1. A. I. Anuchina, N. A. Artyomova, V. A. Gordeychuck, and O. V. Ushakova, “A technology for grid generation in volumes bounded by the surfaces of revolutions,” in Numerical Geometry, Grid Generation and Scientific Computing-Proceedings of the 9th International Conference, NUMGRID 2018 / Voronoi 150, Celebrating the 150th Anniversary of G.F. Voronoi, Lecture Notes in Computational Science and Engineering, Vol. 131, edited by H. S. V.A. Garanzha, L. Kamenski (Springer Verlag, 2019) pp. 281–292.
2. N. N. Anuchina, V. I. Volkov, V. A. Gordeychuk, N. S. Es’kov, O. S. Ilyutina, and O. M. Kozyrev, “Numerical simulation of 3d multi-component vortex flows by MAH-3 code,” in Advances in Grid Generation, edited by O. V. Ushakova (Nova Science, New York, 2007) Chap. 8, pp. 337–380.
3. N. A. Vaganova and M. Y. Filimonov, “Simulation of cooling devices and the effect for thermal stabilization of soil in a cryolithozone with anthropogenic impact,” in 7th Conference on Finite Difference Methods, FDM 2018, Lecture Notes in Computer Science, Vol. 11386, edited by I. Dimov, I. Farago, and L. Vulkov (Springer Verlag, Germany, 2019) pp. 580–587.
4. O. B. Khairullina, A. Sidorov, and O. V. Ushakova, “Variational methods of construction of optimal grids,” in Handbook of Grid Generation, edited by J. F. Thompson, B. K. Soni, and N. P. Weatherill (CRC Press, Boca Raton, FL, 1999) Chap. 36, pp. 36-1–36-25.
5. An algorithm for constructing initial three-dimensional structured grids for domains of revolution