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VIII. On the pressure developed in a liquid during the collapse of a spherical cavity

Lord Rayleigh
- 01 Aug 1917 - 
- Vol. 34, Iss: 200, pp 94-98
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This article is published in Philosophical Magazine Series 1.The article was published on 1917-08-01. It has received 2532 citations till now. The article focuses on the topics: Collapse (topology).

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Cavitation wear behaviour of austenitic stainless steels with different grain sizes

TL;DR: In this article, the cavitation erosion behavior of two different austenitic stainless steels in water with different pH values and room temperature have been studied by means of a 20-kHz ultrasonic vibrator operating at a peak-to-peak amplitude of 40 μm.
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Primary Bjerknes forces

TL;DR: When a bubble in a liquid is subjected to a periodic sound field, the resulting bubble oscillations can interact with the sound field and give rise to the primary Bjerknes force.
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Direct calculation of bubble growth, departure, and rise in nucleate pool boiling

TL;DR: In this article, a mesh-free numerical method (MPS-MAFL) is presented for the analysis of gas-liquid two-phase flows, where a particle method is combined with a gridless method for an arbitrary-Lagrangian-Eulerian calculation.
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Biot-Rayleigh theory of wave propagation in double-porosity media

TL;DR: In this article, the equations of motion of a double-porosity medium were derived based on Biot's theory of poroelasticity and on a generalization of the theory of fluid collapse to the porous case.