What are the advantages and disadvantages of ground-inserted micro-sprinklers?
Release Date:
2022-05-07
The ground-insert micro-sprinkler is a critical component of the micro-sprinkler irrigation system, directly affecting spray quality and the overall operational reliability of the system. By employing a combined hyperbolic refractive design, a series of inverted micro-sprinklers have been developed, consisting of four main components: a insertion rod, a connector, a micro-tube, and the sprinkler head itself. These components utilize standardized dimensions for connection, allowing for easy replacement and modification. Furthermore, by adjusting the nozzle size, a wide range of flow rates and patterns can be achieved.
Ground-Inserted Micro Sprinkler It is a critical component of the micro-sprinkler irrigation system, directly affecting spray quality and the overall operational reliability of the system. By employing combined hyperbolic refraction, a series of inverted micro-sprinkler nozzles have been developed, each consisting of four main parts: a stake, a connector, a micro-tube, and the nozzle itself. These components utilize standardized connections, allowing for easy replacement and modification. By varying the nozzle orifice size, a diverse product line with multiple flow rates and specifications can be produced; additionally, altering the flow passage design of the rotor enables further customization. Based on the current structural configurations and operating principles of micro-sprinkler nozzles, they are generally classified into four types: jet-type, centrifugal-refractive-type, and slit-type.
The function of micro-sprinklers is to assist growers in tasks such as irrigation. Today, micro-sprinklers are typically made from engineering plastics, which offer excellent wear resistance and a long service life. They are easy to install and maintain, making them an affordable, economical, and practical tool.
Ground-Inserted Micro Sprinkler Introduction to the advantages and disadvantages:
Advantages:
1. Refractive atomizing micro-sprinklers are commonly used in greenhouses for crop irrigation. They feature small spray volumes, a wide spray coverage, low average water consumption, low system pressure, and low energy consumption.
2. Adopt Ground-Inserted Micro Sprinkler Irrigation of crops can enhance both yield and quality, and is commonly applied in the production of fruits and vegetables, yielding significant economic benefits. On average, it can increase citrus yields by more than 30%, apple yields by 20%–30%, black fungus yields by 1–2 times, and pepper yields by 30%–40%.
3. The use of dual-side rotary micro-sprinklers for irrigation provides a large spray radius and excellent atomization. Compared with drip irrigation systems that rely on drip pipes, drip tapes, drippers, and drip arrows, which are highly sensitive to terrain, this approach is less affected by topography and can meet irrigation needs under various conditions.
Disadvantages:
1. Higher costs. Micro-sprinkler irrigation is slightly more expensive than traditional irrigation methods and is more susceptible to environmental factors such as sunlight, wind speed, and temperature.
2. Limitations in application scope. When using micro-sprinkler irrigation for crops, it is necessary to consider the growing environment of the crops; this method is most suitable for crops with high water requirements that thrive in humid conditions.
Currently Ground-Inserted Micro Sprinkler They are widely used in agricultural and forestry crops and have all yielded significant economic and social benefits. Common micro-sprinklers available on the market include: Ground-Inserted Micro Sprinkler including ground-inserted bilateral-wheel micro-sprinklers, greenhouse-hung micro-sprinklers, and suspended large-rotor micro-sprinklers, among other products.
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