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首页> 外文期刊>Transactions of the ASABE >Droplet Kinetic Energy of Moving Spray-Plate Center-Pivot Irrigation Sprinklers
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Droplet Kinetic Energy of Moving Spray-Plate Center-Pivot Irrigation Sprinklers

机译:移动式喷雾板中心枢轴灌溉喷头的液滴动能

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摘要

The kinetic energy of discrete water drops impacting a bare soil surface generally leads to a drastic reduction in water infiltration rate due to formation of a seal on the soil surface. Under center-pivot sprinkler irrigation, kinetic energy transferred to the soil prior to crop canopy development can have a substantial effect on seasonal runoff and soil erosion, especially when the soil is not protected by crop residue cover. Droplet kinetic energy of seven commercial off-center action rotating spray-plate sprinklers was characterized over a range offlow rates and pressures. Sprinkler droplet kinetic energy was characterized using two methods: droplet kinetic energy per unit sprinkler discharge, and droplet kinetic energy applied per unit water depth under center-pivot irrigation with 3 m sprinkler spacing. The two methods are correlated, but kinetic energy per unit sprinkler discharge does not represent droplet kinetic energy applied to the soil under center-pivot irrigation, as the correlationcoefficient is not equal to 1. Droplet kinetic energy applied for a given flow rate and operating pressure varied by up to 200% among the sprinklers evaluated. Designing sprinklers that minimize the kinetic energy transferred to bare soil will require amonotonic decreasing application rate with radial distance, as any peak in application rate at large radial distances will result in a peak in specific power. Kinetic energy per unit drop volume will always increase with radial distance, as drops sizes get larger with radial distance. The sprinkler with the lowest droplet kinetic energy applied or the lowest average composite specific power may not necessarily be the sprinkler that results in the greatest infiltrated depth or the least potential runoff.Thus, droplet kinetic energy is not suitable as a single parameter to select between sprinkler choices.
机译:离散水滴撞击裸露的土壤表面的动能通常会由于在土壤表面形成密封而导致水渗透速率的急剧降低。在中心轴喷灌条件下,在作物冠层发育之前转移到土壤的动能会对季节性径流和土壤侵蚀产生重大影响,尤其是当土壤没有作物残茬覆盖物保护时。在一定的流量和压力范围内,对七个商用偏心式旋转喷淋板喷头的液滴动能进行了表征。用两种方法对洒水器的液滴动能进行了表征:两种方式:每单位洒水喷头的液滴动能;以及在中心枢轴灌溉下,喷头间距为3 m时,每单位水深施加的液滴动能。两种方法是相关的,但是每单位洒水喷头的动能并不代表在中心点灌溉下施加于土壤的液滴动能,因为相关系数不等于1。在给定的流量和工作压力下施加的液滴动能在所评估的洒水装置中,差异高达200%。设计使喷洒到裸土上的动能最小化的洒水喷头,需要随径向距离单调降低施用率,因为在较大的径向距离处,施用率的任何峰值都会导致比功率峰值。随着液滴尺寸随径向距离变大,单位液滴体积的动能将始终随径向距离增加。施加最低液滴动能或最低平均复合比功率的喷头不一定是导致最大渗透深度或最小潜在径流的喷头,因此,液滴动能不适合作为在以下两者之间进行选择的单个参数洒水器的选择。

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