...
首页> 外文期刊>Agricultural Sciences >Effects of drip irrigation circuit design and lateral line lengths: I—On pressure and friction loss
【24h】

Effects of drip irrigation circuit design and lateral line lengths: I—On pressure and friction loss

机译:滴灌管路设计和侧线长度的影响:I—对压力和摩擦损失的影响

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Laboratory tests were conducted at the Irrigation Devices and Equipment’s Test Laboratory, Agricultural Engineering Research Institute, Agriculture Research Center, Giza, Egypt. The experimental design of laboratory experiments was split in randomized complete block design with three replicates. Laboratory tests carried out on three irrigation lateral lines of 40, 60, 80 m under the following three drip irrigation circuit (DIC) designs; 1) one manifold for lateral lines or closed circuits with one manifold of drip irrigation system (CM1DIS); 2) closed circuits with two manifolds for lateral lines (CM2DIS), and 3) traditional drip irrigation system (TDIS) as a control. The aims of the work were to study the effect of drip irrigation circuits (DIC) and lateral lines lengths (LLL; where): (LLL1 = 40 m, LLL2 = 60 m, and LLL3 = 80 m) on pressure head (PH) and friction loss (FL). Regarding to LLL and according to PH values, DIC designs could be ranked in the following ascending order: TDIS 1DIS 2DIS. The differences in PH among DIC designs were significant at the 1% level. The depressive effects of LLL on PH could be ranked in the following ascending order: LLL1 2 ≤ LLL3. Differences in PH among LLL treatments were significant at the 1% level except that between LLL2 and LLL3. The effects of interactions among: DIC × LLL on PH were significant at the 1% level with some exceptions. The highest value of PH (9.5 m) and the lowest one (6.05 m) were achieved in the interactions of CM2DIS × LLL1 and TDIS × LLL3, respectively. The shapes of the energy gradient lines were affected by DIC and LLL treatments used through their effect on ?H/H ratio. However, they followed similar trends. According to the FL values, DIC and LLL treatments could be ranked in the following descending orders TDIS > CM1DIS > CM2DIS and LLL1 > LLL2 > LLL3. The differences in FL among DIC and LLL were significant and the effects of interactions among DIC × LLL on FL were significant at the 1% level. The maximum and minimum values of FL were obtained in the interactions: TDIS × LLL3 and CM2DIS × LLL1, respectively. Therefore, the CM2DIS system is recommended for use where technically feasible.
机译:实验室测试是在埃及吉萨农业研究中心农业工程研究所的灌溉设备和设备测试实验室进行的。将实验室实验的实验设计分为三个重复的随机完整模块设计。在以下三个滴灌回路(DIC)设计下,在40、60、80 m的三个灌溉支线上进行了实验室测试; 1)一个用于侧向管线或闭合回路的歧管,以及一个滴灌系统(CM1DIS)的歧管; 2)带有两个用于侧线的歧管(CM2DIS)的闭合回路,以及3)传统的滴灌系统(TDIS)作为控制。该工作的目的是研究滴灌回路(DIC)和侧线长度(LLL;其中):(LLL1 = 40 m,LLL2 = 60 m,LLL3 = 80 m)对压力头(PH)的影响和摩擦损失(FL)。关于LLL并根据PH值,DIC设计可以按以下升序排列:TDIS 1DIS 2DIS。 DIC设计之间的PH差异在1%的水平上很显着。 LLL对PH的抑制作用可按以下升序排列:LLL1 2≤LLL3。在LLL处理之间,PH的差异在1%的水平上是显着的,除了LLL2和LLL3之间。 DIC×LLL之间的相互作用对PH的影响在1%的水平上是显着的,但有一些例外。在CM2DIS×LLL1和TDIS×LLL3的相互作用中,分别获得了最高的PH值(9.5 m)和最低的PH值(6.05 m)。能量梯度线的形状受DIC和LLL处理对ΔH/ H比的影响而受到影响。但是,他们遵循类似的趋势。根据FL值,DIC和LLL处理可以按以下降序排列:TDIS> CM1DIS> CM2DIS和LLL1> LLL2> LLL3。 DIC和LLL之间的FL差异显着,DIC×LLL之间的相互作用对FL的影响在1%的水平上显着。在以下相互作用中分别获得了FL的最大值和最小值:TDIS×LLL3和CM2DIS×LLL1。因此,建议在技术上可行的情况下使用CM2DIS系统。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号