bubble generator

英 [ˈbʌbl ˈdʒenəreɪtə(r)] 美 [ˈbʌbl ˈdʒenəreɪtər]

网络  气泡发生器

计算机



双语例句

  1. The bubble generator is the key equipment of microbubble floatation.
    气泡发生器是微泡浮选的关键。
  2. Design of Mixing Bubble Generator in Deinking Flotation Process
    浮选柱混合气泡发生器的初步设计和性能分析
  3. A micro bubble generator used for drag reduction comprising a cavity, a connection pipeline, a pressure air power machine and a porous silicon plate is disclosed.
    一种减阻用微气泡生成装置,由空腔、连接管道、压气动力机械、多孔硅板等组成。
  4. According to the operating principle of jet pump, one new bubble generator is designed, and its aerating performance has been studied with measurement.
    根据射流泵的工作原理,设计了一种新型的气泡发生器,并通过实测,研究了其充气性能。
  5. A bubble generator for flotation column was designed according to the principle of jet pump and its aerating performance has been experimented in the paper.
    基于气泡生成及气泡发生器的普遍工作原理,提出新的发泡方式,设计了新的浮选柱用混合气泡发生器。
  6. A visual prototype of bubble generator has been designed, and its numeral simulation analysis was done.
    开发设计了气泡发生器的虚拟样机,并进行了数值模拟仿真分析。
  7. This paper analyzes and studies the structure, dimensions, shape of a bubble generator, and the main structure dimensions that will influence the properties of the bubble generator.
    分析研究了气泡发生器的结构、尺寸、形状要求,以及影响气泡发生器性能的主要结构尺寸。
  8. A bubble generator for flotation column was designed according to the principle of jet pump and its aerating performance has been experimented in the paper. The relationship among the structure parameter of bubble generator, the fluid pressure, suction pressure and air voids were researched.
    根据射流泵原理设计了一种浮选柱气泡发生器,并对其充气性能进行了试验,研究了气泡发生器结果参数、流体压力、负压与柱内含气率的关系;
  9. The structure analysis and design of bubble generator
    气泡发生器结构分析及设计
  10. The result shows that the bubble generator jetting area ratio has an important influence on air voids with the best ratio being 6-10. The air voids increase with the fluid pressure and it will become stable when the fluid pressure is up to a certain value;
    结果表明:气泡发生器的射流面积比对含气率有较大影响,最佳面积比为6~10;含气率随压力增高而增加,压力升到一定程度后,含气率趋于平稳;
  11. Design and Improvement of the Air Bubble Generator Based on FLUENT
    基于FLUENT的气泡发生器的设计改进
  12. Application of Backwash Technique by Controlling Bubble Break on Water-cooled Generator
    可控气泡破碎式反冲洗技术在水内冷发电机上的应用
  13. Made the test parameters of pyrite used the flotation machine, including apparent inflation rate of bubble generator, the inflatable pressure of tailings ascend tube, grinding fineness, pulp concentration, pulp flow and scraper speed.
    对浮选机进行了浮选硫铁矿的参数试验,包括气泡发生器的表观充气速率、中矿提升管的充气压强、磨矿细度、矿浆浓度、矿浆流量、刮板速度等。
  14. Thermodynamic calculation of the bubble pump performance experimental device and the selection calculation of the key components. The built up of the experimental device, and the improvement of the generator form.
    进行了气泡泵性能实验装置的热力计算和设备选型,搭建和调试成功了气泡泵性能实验装置,并对其发生器形式进行了改进研究。
  15. In this paper, the bubble diameter was made by bubble generator was measured and calculated.
    本文对设备气泡发生器产生的气泡直径进行了观测及计算。
  16. This thesis uses carbon nanotube as heating element to fabricate a micro bubble generator which generates micro bubble by joule heat in microfluidics.
    本文以碳纳米管作为加热元件制作微气泡发生器,利用焦耳热在微流体中产生微气泡。
  17. At last micro bubble generator with two heaters is experimentally studied with the purpose to apply it into thermal jet printer and eliminating satellite droplets. Interfusion and drive matching of two bubbles is realized in open liquid environment.
    为了将器件应用于热喷印并消除次液滴现象,我们还对双加热器结构的微气泡发生器进行了实验研究,在开放的液体环境下实现了双气泡的融合与驱动的匹配。
  18. Experimental verification the hydrocyclone separation performance, especially study the effect of the cyclone flotation in combination with the bubble generator. 4.
    实验验证旋流分离器的分离性能,特别是与气泡发生器结合后的旋流浮选效果。
  19. A new bubble pump with an annular channel generator was designed and built up. Experimental results show that it possesses advantages of quick start, small heat transfer temperature difference, low heat loss and large flowrate.
    设计和制作了一种带有环形通道发生器的气泡泵,实验结果表明,这种形式的气泡泵启动速度快,传热温差小,加热量损耗小,且能满足大流量的需求。