11 citations to https://www.mathnet.ru/rus/fd1
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Ilia Marchevsky, Kseniia Sokol, Evgeniya Ryatina, Yulia Izmailova, “The VM2D Open Source Code for Two-Dimensional Incompressible Flow Simulation by Using Fully Lagrangian Vortex Particle Methods”, Axioms, 12:3 (2023), 248
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I.K. Marchevsky, K.S. Sokol, Yu.A. Izmailova, “T-Schemes for Mathematical Modelling of Vorticity Generation on Smooths Airfoils in Vortex Particle Methods”, HoBMSTU.SNS, 2022, no. 6 (105), 33
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И. А. Максименко, В. В. Марков, “О новом лагранжевом взгляде на эволюцию завихренности в пространственных течениях”, Вестн. Сам. гос. техн. ун-та. Сер. Физ.-мат. науки, 226:1 (2022), 179–189 ; I. A. Maksimenko, V. V. Markov, “On a new Lagrangian view on the evolution of vorticity in spatial flows”, 26:1 (2022), 179–189
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V.N. Kolodezhnov, “Plane vortex flow in a cylindrical layer”, Comp. Contin. Mech., 14:2 (2021), 159
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O. S. Kotsur, “Mathematical Modelling of the Elliptical Vortex Ring in a Viscous Fluid with the Vortex Filament Method”, Mat. mat. model., 2021, no. 3, 46
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Hanxue Cao, Chengcheng Wang, Qianyuan Shan, Junqi Che, Ziwei Luo, Luhan Wang, Mengtao Huang, “Kinetic analysis of pore formation in die-cast metals and influence of absolute pressure on porosity”, Vacuum, 168 (2019), 108828
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V. N. Golubkin, G. B. Sizykh, “On the vorticity behind 3-D detached bow shock wave”, Adv. Aerodyn., 1:1 (2019)
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G. B. Sizykh, “Замкнутые вихревые линии в жидкости и газе”, Вестн. Сам. гос. техн. ун-та. Сер. Физ.-мат. науки, 223:3 (2019), 407–416
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G. B. Sizykh, “Entropy Value on the Surface of a Non-Symmetric Convex Bow Part of a Body in the Supersonic Flow”, Fluid Dyn, 54:7 (2019), 907
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G. B. Sizykh, “Vorticity addition method”, Fluid Dyn, 51:3 (2016), 321