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Experimental Study on the Impact Characteristics of Cavitation Bubble Collapse on a Wall

机译:汽蚀气泡坍塌对墙体冲击特性的实验研究

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As a hydrodynamic phenomenon, cavitation is a main concern in many industries such as water conservancy, the chemical industry and medical care. There are many studies on the generation, development and collapse of cavitation bubbles, but there are few studies on the variation of the cyclic impact strength on walls from the collapse of cavitation bubbles. In this paper, a high-speed dynamic acquisition and analysis system and a pressure measuring system are combined to study the impact of a cavitation bubble generated near a wall for various distances between the cavitation bubble and the wall. The results show that (1) with the discriminating criteria of the impact pressure borne by the wall, the critical conditions for the generation of a micro-jet in the collapse process of the cavitation bubbles are obtained, and therefore collapses of cavitation bubbles near the wall are mainly divided into primary impact area collapses, secondary impact area collapses and slow release area collapses; (2) it can be seen from the impact strength of the cavitation bubble collapse on the wall surface that the impact of cavitation bubbles on the wall surface during the first collapse decreases as γ (the dimensionless distance between the cavitation bubble and the wall) increases, but the impact of the second collapse on the wall surface increases first and then decreases sharply. When γ is less than 1.33, the impact on the wall surface is mainly from the first collapse. When γ is between 1.33 and 2.37, the impact on the wall surface is mainly from the second collapse. These conclusions have potential theoretical value for the utilization or prevention and control technologies for cavitation erosion.
机译:作为水动力现象,气蚀是许多行业(如水利,化学工业和医疗保健)中的主要问题。关于空化气泡的产生,发展和崩溃的研究很多,但是关于空化气泡的崩溃对壁的循环冲击强度的变化的研究很少。在本文中,结合了高速动态采集和分析系统和压力测量系统,研究了在空化气泡和壁之间的各种距离下,在壁附近生成的空化气泡的影响。结果表明:(1)以壁面承受的冲击压力为判别准则,得出了在空化气泡坍塌过程中产生微射流的临界条件,从而使空化气泡在空泡附近塌陷。墙体主要分为一级撞击区塌陷,二级撞击区塌陷和缓释区塌陷。 (2)从空化气泡塌陷在壁面上的冲击强度可以看出,第一次塌陷期间空化气泡对壁表面的冲击随着γ(空化气泡与壁之间无量纲距离的增加)的增加而减小。 ,但第二次坍塌对墙体表面的影响先增大,然后急剧减小。当γ小于1.33时,对壁表面的冲击主要来自第一次塌陷。当γ在1.33和2.37之间时,对壁表面的影响主要来自第二次塌陷。这些结论对于气蚀的利用或防治技术具有潜在的理论价值。

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