36 citations to https://www.mathnet.ru/rus/zvmmf1379
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М. А. Кирюшина, “Численный эксперимент в задаче о распространении малых возмущений в круглой трубе”, Препринты ИПМ им. М. В. Келдыша, 2024, 048, 21 с.
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V. Kraposhin M. Ryazanov D.A. Elizarova T.G., “Numerical Algorithm Based on Regularized Equations For Incompressible Flow Modeling and Its Implementation in Openfoam”, Comput. Phys. Commun., 271 (2022), 108216
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Belevich M., “On Physical Limitations of Mathematical Constructions Used in Mathematical Models”, Pramana-J. Phys., 93:3 (2019), 33
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Stamatiou A., Dadzie S.K., Reddy M.H.L., “Investigating Enhanced Mass Flow Rates in Pressure-Driven Liquid Flows in Nanotubes”, J. Phys. Commun., 3:12 (2019), 125012
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Kraposhin M.V. Smirnova E.V. Elizarova T.G. Istomina M.A., “Development of a New Openfoam Solver Using Regularized Gas Dynamic Equations”, Comput. Fluids, 166 (2018), 163–175
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Ryazanov D.A., Kraposhin M.V., Elizarova T.G., Sibgatullin I.N., Kalugin M.D., Velikhov V.E., Ryabinkin E.A., “Openfoam High Performance Computing Solver For Simulation of Internal Wave Attractors in Stratified Flows Using Regularized Hydrodynamic Equations”, 2018 Ivannikov Ispras Open Conference (Ispras), IEEE, 2018, 122–128
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Kraposhin M.V. Elizarova T.G. Istomina M.A. Ryazanov D.A. Vatutin K.A., “Numerical Simulation of Compressible Gas Flows Using Regularized Gas Dynamic Equations Solver Qgdfoam”, AIP Conference Proceedings, 2027, ed. Fomin V., Amer Inst Physics, 2018, 030105-1
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Popov M.V. Elizarova T.G., “Smoothed Mhd Equations For Numerical Simulations of Ideal Quasi-Neutral Gas Dynamic Flows”, Comput. Phys. Commun., 196 (2015), 348–361
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Brenner H., “Fluid Mechanics in Fluids at Rest”, Phys. Rev. E, 86:1, Part 2 (2012), 016307
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Michoski C., Evans J.A., Schmitz P.G., Vasseur A., “A discontinuous Galerkin method for viscous compressible multifluids”, J Comput Phys, 229:6 (2010), 2249–2266