TY - JOUR
T1 - Visualized experimental analysis of water-sand flow behaviors for labyrinth emitters
AU - Wei, Zhengying
AU - Tang, Yiping
AU - Zhao, Wanhua
AU - Lu, Bingheng
PY - 2009/8
Y1 - 2009/8
N2 - In order to solve the clogging problem of labyrinth channels in drip emitters, aiming at the complex structure of mini-channels (actual size between 0.8-1.2 mm), the emitters are easily clogged by sands which cannot be filtered in irrigation water. Depending on the practical conditions of emitters, the computational fluid dynamics (CFD) is utilized to conduct the numerical simulation of two-phase flow and hence visually reveal clogging reasons by analyzing the water-sand flow behaviors in the channels of emitters. Based on particle image velometry (PIV) technology, the Micro-PIV test bed is set up. The conditions of water flow and particles movement are measured, and the water flow path graph and particle path graph are obtained. Then the CFD computational results are verified through clogging experiments. On this basis, the anti-clogging mechanism is analyzed, and the channel structure in the stagnant areas is optimized.
AB - In order to solve the clogging problem of labyrinth channels in drip emitters, aiming at the complex structure of mini-channels (actual size between 0.8-1.2 mm), the emitters are easily clogged by sands which cannot be filtered in irrigation water. Depending on the practical conditions of emitters, the computational fluid dynamics (CFD) is utilized to conduct the numerical simulation of two-phase flow and hence visually reveal clogging reasons by analyzing the water-sand flow behaviors in the channels of emitters. Based on particle image velometry (PIV) technology, the Micro-PIV test bed is set up. The conditions of water flow and particles movement are measured, and the water flow path graph and particle path graph are obtained. Then the CFD computational results are verified through clogging experiments. On this basis, the anti-clogging mechanism is analyzed, and the channel structure in the stagnant areas is optimized.
KW - Labyrinth emitters
KW - Mini-channel
KW - Particle image velocimetry
KW - Two-phase flow of water and sand
UR - https://www.scopus.com/pages/publications/69749091290
U2 - 10.3901/JME.2009.08.089
DO - 10.3901/JME.2009.08.089
M3 - 文章
AN - SCOPUS:69749091290
SN - 0577-6686
VL - 45
SP - 89
EP - 94
JO - Jixie Gongcheng Xuebao/Chinese Journal of Mechanical Engineering
JF - Jixie Gongcheng Xuebao/Chinese Journal of Mechanical Engineering
IS - 8
ER -