Analytical Solution of the Rayleigh – Plesset Equation Filled with Van Der Waals Gas for Various Isoprocesses

    Received 30 June 2023; accepted 19 October 2023; published 13 December 2023

    2024, Vol. 20, no. 1, pp.  3-13

    Author(s): Gasanov M. V., Gulkanov A. G., Modestov K. A.

    In this paper, we consider a mathematical model of the dynamics of the behavior of a spherically symmetric Rayleigh – Plesset bubble in the van der Waals gas model. The analysis of the model takes into account various isoprocesses without the presence of condensation and a model that takes into account condensation in an isothermal process. In each case, various characteristics are searched for, such as oscillation frequency (linear/small oscillations), damping factor, relaxation time, decrement, and logarithmic decrement. Solutions are found in quadratures for various parameters of the equation. The theoretical results obtained are compared with the results of the numerical solution of the Cauchy problem for various isoprocesses.
    Keywords: nonlinear differential equations, exact solution, small fluctuations, van der Waals equation, Rayleigh – Plesset equation
    Citation: Gasanov M. V., Gulkanov A. G., Modestov K. A., Analytical Solution of the Rayleigh – Plesset Equation Filled with Van Der Waals Gas for Various Isoprocesses, Rus. J. Nonlin. Dyn., 2024, Vol. 20, no. 1, pp.  3-13
    DOI:10.20537/nd231202


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