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1)  suction trap
吸捕
1.
During the prevalence of grassland locusts,the pneumatic grassland locust suction trap machine which is researched and made by us can play a certain role of trapping locusts.
在蝗虫活动较盛时,利用自行研制的草地蝗虫吸捕吸捕蝗虫能收到一定的吸捕效果。
2)  Suction trap machine
吸捕机
3)  Suction trap rate
吸捕率
1.
To study the catching process of the Grassland Locust Pneumatic Trapper and further improve the suction trap rate .
为了深入探讨蝗虫吸捕的过程并进一步提高蝗虫吸捕率,首先加装侧挡板以延长吸捕机两侧有效吸捕气幕范围,测量吸捕机吸头两侧风速,分析当侧挡板与竖直面的夹角为22°时吸头两侧有效气幕范围最优,有效吸捕廓线比加装侧挡板前增长20~30mm,有利于吸捕率的提高。
4)  Suck Trace
吸捕轨迹
1.
Improvement of Head-suck in Pneumatic Grasshopper Trapper and Analysis of Locust Suck Trace;
草地蝗虫吸捕机吸头改进及蝗虫吸捕轨迹分析
5)  grasshopper pneumatic trapper
蝗虫吸捕机
1.
Then Aiming to improving the trapping rate, we adopted the orthogonal experimental design for the field experiment of the grasshopper pneumatic trapper with three controllable factors including the height of the suction mouth above ground surface, the trapper’s advance speed, the interaction and the airflow speed at the exhausting and intake speed, and an interaction.
针对草地主要危害种群的三龄蝗虫,在测量分析其跳跃特性的基础上,以吸捕率为目标,以机器前进速度、吹吸口气流速度、吸头距地高度等3个可控参数及一个交互作用为试验因素,用正交试验设计安排了草地蝗虫吸捕机的实地试验。
6)  Pneumatic Grasshopper Trapper
草地蝗虫吸捕机
1.
To study the escaping problem at the both side of Pneumatic Grasshopper Trapper in the capturing process and improve the suction trap rate, firstly, measure the flow field of Head-suck in Pneumatic Grasshopper Trapper.
为了深入地探讨草地蝗虫吸捕机在吸捕过程中蝗虫在吸嘴两侧逃逸的问题以及进一步提高机器的吸捕率,首先对草地蝗虫吸捕机吸嘴处的流场进行实验测量,然后在吸嘴流场分析中引入计算机模拟,利用Fluent软件中的RNG k?ε湍流模型对吸嘴流场进行数值模拟,模拟结果与实验结果之间的误差均在6%以下,证明该数值算法是可行的,为草地蝗虫吸捕机吸嘴的改进设计提供便利条件。
补充资料:捕蝇草的捕虫叶




捕蝇草的捕虫叶
  [图]图

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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