelligent integrated water and fertilizer system?
Release Date:
2022-06-27
The intelligent integrated water–fertilizer system can be divided into three main components: the water–fertilizer piping system, the fertilization heads, and the software-based data display and control unit. The water–fertilizer piping is installed between the crops that require irrigation and fertilization. Different pipe types should be selected based on the specific crop and the size of the drip emitters or sprinklers. The main and branch pipes vary in wall thickness and material.
Intelligent Fertigation machine The system can be divided into three main components: the fertigation pipeline network, the fertigation heads, and the software-based data acquisition and control module. The fertigation pipeline network is installed between the crops that require irrigation and fertilization. The type of pipeline should be selected based on the specific crop and the size of the irrigation area; the main and branch lines differ in wall thickness and material, with options including PE pipe, PVC pipe, and steel pipe. The core component of the fertigation system is the fertilizer applicator, which is complemented by various auxiliary devices such as fertilizer tanks, mixing pumps, centrifugal filters, sand filters, disc filters, flow meters, and pressure gauges—selection of these components depends on operational needs and site conditions. The software component comprises both PC-based and mobile applications. Through the software interface, users can remotely monitor and display real-time system data, as well as control the start/stop of the fertilizer applicator, adjust the fertilizer application rate, and modify parameter settings as required.
Intelligent Fertigation machine The applications of this system are virtually limitless, making it suitable for all watering and irrigation scenarios—provided that piping networks can be installed for use in farmland, greenhouses, parks, and recreational parks. The intelligent integrated water–fertilizer system helps reduce fertilizer loss in the soil, enhances fertilizer-use efficiency, and enables more precise fertilization tailored to plant needs.
Water conservancy is the lifeblood of agriculture, addressing the water-resource bottleneck in grain production. The fundamental solution lies in water conservation. The intelligent integrated water–fertilizer machine system, also known as the intelligent monitoring system for integrated water–fertilizer machines, enables users to manage such systems conveniently and efficiently. The intelligent integrated water–fertilizer machine system consists of Fertigation machine Soil moisture data acquisition terminals (EC and pH sensors), filtration systems, valve controllers, solenoid valves, field pipelines, a cloud-based monitoring software platform, and an integrated fertilizer application controller—all feature automatic and manual modes for agricultural greenhouse systems, real-time data monitoring and display, and alarm functions. Intelligent irrigation and fertilization enable water-saving irrigation and optimized fertilizer application.
Intelligent Fertigation machine The equipment system is divided into manual and automatic modes. In manual mode, growers manually set parameters: they can manually control the on/off states of external devices, such as water pumps, and independently manage the on/off status, dosage, flow rate, fertilization timing, and fertilization method for each fertilizer application channel. The system can also integrate external relay and data acquisition devices, allowing individual control of each relay and external device.
In automatic mode, a series of fertilization and irrigation parameters are automatically configured based on the specific fertilizer requirements of different crops, and growers are not permitted to modify these parameters individually. The system enables automated control of irrigation timing and the application rates of water and nutrients, with options for either intermittent or recirculating irrigation. It also allows precise control of water and nutrient application rates and can automatically shut down or prematurely terminate irrigation as needed.

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