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Droplet characterisation of a complete fluidic sprinkler with different nozzle dimensions

机译:具有不同喷嘴尺寸的完整射流喷头的液滴特性

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The complete fluidic sprinkler (CFS) has the advantages of a simple structure and the ability to work well at a lower nozzle pressures. CFS is a gas liquid fluidic sprinkler, whose driving moment is achieved by a flow reaction as a result its droplet characteristics differ from those of conventional sprinklers. To study the droplet characteristics of the CFS, droplet diameter and velocity were measured using a Thies Clima laser precipitation monitor (TCLPM). Statistical analysis was conducted on the droplet size distribution using a volume-weighted method and droplet velocity was analysed using a number-weighted method. The results showed that volume mean droplet diameter and volume medium diameter increased with the distance from the nozzle and decreased with the nozzle size. The frequency of droplets with a diameter 3 mm increased with the working pressure. The number of larger droplets decreased with pressure and increased with the nozzle size when the pressure was 0.25, 0.30, or 0.35 MPa. A lognormal distribution model was used to evaluate the drop diameter distribution for each observed distance. With increasing pressure, the slope of the cumulative volume frequency droplet size curve at different distances from the nozzle decreased, and the distribution followed the trend of a Boltzmann function distribution. Droplet velocity increased with the droplet diameter but was not significantly influenced by the nozzle pressure. The results may provide a basis for further systematic research on the CFS. (C) 2016 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:完整的流体喷洒器(CFS)具有结构简单和在较低的喷嘴压力下能良好工作的能力。 CFS是一种气液射流喷头,其驱动力矩是通过流动反应实现的,因此其液滴特性不同于传统的喷头。为了研究CFS的液滴特性,使用Thies Clima激光降水监测仪(TCLPM)测量了液滴的直径和速度。使用体积加权方法对液滴尺寸分布进行统计分析,并使用数字加权方法分析液滴速度。结果表明,体积平均液滴直径和体积介质直径随着与喷嘴距离的增加而增大,随喷嘴尺寸的减小而减小。直径<3 mm的液滴的频率随工作压力的增加而增加。当压力为0.25、0.30或0.35 MPa时,较大的液滴数随压力而减少,并随喷嘴尺寸而增加。使用对数正态分布模型评估每个观察距离的液滴直径分布。随着压力的增加,距喷嘴不同距离处的累积体积频率液滴大小曲线的斜率减小,并且其分布遵循玻耳兹曼函数分布的趋势。液滴速度随液滴直径的增加而增加,但不受喷嘴压力的显着影响。研究结果可为进一步研究CFS提供依据。 (C)2016年。由Elsevier Ltd.出版。保留所有权利。

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