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Investigating the Effect of Pressure on Water Leakage by Drip Irrigation without a Pump in Four Different Ejectors

机译:在四个不同喷射器中滴灌滴灌的滴灌对漏水的影响

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Due to the increasing number of small crops, the system of irrigation without a pump can be an economical way. Therefore, in this research, the effects of the type of droplet and the height of water supply system utilization on the characteristics of water distribution (discharge, dispersion uniformity coefficient (CU) and coefficients of variation of discharge) were investigated. In this research, the pressure functions of 1, 2, 3 and 4 meters and three irrigation repeats were investigated; also, the discharge characteristics of jet pots of 2 and 8 nozzles, easy dripper and netafim were addressed. The results indicated that at 1 m pressure, drippers of pots of 2 and 8 nozzles with the uniformity coefficients of distribution were equal to 89.39 and 99.30%, and the discharge rate was 3.60 and 3.62 liters per hour at a pressure of 2 m. An easy-drain drip with a discharge rate of 3.85 L / h and a uniform distribution of 99.44%, at a height of 3 and 4 m, the droplets of the netafim with an outlet discharge were 3.87 and 3.97 liters per hour and the uniformity coefficients of 99.32 and 99.47 percent had the best broadcast conditions. According to these significant differences (P <0.05), it can be concluded that at pressures less than 2 m of jar droplets and at more than 3 m, netafim and Easy Dipper types could have better leakage due to pressure regulators. In general, each of the four types of emitters produced a uniform dispersion and the optimum discharge at different pressures.
机译:由于越来越多的小作物,没有泵的灌溉系统可以是一种经济的方式。因此,在本研究中,研究了液滴类型和供水系统的高度对水分布特性的影响(放电,分散均匀系数(Cu)和排出变异系数)。在本研究中,研究了1,2,3和4米和三次灌溉重复的压力官能;而且,解决了2和8个喷嘴的喷射罐的放电特性,易于滴管和Netafim。结果表明,在1米的压力下,2和8个喷嘴的滴用器具有均匀分布系数等于89.39和99.30%,排出率为每小时3.6.62升,在2米的压力下为3.60升。放电速度为3.85升/小时的易排水液,均匀分布为99.44%,高度为3和4米,Netafim的液滴带出口放电为3.87和3.97升,均匀性和均匀性99.32和99.47%的系数具有最佳的广播条件。根据这些显着差异(P <0.05),可以得出结论,在小于2米的罐子液滴和超过3米的压力下,NetaFim和易浸剂类型由于压力调节器而有更好的泄漏。通常,四种排发器中的每一个产生均匀的分散和在不同压力下的最佳放电。

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