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A comparison of water application uniformity for drip irrigation system above and below soil surface at various soil depths and scheduling techniques in arid region

机译:在各种土壤深度下和干旱地区土壤表面滴灌系统水施加均匀性的比较

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The uniformity of water application and its stability, however, are still a matter of controversy and deserve more investigation. An experiment was conducted to evaluate the surface and subsurface water application uniformity for drip irrigation system using three irrigation scheduling techniques under field conditions and to quantify uniformity of soil water content on the soil surface and below soil surface. In this study an evaluation of uniformity of surface drip irrigation system used to irrigate a tomato crop in Riyadh, Saudi Arabia. Three irrigation scheduling techniques were used in the field to irrigate tomato crop. The uniformity of water application from emitters and subsurface water contents below the soil surface after 24 hours from irrigation was determined at different distances and depths from the emitter in parallel and perpendicular directions to the drip line. Field results showed evidence the importance of redistribution of the applied water. The values of surface water uniformity from emitters were higher by approximately 13% than the subsurface uniformity below soil ground after 24 hours from irrigation. Also, the values of coefficients of subsurface uniformity varied in the lower soil layers than in the upper layers for all irrigation scheduling techniques. An experimental relationship between the uniformity coefficients of surface and subsurface was derived under arid region conditions.
机译:然而,水应用的均匀性及其稳定性仍然是争议并且值得更多的调查。进行了一种实验,以评估滴灌系统的表面和地下水应用均匀性,采用现场条件下的三种灌溉调度技术,并量化土壤面积和土壤表面以下土壤水含量的均匀性。在这项研究中,评估了表面滴灌系统的均匀性,用于在沙特阿拉伯利雅得灌溉番茄作物。在现场使用三种灌溉调度技术以灌溉番茄作物。在从灌溉24小时后,在24小时后,在土壤表面下方的发射器和地下水含量的均匀性在不同的距离和深度与滴水线的不同距离和深度。现场结果显示证据证明了应用水再分配的重要性。从灌溉24小时后,发射器的表面水均匀性的值比土壤研磨后的地下均匀性高约13%。而且,在下部土层中变化的地下均匀性系数的值比用于所有灌溉调度技术的上层。在干旱区域条件下得出表面和地下均匀系数之间的实验关系。

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