Khoperskov A.V., Khrapov S.S., Computer modeling of non-stationary gas quasi-Keplerian disk Astrophysical Disks, Astrophysics and Space Science Library, 337, Ed.: A.M.Fridman et al., Springer, 2006, 217 pp.
Khoperskov A.V., Khrapov S.S., Nedugova E.A., “Dissipativno-akusticheskaya neustoichivost v akkretsionnykh diskakh na nelineinoi stadii”, Pisma v AZh, 29:4 (2003), 288–299
S. S. Khrapov, “Numerical modeling of hydrodynamic accidents: erosion of dams and flooding of territories”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 10:2 (2023), 357–373
2.
M. A. Sadenova, S. S. Khrapov, N. A. Beisekenov, “Mathematical modeling of crop yield forecast based on field monitoring and remote sensing data”, Mathematical Physics and Computer Simulation, 26:3 (2023), 56–75
2022
3.
S. S. Khrapov, E. O. Agafonnikova, A. Yu. Klikunova, V. P. Radchenko, E. V. Baskakov, E. S. Savin, I. S. Makoveev, N. S. Khrapov, “Numerical modeling of self-consistent dynamics of shallow waters, traction and suspended sediments: I. Influence of commercial sand mining on the safety of navigation in the channel of the Volga River”, Mathematical Physics and Computer Simulation, 25:3 (2022), 31–57
S. S. Khrapov, “Numerical modeling of self-consistent dynamics of shallow and ground waters”, Mathematical Physics and Computer Simulation, 24:3 (2021), 45–62
A. Yu. Klikunova, A. V. Khoperskov, E. O. Agafonnikova, A. S. Kuz'mich, T. A. Dyakonova, S. S. Khrapov, I. M. Gusev, “Creation of cadastral maps of flooding based on numerical modeling”, J. Comp. Eng. Math., 6:2 (2019), 3–17
S. S. Khrapov, A. V. Khoperskov, V. I. Korchagin, “Numerical modelling of the dynamics of the galactic halos in the colliding galaxies”, Vestnik YuUrGU. Ser. Mat. Model. Progr., 12:2 (2019), 123–135
S. S. Khrapov, S. A. Khoperskov, A. V. Khoperskov, “New features of parallel implementation of $N$-body problems on GPU”, Vestnik YuUrGU. Ser. Mat. Model. Progr., 11:1 (2018), 124–136
N. M. Kuz'min, S. S. Khrapov, V. V. Mustsåvoy, “The hydrodinamical mechanism of jets’ formation and collimation in young star objects”, Mathematical Physics and Computer Simulation, 20:6 (2017), 51–62
9.
A. N. Presnyakova, A. V. Pisarev, S. S. Khrapov, “The flooding dynamics of the Volga–Akhtuba floodplain during spring flood using space monitoring”, Vestnik Volgogradskogo gosudarstvennogo universiteta. Seriya 1. Mathematica. Physica, 2017, no. 1(38), 66–74
T. A. D'yakonova, S. S. Khrapov, A. V. Khoperskov, “The problem of boundary conditions for the shallow water equations”, Vestn. Udmurtsk. Univ. Mat. Mekh. Komp. Nauki, 26:3 (2016), 401–417
S. S. Khrapov, N. M. Kuz'min, M. A. Butenko, “The comparison of accuracy and convergence for the CSPH—TVD method and some Eulerian schemes for solving gas-dynamic equations”, Vestnik Volgogradskogo gosudarstvennogo universiteta. Seriya 1. Mathematica. Physica, 2016, no. 6(37), 166–173
A. V. Belousov, S. S. Khrapov, A. V. Tån, N. V. Sadchikov, Yu. A. Boldyråva, “Parallel FDM printer”, Vestnik Volgogradskogo gosudarstvennogo universiteta. Seriya 1. Mathematica. Physica, 2016, no. 4(35), 116–131
13.
A. A. Voronin, A. Vasilchenko, A. V. Pisarev, S. S. Khrapov, Yu. E. Radchånko, “Designing mechanisms of the hydrological regime management of the Volga–Akhtuba floodplain based on geoinformation and hydrodynamic modeling”, Vestnik Volgogradskogo gosudarstvennogo universiteta. Seriya 1. Mathematica. Physica, 2016, no. 1(32), 24–37
A. A. Voronin, A. Vasilchenko, M. Pisareva, A. V. Pisarev, A. V. Khoperskov, S. S. Khrapov, J. Podschipkova, “Designing a system for ecological–economical management of the volga–akhtuba floodplain on basis of hydrodynamic and geoinformational simulation”, UBS, 55 (2015), 79–102
A. V. Belousov, S. S. Khrapov, “Gasdynamic modeling on the basis of the Lagrangian and Euler scheme LES — ASG”, Vestnik Volgogradskogo gosudarstvennogo universiteta. Seriya 1. Mathematica. Physica, 2015, no. 5(30), 36–51
A. V. Belousov, S. S. Khrapov, “Development of the program for numerical gasdynamic modeling on the basis of Lagrange — Euler scheme the LES — ASG”, Vestnik Volgogradskogo gosudarstvennogo universiteta. Seriya 1. Mathematica. Physica, 2015, no. 1(26), 30–39
E. V. Bochkareva, S. S. Khrapov, “Numerical modeling of the dynamics of sound waves in active environments using the MUSCL scheme”, Vestnik Volgogradskogo gosudarstvennogo universiteta. Seriya 1. Mathematica. Physica, 2015, no. 1(26), 13–22
A. A. Voronin, A. Vasilchenko, S. S. Khrapov, E. O. Agafonnikova, “Efficiency analysis for nature restoration projects in ecologo-economic system of volga hpp and volga-akhtuba floodplain”, UBS, 52 (2014), 133–147
A. V. Khoperskov, S. S. Khrapov, V. V. Novochadov, D. V. Burnos, “The effect of small-scale mammary glands structure on the distribution of the deep temperature using the microwave radiometry diagnostics”, Vestnik Volgogradskogo gosudarstvennogo universiteta. Seriya 1. Mathematica. Physica, 2014, no. 6(25), 60–68
T. A. Dyakonova, A. V. Pisarev, A. V. Khoperskov, S. S. Khrapov, “Mathematical model of surface water dynamics”, Vestnik Volgogradskogo gosudarstvennogo universiteta. Seriya 1. Mathematica. Physica, 2014, no. 1(20), 35–44
N. M. Kuz'min, A. V. Belousov, T. S. Shushkåvich, S. S. Khrapov, “Numerical scheme cSPH — TVD: investigation of influence slope limiters”, Vestnik Volgogradskogo gosudarstvennogo universiteta. Seriya 1. Mathematica. Physica, 2014, no. 1(20), 22–33
A. V. Pisarev, S. S. Khrapov, E. O. Agafonnikova, A. V. Khoperskov, “Numerical model of shallow water dynamics in the channel of the Volga: estimation of roughness”, Vestn. Udmurtsk. Univ. Mat. Mekh. Komp. Nauki, 2013, no. 1, 114–130
A. A. Voronin, M. V. Eliseeva, S. S. Khrapov, A. V. Pisarev, A. V. Khoperskov, “The regimen control task in the eco-economic system “Volzhskaya hydroelectric power station – the Volga-Akhtuba floodplain”. II. Synthesis of control system”, Probl. Upr., 2012, no. 6, 19–25
A. V. Khoperskov, S. S. Khrapov, A. V. Pisarev, A. A. Voronin, M. V. Eliseeva, I. A. Kobelev, “The regimen control task in the eco-economic system “Volzhskaya hydroelectric power station – the Volga-Akhtuba floodplain”. I. Simulation of dynamics of surface water during spring floods”, Probl. Upr., 2012, no. 5, 18–25
S. S. Khrapov, A. V. Khoperskov, N. M. Kuz'min, A. V. Pisarev, I. A. Kobelev, “A numerical scheme for simulating the dynamics of surface water
on the basis of the combined SPH-TVD approach”, Num. Meth. Prog., 12:2 (2011), 282–297