Cited reference search
Ландау Л. Д., Лифшиц Е. М., Гидродинамика , Наука, М., 1986
Paper is cited in:
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Black holes in the presence of dark energy Е. О. Бабичев, В. И. Докучаев, Ю. Н. ЕрошенкоUFN , 2013, 183 :12 , 1257–1280
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Laser ion acceleration for hadron therapy С. В. Буланов, Я. Я. Вилкенс, Т. Ж. Есиркепов, Г. Корн, Г. Крафт, С. Д. Крафт, М. Моллс, В. С. ХорошковUFN , 2014, 184 :12 , 1265–1298
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Discontinuous plasma flows in magnetohydrodynamics and in the physics of magnetic reconnection Л. С. Леденцов, Б. В. СомовUFN , 2015, 185 :2 , 113–142
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Low energy methods of molecular laser isotope separation Г. Н. МакаровUFN , 2015, 185 :7 , 717–751
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Control of the parameters and composition of molecular and cluster beams by means of IR lasers Г. Н. МакаровUFN , 2018, 188 :7 , 689–719
Acoustic turbulence of second sound waves in superfluid helium В. Б. ЕфимовUFN , 2018, 188 :10 , 1025–1048
BCS–BEC crossover, collective excitations, and hydrodynamics of superfluid quantum liquids and gases М. Ю. Каган, А. В. ТурлаповUFN , 2019, 189 :3 , 225–261
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Heliophysics: from observations to models and applications В. Д. Кузнецов, А. И. ОсинUFN , 2020, 190 :8 , 871–877
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On common exact solutions of Navier-Stokes and quasi-hydrodynamic systems for nonstationary flows Ю. В. ШеретовVestnik TVGU. Ser. Prikl. Matem. [Herald of Tver State University. Ser. Appl. Math.] , 2017:3 , 13–25
On the exact solutions of quasi–hydrodynamic system that satisfy the generalized Gromeki-Beltrami condition Ю. В. ШеретовVestnik TVGU. Ser. Prikl. Matem. [Herald of Tver State University. Ser. Appl. Math.] , 2018:3 , 5–18
On classes of exact solutions of quasi-hydrodynamic system Ю. В. ШеретовVestnik TVGU. Ser. Prikl. Matem. [Herald of Tver State University. Ser. Appl. Math.] , 2020:2 , 5–17
On the construction of exact solutions of two-dimensional quasi-hydrodynamic system Ю. В. ШеретовVestnik TVGU. Ser. Prikl. Matem. [Herald of Tver State University. Ser. Appl. Math.] , 2021:1 , 5–20
On exact solutions of quasi-hydrodynamic system that don't satisfy the Navier-Stokes and Euler systems В. В. Григорьева, Ю. В. ШеретовVestnik TVGU. Ser. Prikl. Matem. [Herald of Tver State University. Ser. Appl. Math.] , 2021:2 , 5–15
On a new class of exact solutions of Quasi-Hydrodynamic system, generated by eigenfunctions of two-dimensional Laplace operator В. В. Григорьева, Ю. В. ШеретовVestnik TVGU. Ser. Prikl. Matem. [Herald of Tver State University. Ser. Appl. Math.] , 2022:1 , 5–17
Superposition principle for solutions of quasi-hydrodynamic system Ю. В. ШеретовVestnik TVGU. Ser. Prikl. Matem. [Herald of Tver State University. Ser. Appl. Math.] , 2022:2 , 60–73
On construction of exact solutions of stationary quasi-hydrodynamic system using Lin's substitution Ю. В. ШеретовVestnik TVGU. Ser. Prikl. Matem. [Herald of Tver State University. Ser. Appl. Math.] , 2023:1 , 36–48
Amplitude equations for three-dimensional double-diffusive convection in the neighborhood of Hopf bifurcation points С. Б. КозицкийVestn. Udmurtsk. Univ. Mat. Mekh. Komp. Nauki , 2008:3 , 46–60
Amplitude equations for three dimensional roll-type double-diffusive convection with an arbitrary cell width in the neighborhood of Hopf bifurcation points С. Б. КозицкийVestn. Udmurtsk. Univ. Mat. Mekh. Komp. Nauki , 2010:4 , 13–24
Model of three dimensional double-diffusive convection with cells of an arbitrary shape С. Б. КозицкийVestn. Udmurtsk. Univ. Mat. Mekh. Komp. Nauki , 2012:4 , 46–61
The asymptotic solution of a nonlinear problem of wave propagation on a surface of viscous fluid К. Ю. БасинскийVestn. Udmurtsk. Univ. Mat. Mekh. Komp. Nauki , 2015, 25 :3 , 397–404
Numerical simulation of viscous fluid flow based on thermal measurements at its surface А. И. Короткий, И. А. ЦепелевVestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz. , 2016, 8 :4 , 17–25
Recovery of flow parameters of viscous heat-conducting fluid by some changes at its surface А. И. Короткий, И. А. ЦепелевVestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz. , 2018, 10 :1 , 27–36
Reconstruction of the inlet viscous fluid flow by velocity measurements on any observable part of the free moving surface А. И. Короткий, И. А. ЦепелевVestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz. , 2019, 11 :4 , 56–61
Semianalytic method for solving gas dynamics equations in Euler variables М. С. Жарылканова, Н. Л. Клиначева, А. П. ЯловецVestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz. , 2023, 15 :2 , 32–40
Acoustic waves propagation in heated water with vapor bubbles U. O. Agisheva, M. N. GalimzyanovVestnik YuUrGU. Ser. Mat. Model. Progr. , 2020, 13 :1 , 28–38
Hydrodynamical vortice on the plain Е. Ш. ГутшабашZap. Nauchn. Sem. POMI , 2006, 335 , 119–133
Asymptotic models of the blood flow in arterias and veins В. А. Козлов, С. А. НазаровZap. Nauchn. Sem. POMI , 2012, 409 , 80–106
Three-dimensional numerical modeling of the inverse problem of thermal convection А. Т. Исмаил-заде, А. И. Короткий, Б. М. Наймарк, И. А. ЦепелевZh. Vychisl. Mat. Mat. Fiz. , 2003, 43 :4 , 614–626
The Godunov-type difference scheme for equations of relativistic magnetohydrodynamics А. В. Колдоба, Г. В. УстюговаZh. Vychisl. Mat. Mat. Fiz. , 2002, 42 :10 , 1584–1599
Numerical simulation of three-dimensional viscous flows with gravitational and thermal effects А. Т. Исмаил-заде, А. И. Короткий, Б. М. Наймарк, И. А. ЦепелевZh. Vychisl. Mat. Mat. Fiz. , 2001, 41 :9 , 1399–1415
Theoretical and numerical analysis of quasi-gasdynamic and quasi-hydrodynamic equations Т. Г. Елизарова, Ю. В. ШеретовZh. Vychisl. Mat. Mat. Fiz. , 2001, 41 :2 , 239–255
Refined theory and models of supersonic inviscid gas flow past a wedge and cone Б. Л. РождественскийZh. Vychisl. Mat. Mat. Fiz. , 1999, 39 :2 , 289–293
A macroscopic gas model with translational and rotational nonequilibrium Т. Г. Елизарова, И. А. ШироковZh. Vychisl. Mat. Mat. Fiz. , 1999, 39 :1 , 141–153
Unsteady transonic flow behind a shock wave Ю. Б. ЛифшицZh. Vychisl. Mat. Mat. Fiz. , 1998, 38 :12 , 2078–2085
Implementation of a three-dimensional hydrodynamic model for evolution of sedimentary basins А. Т. Исмаил-заде, А. И. Короткий, Б. М. Наймарк, А. П. Суетов, И. А. ЦепелевZh. Vychisl. Mat. Mat. Fiz. , 1998, 38 :7 , 1190–1203
A hysteresis model for the capillary contact angle С. Д. ИлиевZh. Vychisl. Mat. Mat. Fiz. , 1998, 38 :4 , 674–681
Direct statistical simulation of some problems in turbulence theory О. М. Белоцерковский, С. А. Иванов, В. Е. ЯницкийZh. Vychisl. Mat. Mat. Fiz. , 1998, 38 :3 , 489–503
A theorem on the dissipation of energy and exact solutions of a system of quasi-hydrodynamic equations Ю. В. ШеретовZh. Vychisl. Mat. Mat. Fiz. , 1994, 34 :3 , 483–491
Computation of the rate of dissipation of Taylor eddies Б. В. Архипов, В. А. ЛюлькаZh. Vychisl. Mat. Mat. Fiz. , 1993, 33 :10 , 1587–1594
Stochastic model of the non-steady-state flow of a two-phase medium Ф. А. КривошейZh. Vychisl. Mat. Mat. Fiz. , 1993, 33 :7 , 1103–1109
The flow of a stratified liquid around point obstacles М. Б. ТверскойZh. Vychisl. Mat. Mat. Fiz. , 1992, 32 :11 , 1825–1829
An investigation of capillary-gravity waves of finite amplitude on the surface of a floating liquid О. Э. Григор, М. Б. ТверскойZh. Vychisl. Mat. Mat. Fiz. , 1992, 32 :7 , 1057–1070
Increasing the accuracy of the Godunov scheme for calculating stationary supersonic gas flows based on the solution of the generalized Riemann problem И. С. МеньшовZh. Vychisl. Mat. Mat. Fiz. , 1992, 32 :2 , 311–319
Approximate solution of the modified Dirichlet problem П. Н. ВабищевичZh. Vychisl. Mat. Mat. Fiz. , 1991, 31 :11 , 1655–1669
The invariant norm and asymptotic properties of a generalized quasi-gas-dynamic system Т. Г. Елизарова, Ю. В. ШеретовZh. Vychisl. Mat. Mat. Fiz. , 1991, 31 :7 , 1042–1050
The dynamics of a spherical mixing zone in a stratified fluid and its acoustic radiation В. А. Гущин, А. Н. КопысовZh. Vychisl. Mat. Mat. Fiz. , 1991, 31 :6 , 850–863
Unsteady oscillations of a viscous compressible fluid with spatially periodic excitation А. Г. Свешников, С. Т. Симаков, X. Марин АнтуньяZh. Vychisl. Mat. Mat. Fiz. , 1991, 31 :2 , 324–330
Numerical modelling of pulsating regimes accompanying supersonic flow round a hollow cylinder А. Н. Антонов, Т. Г. Елизарова, Б. Н. Четверушкин, Ю. В. ШеретовZh. Vychisl. Mat. Mat. Fiz. , 1990, 30 :4 , 548–556
The method of artificial viscosity for computing one-dimensional flows М. М. БаскоZh. Vychisl. Mat. Mat. Fiz. , 1990, 30 :4 , 601–610
The KARMA-1 program complex for solving time-dependent problems of crystal growth in ampoules М. П. Марченко, И. В. ФрязиновZh. Vychisl. Mat. Mat. Fiz. , 1997, 37 :8 , 988–998
Cellular automata for some gas dynamic processes Г. Г. Малинецкий, М. Е. СтепанцовZh. Vychisl. Mat. Mat. Fiz. , 1996, 36 :5 , 137–145
Continuous compression waves in the two-dimensional Riemann problem A. A. ЧарахчьянZh. Vychisl. Mat. Mat. Fiz. , 2009, 49 :10 , 1853–1859
Numerical analysis of a quasi-gasdynamic algorithm as applied to the Euler equations Т. Г. Елизарова, Е. В. ШильниковZh. Vychisl. Mat. Mat. Fiz. , 2009, 49 :11 , 1953–1969
The Dirichlet–Neumann conditions and orthogonality of three-dimensional natural waves in layered solids Д. Д. ЗахаровZh. Vychisl. Mat. Mat. Fiz. , 2010, 50 :9 , 1598–1612
Regularized shallow water equations and an efficient method for numerical simulation of shallow water flows О. В. Булатов, Т. Г. ЕлизароваZh. Vychisl. Mat. Mat. Fiz. , 2011, 51 :1 , 170–184
Time averaging as an approximate technique for constructing quasi-gasdynamic and quasi-hydrodynamic equations Т. Г. ЕлизароваZh. Vychisl. Mat. Mat. Fiz. , 2011, 51 :11 , 2096–2105
On the collapsing of the solutions of the hydrodynamic type with a singular source Е. В. ЮшковZh. Vychisl. Mat. Mat. Fiz. , 2012, 52 :8 , 1523–1535
Formation of wavy nanostructures on the surface of flat substrates by ion bombardment А. Н. Куликов, Д. А. КуликовZh. Vychisl. Mat. Mat. Fiz. , 2012, 52 :5 , 930–945
Boundary value problem for the Navier–Stokes equations linearized in rate in the case of non-isothermal flow of heated gaseous medium spheroid А. В. Глушак, Н. В. Малай, Н. Н. МироноваZh. Vychisl. Mat. Mat. Fiz. , 2012, 52 :5 , 946–959
Mathematical simulation of acoustic wave scattering in fractured media А. В. БаевZh. Vychisl. Mat. Mat. Fiz. , 2012, 52 :9 , 1676–1693
Mathematical simulation of acoustic wave refraction near a caustic А. В. БаевZh. Vychisl. Mat. Mat. Fiz. , 2013, 53 :7 , 1124–1138
Analytical solution of the second Stokes problem for rarefied gas with Cercignani boundary conditions А. В. Латышев, А. А. ЮшкановZh. Vychisl. Mat. Mat. Fiz. , 2013, 53 :3 , 459–474
Method for direct numerical simulation of turbulent gas flows in curvilinear coordinates И. М. Васенин, А. Ю. Крайнов, А. М. Липанов, Э. Р. ШрагерZh. Vychisl. Mat. Mat. Fiz. , 2015, 55 :5 , 886–894
On $t$ -local solvability of inverse scattering problems in two-dimensional layered media А. В. БаевZh. Vychisl. Mat. Mat. Fiz. , 2015, 55 :6 , 1039–1057
Mathematical modeling of quasi-one-dimensional hemodynamics А. Я. Буничева, С. И. Мухин, Н. В. Соснин, А. Б. ХруленкоZh. Vychisl. Mat. Mat. Fiz. , 2015, 55 :8 , 1417–1428
Rhie–Chow interpolation in strong centrifugal fields С. В. Боговалов, И. В. ТронинZh. Vychisl. Mat. Mat. Fiz. , 2015, 55 :10 , 1756–1761
Alternating triangular schemes for convection-diffusion problems П. Н. Вабищевич, П. Е. ЗахаровZh. Vychisl. Mat. Mat. Fiz. , 2016, 56 :4 , 587–604
Uniqueness of self-similar solutions to the Riemann problem for the Hopf equation with complex nonlinearity А. Г. Куликовский, А. П. Чугайнова, В. А. ШаргатовZh. Vychisl. Mat. Mat. Fiz. , 2016, 56 :7 , 1363–1370
Efficient parallel shock-capturing method for aerodynamics simulations on body-unfitted Cartesian grids И. С. Меньшов, П. В. ПавлухинZh. Vychisl. Mat. Mat. Fiz. , 2016, 56 :9 , 1677–1691
Method for taking into account gravity in free-surface flow simulation В. Р. Ефремов, А. С. Козелков, А. В. Корнев, А. А. Куркин, В. В. Курулин, Д. Ю. Стрелец, Н. В. ТарасоваZh. Vychisl. Mat. Mat. Fiz. , 2017, 57 :10 , 1748–1762
Solution of a boundary value problem for velocity-linearized Navier–Stokes equations in the case of a heated spherical solid particle settling in fluid А. В. Глушак, Н. В. Малай, Е. Р. ЩукинZh. Vychisl. Mat. Mat. Fiz. , 2018, 58 :7 , 1178–1188
Computation of viscous flow between two arbitrarily moving cylinders of arbitrary cross section А. О. Казакова, А. Г. ПетровZh. Vychisl. Mat. Mat. Fiz. , 2019, 59 :6 , 1063–1082
A method for numerical simulation of haline convective flows in porous media as applied to geology Е. Б. СоболеваZh. Vychisl. Mat. Mat. Fiz. , 2019, 59 :11 , 1961–1972
Numerical algorithms for systems with extramassive parallelism В. П. Осипов, Б. Н. ЧетверушкинZh. Vychisl. Mat. Mat. Fiz. , 2020, 60 :5 , 802–814
Inviscid suspension flow along a flat boundary О. Б. ГуськовZh. Vychisl. Mat. Mat. Fiz. , 2021, 61 :3 , 493–503