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空化气泡的表面张力。

Surface tension of cavitation bubbles.

机构信息

Institut des NanoSciences de Paris, Sorbonne Université, CNRS, Paris F-75005, France.

Laboratoire de Physique de l'Ecole Normale Supérieure, Ecole Normale Supérieure, Université Paris Sciences et Lettres, CNRS, Sorbonne Université, Université de Paris, Paris F-75005, France.

出版信息

Proc Natl Acad Sci U S A. 2023 Apr 11;120(15):e2300499120. doi: 10.1073/pnas.2300499120. Epub 2023 Apr 6.

Abstract

We have studied homogeneous cavitation in liquid nitrogen and normal liquid helium. We monitor the fluid content in a large number of independent mesopores with an ink-bottle shape, either when the fluid in the pores is quenched to a constant pressure or submitted to a pressure decreasing at a controlled rate. For both fluids, we show that, close enough to their critical point, the cavitation pressure threshold is in good agreement with the Classical Nucleation Theory (CNT). In contrast, at lower temperatures, deviations are observed, consistent with a reduction of the surface tension for bubbles smaller than two nanometers in radius. For nitrogen, we could accurately measure the nucleation rate as a function of the liquid pressure down to the triple point, where the critical bubble radius is about one nanometer. We find that CNT still holds, provided that the curvature dependence of the surface tension is taken into account. Furthermore, we evaluate the first- and second-order corrections in curvature, which are in reasonable agreement with recent calculations for a Lennard-Jones fluid.

摘要

我们研究了液体氮和正常液态氦中的均匀空化现象。当孔中的流体被冷却到恒压或以受控速率降低压力时,我们用墨水瓶形状监测大量独立中孔中的流体含量。对于这两种流体,我们表明,在足够接近其临界点的情况下,空化压力阈值与经典成核理论(CNT)吻合得很好。相比之下,在较低的温度下,观察到了偏差,这与气泡表面张力的减小是一致的,因为气泡的半径小于两纳米。对于氮气,我们可以在液氦三相点以下的压力下,准确地测量作为液体压力函数的成核率,其中临界气泡半径约为一纳米。我们发现,只要考虑到表面张力的曲率依赖性,CNT 仍然成立。此外,我们评估了曲率的一阶和二阶修正,这与最近对 Lennard-Jones 流体的计算结果基本一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c283/10104516/06d7439c41f3/pnas.2300499120fig01.jpg

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