...
首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >The microjetting behavior from single laser-induced bubbles generated above a solid boundary with a through hole
【24h】

The microjetting behavior from single laser-induced bubbles generated above a solid boundary with a through hole

机译:由带有通孔的固体边界上方产生的单个激光诱导气泡产生的微喷射行为

获取原文
获取原文并翻译 | 示例
           

摘要

An inertial bubble collapsing near a solid boundary generates a fast impulsive microjet directed toward the boundary. The jet impacts the solid boundary at a high velocity, and this effect has been taken advantage of in industrial cleaning such as when tiny bubbles are driven ultrasonically to cavitate around machined parts to produce jets that are believed to induce the cleaning effect. In this experimental investigation, we are interested in the jetting from single cavities near a boundary. By introducing a through hole in the boundary beneath a laser-induced bubble, it is hypothesized that the forming jet, upon bubble implosion, will proceed to penetrate through the hole to the other side and that it may be utilized in useful applications such as precise surgeries. It was found that the growth of the bubble induced a fast flow through the hole and lead to the formation of secondary hydrodynamic cavitation. The experiments also showed the formation of a counter jet directed away from the hole and into the bubble. During the growth phase of the bubble, and near the point of maximumexpansion, the bubble wall bulged out toward the hole in a 'bulb' like formation, which sometimes resulted in the pinching-off of a secondary small bubble. This was ensued by the inward recoiling of the primary bubble wall near the pinch-off spot, which developed into a counter jet seen tomove away from the hole and inward into the bubble.
机译:固体边界附近塌陷的惯性气泡会产生指向边界的快速脉冲微射流。射流以很高的速度撞击固体边界,这种效果已在工业清洁中得到了利用,例如当超声波驱动微小的气泡在加工零件周围空化以产生被认为会产生清洁效果的射流时。在此实验研究中,我们对边界附近单个腔的喷射感兴趣。通过在激光引起的气泡下面的边界中引入通孔,可以假设在气泡破裂后,成形射流将继续穿过该孔到达另一侧,并且可以在诸如精密等有用的应用中使用手术。发现气泡的生长引起快速通过孔的流动并导致二次流体动力空化的形成。实验还表明形成了反向射流,该反向射流背向孔而进入气泡。在气泡的生长阶段,在最大膨胀点附近,气泡壁朝着“球”状结构的孔鼓出,有时会夹住次级小气泡。这是由于主要的气泡壁在夹点附近向内回卷而产生的,该气泡向着从孔中移出并向内进入气泡的反向射流发展。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号