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额定流量与毛管位置对纽扣式滴头堵塞的影响及机理分析
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作者 喻黎明 曹丽 +3 位作者 李娜 伍大利 黄国安 陈祖根 《农业工程学报》 EI CAS CSCD 北大核心 2023年第20期123-131,共9页
为探究引用高含沙水滴灌时额定流量与毛管位置对纽扣式滴头堵塞风险的影响及相应机理,该研究对3种不同额定流量(2、4、8 L/h)的纽扣式滴头按照不同的毛管安装位置(毛管进水口处的支管长度分别为w、2w、3w,毛管间距w=204 mm;依次为内侧... 为探究引用高含沙水滴灌时额定流量与毛管位置对纽扣式滴头堵塞风险的影响及相应机理,该研究对3种不同额定流量(2、4、8 L/h)的纽扣式滴头按照不同的毛管安装位置(毛管进水口处的支管长度分别为w、2w、3w,毛管间距w=204 mm;依次为内侧、中间和外侧)进行浑水堵塞试验。试验结果表明:滴头额定流量与毛管位置会影响毛管与支管内的断面平均流速,从而对管中沉积泥沙的起动产生影响,影响滴头堵塞进程。额定流量为4 L/h的滴头,其平均相对流量和灌水均匀度系数下降速率最慢,即抗堵塞性能最优,且其有效灌水次数最多,平均使用寿命比2和8 L/h的滴头分别提高了11.84%和49.11%。滴头额定流量越小,毛管位置对滴头使用寿命影响越明显,其毛管内滞留泥沙质量越大、沉积的大颗粒泥沙占比越多,大颗粒泥沙相对小颗粒泥沙更容易被滞留在毛管中。滴头额定流量越大、在单根毛管上的安装位置越靠近前段,其排出的泥沙粒径越大。毛管中沉积泥沙的起动是导致大流量滴头更快堵塞的主要原因。试验为滴灌系统堵塞机理的研究提供了思路,为实际应用中滴头额定流量的选用与滴头堵塞的预防提供了参考。 展开更多
关键词 滴灌 额定流量 毛管位置 纽扣式滴头 泥沙起动 系统寿命
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Asymmetric breakup of a droplet in an axisymmetric extensional flow
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作者 Dongming Yu Manman Zheng +1 位作者 Taoming Jin Jingtao Wang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第1期63-70,共8页
The asymmetric breakups of a droplet in an axisymmetric cross-like microfluidic device are investigated by using a three-dimensional volume of fluid(VOF) multiphase numerical model. Two kinds of asymmetries(droplet lo... The asymmetric breakups of a droplet in an axisymmetric cross-like microfluidic device are investigated by using a three-dimensional volume of fluid(VOF) multiphase numerical model. Two kinds of asymmetries(droplet location deviation from the symmetric geometry center and different flow rates at two symmetric outlets) generate asymmetric flow fields near the droplet, which results in the asymmetric breakup of the latter. Four typical breakup regimes(no breakup, one-side breakup, retraction breakup and direct breakup) have been observed.Two regime maps are plotted to describe the transition from one regime to another for the two types of different asymmetries, respectively. A power law model, which is based on the three critical factors(the capillary number,the asymmetry of flow fields and the initial volume ratio), is employed to predict the volume ratio of the two unequal daughter droplets generated in the direct breakup. The influences of capillary numbers and the asymmetries have been studied systematically in this paper. The larger the asymmetry is, the bigger the oneside breakup zone is. The larger the capillary number is, the more possible the breakup is in the direct breakup zone. When the radius of the initial droplet is 20 μm, the critical capillary numbers are 0.122, 0.128, 0.145,0.165, 0.192 and 0.226 for flow asymmetry factor AS= 0.05, 0.1, 0.2, 0.3, 0.4 and 0.5, respectively, in the flow system whose asymmetry is generated by location deviations. In the flow system whose asymmetry is generated by two different flow rates at two outlets, the critical capillary numbers are 0.121, 0.133, 0.145, 0.156 and 0.167 for AS= 1/21, 3/23, 1/5, 7/27 and 9/29, respectively. 展开更多
关键词 Asymmetric breakup Droplet Volume of fluid method Axisymmetric extensional flow
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