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Assessment of Flat Emitter Anti-Clogging Performance in Drip Irrigation Systems

机译:滴灌系统中扁平发射器抗堵塞性能的评估

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Selecting drip emitters with excellent anti-clogging performance (AP) is vital to ensure the safe operation of drip irrigation systems. However, previous researchers have not reached a consensus on emitter selection and evaluation standards based on emitter AP. In this study, eight types of flat emitters were selected as experimental objects, and high-sand surface water was used as the water source to test the AP of emitters with three experimental treatments. The emitter total coefficient of evaluation index (ETei) was applied to analyze the relative differences in AP of the emitters, and then the mechanism leading to those differences was explored. The results indicated that there were significant variations in AP among different emitters, and four evaluation indices had good consistency in evaluating emitter AP. Small-discharge emitters showed good anti-clogging ability. Emitters with large cross-section average velocity (v), not just with high discharge (Q), should be identified as having excellent AP. The combination of emitter structural parameters, mainly width-depth ratio (W/D), relative radius (A,,2/L), and flow path length (L), made significant differences in the v of emitters under the same operating conditions. Higher v caused a significant linear decrease in key clogging components, such as solidparticles (SD), CaCOi and MgCOs precipitates (C-MP), extracellular polymeric substances (EPS), and microbial activity (MA), of the clogging material inside the emitter. This study provides areference for the selection and development of emitter products with high-efficiency AP.
机译:选择具有出色的防堵塞性能(AP)的滴灌发射器至关重要,以确保滴灌系统的安全操作。然而,以前的研究人员尚未达成基于发射器AP的发射器选择和评估标准的共识。在这项研究中,选择了八种类型的扁平发射器作为实验对象,使用高砂水面水作为水源,以测试具有三种实验处理的发射器AP。施加发射极总评价指数(etei)分析发射器AP的相对差异,然后探讨了导致这些差异的机制。结果表明,不同发射器之间的AP存在显着变化,四个评估指数在评估发射器AP方面具有良好的一致性。小放电发射器显示出良好的抗堵塞能力。具有大横截面平均速度(V)的发射器,不仅具有高放电(Q),应识别为具有优异的AP。发射极结构参数的组合,主要是宽度深度比(W / D),相对半径(A,2 / L)和流路长度(L),在相同的操作条件下发射器的V型差异差异。较高的V导致关键堵塞组分的显着线性降低,例如固体颗粒(SD),CACOI和MGCOS沉淀物(C-MP),细胞外聚合物物质(EPS)和微生物活性(MA),在发射器内的堵塞材料。本研究为具有高效AP的发射器产品的选择和开发提供了意义。

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