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流道结构对非旋转折射式喷头水力性能影响的试验研究
引用本文:杨雯,朱德兰.流道结构对非旋转折射式喷头水力性能影响的试验研究[J].节水灌溉,2016(2).
作者姓名:杨雯  朱德兰
作者单位:1. 西北农林科技大学水利与建筑工程学院 ,陕西杨凌,712100;2. 西北农林科技大学水利与建筑工程学院 ,陕西杨凌 712100;西北农林科技大学中国旱区节水农业研究院 ,陕西杨凌712100
基金项目:国家科技支撑计划,水利部"948"项目,西北农林科技大学科技创新专项,国家自然科学基金
摘    要:以非旋转折射式喷头为研究对象,设计散水盘的流道长度、流道个数和流道出口形状,通过正交试验测试了单喷头水量分布,采用线性插值法计算射程,通过直接叠加法得到组合水量分布,计算了2.5m喷头间距下的组合均匀性系数,并运用极差分析法研究了流道结构参数对喷头水力性能的影响。结果表明:不同流道长度、流道个数和流道出口形状非旋转折射式喷头的单喷头水量分布呈波浪形上下浮动,但波动的幅度有差异。流道结构参数对射程影响的主次顺序为流道长度、流道个数、流道出口形状,对喷灌强度峰值影响的主次顺序为流道个数、流道长度、流道出口形状,对组合喷洒均匀性系数影响的主次顺序为流道个数、流道长度、流道出口形状。

关 键 词:非旋转折射式喷头  流道长度  流道个数  流道出口形状  水力性能

An Experimental Study on Influence of Flow Channel Structure on Hydraulic Performance of Fixed Spray Plate Sprinkler
Abstract:In this study ,a fixed spray plate sprinkler is taken as the study project and the flow channel length ,flow channel number and flow channel shape of the deflection plate are designed .The orthogonal test on the water distribution of single sprinkler is con-ducted .The wetted radius is calculated by the linear interpolation method .The combination water distribution is obtained by using direct superposition method and the combination uniformity coefficient at 2 .5 m combination distance is calculated .The range analy-sis method is used to study the influence of flow channel structure parameter on hydraulic performance of fixed spray plate sprinkler . The results indicated that the water distribution of single sprinkler with different flow channel length ,flow channel number and flow channel shape fluctuates like wave shapes ,but the fluctuation amplitude is different .The influencing factors of wetted radius are flow channel length ,flow channel number and flow channel shape in sequence .The influencing factors of maximum precipitation rate are flow channel number ,flow channel length and flow channel shape in sequence .The influencing factors of combination uniformity coefficient are flow channel number ,flow channel length and flow channel shape in sequence .
Keywords:fixed spray plate sprinkler  flow channel length  flow channel number  flow channel shape  hydraulic performance
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