Influence of micro/nanobubbles on clogging in drip irrigation systems
Hao Li, Hao Li, Hong Li, Hong Li, Qibiao Han, Xiuqiao Huang, Yue Qiang Jiang, Hao Sun, Hui Li, Hui Li
Abstract
Open-access reader
Hao Li, Hao Li, Hong Li, Hong Li, Qibiao Han, Xiuqiao Huang, Yue Qiang Jiang, Hao Sun, Hui Li, Hui Li
Abstract
Open-access reader
) in the drip system to the discharge ratio variation (Dra) and enhanced the stability of the uniformity coefficients of the drip system. Therefore, micro/nanoaeration can help to inhibit clog development in emitters, extend the service life of emitters, and maintain good uniformity in drip irrigation systems. The results of this paper provide a theoretical reference for revealing the clogging mechanisms of micro/nanoaerated drip irrigation emitters and provide theoretical support for the efficient operation of micro/nanoaerated drip irrigation systems.
OpenAlex reports 22 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
) in the drip system to the discharge ratio variation (Dra) and enhanced the stability of the uniformity coefficients of the drip system. Therefore, micro/nanoaeration can help to inhibit clog development in emitters, extend the service life of emitters, and maintain good uniformity in drip irrigation systems. The results of this paper provide a theoretical reference for revealing the clogging mechanisms of micro/nanoaerated drip irrigation emitters and provide theoretical support for the efficient operation of micro/nanoaerated drip irrigation systems.
Key concepts: Clogging, Drip irrigation, Common emitter, Irrigation, Environmental engineering, Materials science, Environmental science, Soil gradation