de Deus Fábio Ponciano, Mesquita Marcio, Testezlaf Roberto, de Almeida Rodrigo Cesar, de Oliveira Henrique Fonseca Elias
Federal University of Lavras, Water Resources and Sanitation Department, postal code 3037 Lavras, MG, Brazil.
Federal University of Goiás, Goiânia, GO, Brazil.
MethodsX. 2020 Jun 13;7:100962. doi: 10.1016/j.mex.2020.100962. eCollection 2020.
The correct operation of the backwashing process in sand filters used in micro irrigation determines directly the effectiveness of the subsequent filtration processes, and consequently the micro irrigation systems maintenance. As backwashing involves the filter bed expansion, the current sand filter design makes it impossible to measure the process. In this sense, this work aims to present a hydraulic characterization methodology of the backwashing process of sand filters used in micro irrigation, evaluating the influence of the sand particle size, the filter bed height, and the sand filter design. The proposed methodology can assist manufacturers in gathering equipment operating information, aiming at its presentation in the product catalogs.•This method article discusses a method of hydraulic evaluation of the backwashing process of sand filters used in micro irrigation.•The method can assist sand filter manufacturers in the correct definition of the equipment's operating parameters.•The method shows the effectiveness of using the filter media pressure loss evaluation in the indirect definition of the minimum fluidisation velocity.
微灌用砂滤器反冲洗过程的正确操作直接决定后续过滤过程的有效性,进而决定微灌系统的维护情况。由于反冲洗涉及滤床膨胀,目前的砂滤器设计无法对该过程进行测量。从这个意义上讲,这项工作旨在提出一种微灌用砂滤器反冲洗过程的水力特性描述方法,评估砂粒尺寸、滤床高度和砂滤器设计的影响。所提出的方法可帮助制造商收集设备运行信息,以便在产品目录中展示。• 本文讨论了一种微灌用砂滤器反冲洗过程的水力评估方法。• 该方法可协助砂滤器制造商正确定义设备的运行参数。• 该方法表明,在间接定义最小流化速度时,使用过滤介质压力损失评估是有效的。