首页> 外文会议>Asian International Conference on Fluid Machinery; 20051012-15; Yichang(CN) >EXPERIMENTS ON EROSION MECHANISMS OF CAVITATING WATER JETS
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EXPERIMENTS ON EROSION MECHANISMS OF CAVITATING WATER JETS

机译:空水射流侵蚀机理的实验

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A series of experiments relating to bubble cloud and erosion mechanisms of cavitating water jets were carried out for different nozzles with different pump pressures and ambient pressures. The objective of this work is to find the relation between the erosion and the bubble cloud and explore nozzle operating conditions and nozzle designs to reduce the input energy by reducing the pump pressure. Visualization studies of the bubble cloud show that the length and width of the bubble cloud of the convergent-divergent nozzle are larger than those of the convergent-straight nozzle. The erosion tests confirm that it is the bubble collapse that causes the erosion, and the standoff distance plus the drilling depth equals to the bubble cloud length. In drilling brittle hard rock, erosion happens in the first few seconds, and after that, erosion does not increase with time.
机译:针对具有不同泵压和环境压力的不同喷嘴,进行了一系列有关气泡云和空化水射流侵蚀机理的实验。这项工作的目的是找到侵蚀与气泡云之间的关系,并探索喷嘴的工作条件和喷嘴设计,以通过降低泵压来减少输入能量。气泡云的可视化研究表明,收敛-发散喷嘴的气泡云的长度和宽度大于收敛-发散喷嘴的气泡云的长度和宽度。腐蚀测试证实,是由气泡坍塌引起腐蚀的,并且隔离距离加上钻孔深度等于气泡云的长度。在钻探脆性硬岩中,侵蚀在最初的几秒钟内发生,此后,侵蚀不会随时间增加。

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