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Titlebook: Cavity Dynamics and Splashing Mechanism in Droplets; Zhaohao Li,Xiaoyu Wang,Yuning Zhang Book 2024 The Author(s), under exclusive license

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Research Methods,periments, theoretical analysis of bubble dynamics, and numerical simulation of OpenFOAM. From the experimental aspect, according to the droplet morphology produced in different modes, the droplets can be divided into hemispherical, ellipsoidal, and spherical droplets. The difference in the droplet
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Dynamics of Droplet Splashing Induced by Cavitation Bubble Collapse,the relative position of the cavitation bubble on the splashing behavior of a droplet is observed by the high-speed camera. Secondly, the flow field distribution near the gas–liquid interface is analyzed, including pressure field, velocity field, baroclinity, and vortex distribution. Finally, the cr
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Dynamic Characteristics of a Vapor Bubble in a Droplet,lies in the existences of vapor condensation. Due to the phase transition, the velocity of fluid propagation and the mechanism of its interactions with shock waves may be changed. Based on this, it is of certain significance to investigate the dynamic characteristics of a vapor bubble inside a dropl
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Conclusion,s and droplets. The cavitation bubble dynamic characteristics under the influence of droplets and the droplet splashing characteristics induced by cavitation bubbles are discussed in detail. Through the comprehensive research of this book, the following main conclusions can be drawn.
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https://doi.org/10.1007/978-3-8349-9701-2et. In this chapter, a numerical method is adopted to simulate the movement, deformation, collapse, and other processes of a vapor bubble, and a quantitative analysis is carried out on the local instantaneous pressure released during the collapse.
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Methodisches Vorgehen in der Arbeit,dynamic equations of the cavitation bubble inside a droplet are developed considering the influence of surface tension and the viscous force. For the simulation, the governing equations are introduced together with the volume of fluid (VOF) and the large-eddy simulation (LES) methods.
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Research Methods,dynamic equations of the cavitation bubble inside a droplet are developed considering the influence of surface tension and the viscous force. For the simulation, the governing equations are introduced together with the volume of fluid (VOF) and the large-eddy simulation (LES) methods.
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