Variational method of numerical solution of the inverse problem of gas lift oil production process
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Bulletin of the Karaganda University
Abstract
This paper proposes a constructive method for numerically solving direct and inverse problems arising in
the gas-lift oil production process, which is described by a hyperbolic system of differential equations. To
solve the direct problem, a second-order difference scheme is used, which ensures stability and accuracy of
calculations in the space-time domain. The inverse problem is formulated as an optimal control problem,
where the minimization of the objective functional is carried out using the gradient method. The calculation
of the gradient of the objective function is based on the constructed adjoint problem using the Lagrange
identity and the duality principle, which guarantees the mathematical rigor of the approach. Numerical
experiments confirmed the efficiency of the proposed method for solving the inverse problem and optimizing
the input parameters of the gas lift process. The adjoint problem contains valuable information about the
solution of the direct problem, so the gradients of the functional are equal to the solution of the adjoint
problem and its first derivative with respect to time at t = 0. Numerical calculations show that the
values of the minimized functional decrease monotonically and remain bounded below. This means that
the used iterative method converges. Additional conditions set at T = 0 for the direct problem are used to
formulate the condition of the adjoint problem. The developed algorithm contributes to the development of
the numerical implementation of the adjoint optimization method of the inverse problem for a hyperbolic
equation. The problem of the type under study is of
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Temirbekov N.M.Variational method of numerical solution of the inverse problem of gas lift oil production process / N.M. Temirbekov, A.K. Turarov//Bulletin of the Karaganda University. Mathematics series . – 2025. – № 2(118). – pp. 222-240