Page 136 - 2025年第56卷第11期
P. 136
[ 19] FENG D, KANG Y H,WAN S Q,et al. Lateral flushing regime for managing emitter clogging under drip irrigation
.
with saline groundwater[J] Irrigation Science, 2017,35(3):217-225.
[ 20] PUIG-BARGUÉS J,ARBAT G,ELBANA M,et al. Effect of flushing frequency on emitter clogging in microirriga‐
.
tion with effluents[J] Agricultural Water Management,2010,97:883-891.
[ 21] 莫彦,赵新凯,王建东,等 . 具有排气功能的毛管末端自动冲洗阀设计与结构优化[J] 农业工程学报,
.
2022,38(6):72-79.
[ 22] GAO H,MO Y,WU F,et al. Impact of elastic diaphragm hardness and structural parameters on the hydraulic per‐
.
formance of automatic flushing valve[J] Water,2023,15(2):287.
[ 23] 李文军,莫彦,王振华,等 . 管道布置形式对毛管末端自动冲洗阀水力性能的影响研究[J] 灌溉排水学报,
.
2022,41(5):110-117.
[ 24] GAO H,MO Y,WANG J D,et al. Model for predicting the hydraulic elements of drip irrigation system with auto‐
.
matic flushing valves under high sediment water[J] Biosystems Engineering,2023,228:18-30.
.
[ 25] 钱宁,万兆惠 . 泥沙运动力学[M] 北京:科学出版社,2003.
[ 26] 全国农业机械标准化技术委员 . 农业灌溉设备滴头和滴灌管技术规范和试验方法:GB/T 17187—2009/ISO 9261:
2004[S] 北京:中国标准出版社,2009.
.
[ 27] NIU W Q, LIU L, CHEN X. Influence of fine particle size and concentration on the clogging of labyrinth emitters
[J] Irrigation Science,2013,31(4):545-555.
.
[ 28] ZHANG W Q, LV C, ZHAO X, et al. The influence mechanism of the main suspended particles of Yellow River
sand on the emitter clogging-An attempt to improve the irrigation water utilization efficiency in Yellow River basin
[J] Agricultural Water Management,2021,258:107-202.
.
[ 29] SONG P,LI Y K,ZHOU B,et al. Controlling mechanism of chlorination on emitter bio-clogging for drip irrigation
.
using reclaimed water[J] Agricultural Water Management,2017,184:36-45.
[ 30] YU L M,LI N,LIU X G,et al. Influence of flushing pressure,flushing frequency and flushing time on the service
.
life of a labyrinth-channel emitter[J] Biosystems Engineering,2018,172:154-164.
.
[ 31] 姜珊,范兴科,叶成恒 . 含沙水滴灌条件下灌水器抗堵塞试验研究[J] 灌溉排水学报,2010,29(2):7-10.
[ 32] 罗 春 艳 , 牛 文 全 . 滴 头 堵 塞 率 及 堵 塞 位 置 对 灌 水 均 匀 度 的 影 响[J] 干 旱 地 区 农 业 研 究 , 2014, 32(2):
.
196-200.
[ 33] 宁少雄,孙耀民,吴文勇,等 . 引黄灌区首部枢纽泥沙输移特性与流速试验研究[J] 排灌机械工程学报,
.
2022,40(4):359-365.
[ 34] LI G Y,WANG J D,ALAM M,et al. Influence of geometrical parameters of labyrinth flow path of drip emitters on
hydraulic and anti-clogging performance[J] Transactions of the ASABE,2006,49(3):637-643.
.
[ 35] 魏正英,唐一平,温聚英,等 . 灌水器微细流道水沙两相流分析和微 PIV 及抗堵实验研究[J] 农业工程学
.
报,2008,24(6):1-9.
.
[ 36] 王文娥,王福军,牛文全,等 . 滴头流道结构对悬浮颗粒分布影响的数值分析[J] 农业工程学报,2009,25
(5):1-6.
[ 37] 吴泽广,牛文全 . 泥沙级配对迷宫流道滴头堵塞及毛管内泥沙沉积的影响[J] 西北农林科技大学学报(自然
.
科学版),2014,42(5):223-228.
[ 38] 牛文全,赵雪,王照熙,等 . 含沙水磁化处理减缓滴头堵塞机理研究[J] 农业机械学报,2022,53(3):
.
346-356.
[ 39] 山西省水利标准化技术委员会 . 山西省用水定额 第 1 部分:农业用水定额:DB 14/T 1049. 1—2020[S] 太
.
原:山西标准出版社,2020.
[ 40] LI Z Y,MO Y,WU F,et al. The Effects of an automatic flushing valve on the hydraulic performance of a subsur‐
face drip irrigation system for Alfalfa[J] Agriculture,2025,15(10):1107.
.
[ 41] 周博,李云开,宋鹏,等 . 引黄滴灌系统灌水器堵塞的动态变化特征及诱发机制研究[J] 灌溉排水学报,
.
2014,33(4/5):123-128.
— 1527 —

