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Water and Nitrogen Distribution Uniformity for Different Drip-lengths under Drip Irrigation System

机译:滴灌条件下不同滴灌长度水氮分布的均匀性

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A field experiment was conducted at the research farm of Water Technology Centre, Indian Agricultural Research Institute, New Delhi during 2010 to study the effect of different drip-lengths (lateral) (25, 50, 75 and 100 m) and system operating pressures (0.5, 1.0 and 1.5 kg.cm~(-2)) on water and nitrogen distribution uniformity under drip irrigation system. The varying drip lengths and system operating pressures significantly (P<0.01) affected coefficient of variation and distribution uniformity of the drip irrigation system. Highest distribution uniformity for both irrigation water (97.4%) and urea (97.8%) were observed at 1.5 kg.cm~(-2) operating pressure with 25 m long laterals. The lower values of urea distribution uniformity (93.0%) were recorded at 0.5 kg.cm~(-2) pressure with 100 m long drip line. Considering the system uniformity coefficient with drip lengths at different system operating pressures and an engineering approach towards the performance of the system for using drip-line, 50 m length was found appropriate for operation at 0.5 kg.cm~(-2) pressure. However, better performance of the drip up to 100 m lateral length was obtained at pressures of 1 and 1.5 kg.cm~(-2). Water and fertilizer distribution uniformity decreased with increase in lateral length, while it increased with increase in system operating pressure.
机译:2010年,在新德里印度农业研究所水技术中心的研究农场进行了田间试验,研究了不同滴长(横向)(25、50、75和100 m)和系统工作压力(滴灌条件下水,氮分布均匀度分别为0.5、1.0和1.5 kg.cm〜(-2))。滴水长度和系统工作压力的变化显着(P <0.01)影响滴灌系统的变异系数和分布均匀性。在工作压力为1.5 kg.cm〜(-2),侧向长度为25 m的情况下,灌溉用水和尿素的最高分布均匀性分别为97.4%和97.8%。在0.5 kg.cm〜(-2)的压力下,以100 m长的滴水线记录了较低的尿素分布均匀性值(93.0%)。考虑到在不同系统工作压力下具有滴水长度的系统均匀性系数,以及针对使用滴水线的系统性能的工程方法,发现50 m的长度适合在0.5 kg.cm〜(-2)的压力下运行。然而,在1和1.5 kg.cm〜(-2)的压力下,获得最佳的滴落性能,直至侧向长度为100 m。水肥分布均匀性随横向长度的增加而减小,而随系统工作压力的增大而增加。

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