A wind-feeding type precision atomization adjusting device for garden sprinkling irrigation

By combining an axial flow fan and a transmission mechanism, the atomization adjustment and wind speed synchronization of the air-assisted sprinkler irrigation device are realized, solving the problem of uneven droplet size and improving the water-saving efficiency and uniformity of garden sprinkler irrigation.

CN122397597APending Publication Date: 2026-07-17山东胜鑫建设发展有限公司

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
山东胜鑫建设发展有限公司
Filing Date
2026-06-15
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing garden wind-driven sprinkler irrigation devices, the atomization adjustment accuracy is low and cannot adapt to changes in fan speed, resulting in uneven droplet size, causing water accumulation near the ground, water shortage in distant areas, waste of water resources, and soil salinization.

Method used

The structure combines an axial flow fan, a windward guide plate, a reciprocating rod, a reset cylinder, and a transmission mechanism to achieve real-time synchronization between atomization adjustment and fan speed. The transmission mechanism converts linear motion into rotational motion and automatically adjusts the nozzle opening to ensure precise matching between droplet size and air delivery intensity.

Benefits of technology

It achieves precise matching between droplet size and air supply intensity, avoiding water accumulation near the ground, insufficient irrigation at distant points, and waste of water resources, thus meeting the needs of refined sprinkler irrigation in gardens.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明涉及园林喷灌技术领域,具体为一种园林喷灌的风送式精准雾化调节装置,包括轴流风机、进水管和可调式雾化喷嘴,所述轴流风机的排风端通过法兰固定连接有送风筒,所述送风筒靠近排风口表面的通孔固定连接有复位筒,所述复位筒的内部滑动连接有往复杆,所述往复杆位于送风筒内部的一端固定连接有迎风导流板,所述复位筒的内壁开设有相对称的滑动槽,通过迎风导流板、往复杆、复位筒与第一复位弹簧,能够利用轴流风机的实时风压自动驱动往复杆线性移动,使雾化调节与风机风速实时同步,实现风量大则调节行程大、风量小则调节行程小的自适应匹配目的,避免人工手动调节喷头开度带来的响应滞后、精度低下、无法随工况实时变化的问题。
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