Backpressure effects on emitters flow rate in subsurface drip irrigation

Michael Silveira Thebaldi, Flávia Vilela Corrêa, Pâmela Rafanele França Pinto, Luiz Antonio Lima, Adriano Valentim Diotto, Fábio Ponciano de Deus
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Abstract

Subsurface drip irrigation success depends on surpassing the backpressure obstacle, a phenomenon which occurs when the water application intensity exceeds the infiltration rate of soil, which reduces the emitter flow rate. Thus, this study aimed to determine the flow rate variation, in relation to surface flow, of four drip emitters when buried at two depths in a loam soil (Yolo Loam soil), and the backpressure generated by the soil on subsurface condition. The cavity radius developed around the emitters outlet was also obtained. The experiment was conducted in a completely randomized design, in a strip-plot scheme, with three treatments: installation depth of driplines (two levels: 0.10 and 0.20 m); dripline type (four levels: D5000, JardiLine, TalDrip and and Hydro PCND) and irrigation time (three levels: 0.5, 1.0 and 3.0 h). The results showed that the flow rate variation between the surface and subsurface application on Yolo Loam soil, with inlet pressure of 145 kPa, was greater the higher was the emitter flow rate. For pressure-compensating emitters, even under backpressure influence, this was not enough to cancel the pressure-compensating device operation, of the emitters. The emitters installation depth, as well the irrigation time, did not affect the backpressure and, consequently, the flow rate variation.
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背压对地下滴灌灌水器流量的影响
地下滴灌的成功取决于超过背压障碍,这是一种当施水强度超过土壤渗透速率时发生的现象,会降低发射器的流速。因此,本研究旨在确定四个滴灌管在壤土(Yolo loam土壤)中两个深度埋置时的流速变化与地表流量的关系,以及土壤在地下条件下产生的背压。还获得了发射器出口周围形成的空腔半径。实验采用完全随机设计,条形图方案,分三个处理:滴液管的安装深度(两个水平:0.10和0.20m);滴液管类型(四个级别:D5000、JardiLine、TalDrip和Hydro-PCND)和灌溉时间(三个级别:0.5、1.0和3.0小时)。结果表明,在入口压力为145kPa的Yolo Loam土壤上,地表和地下施用之间的流速变化越大,发射器流速越高。对于压力补偿发射器,即使在背压影响下,这也不足以取消发射器的压力补偿装置操作。发射器的安装深度以及灌溉时间不会影响背压,因此也不会影响流速变化。
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24
审稿时长
7 weeks
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