Диссертация (1150462), страница 27
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An examination of forcing in direct numerical simulations of turbulence / V.Eswaran, S.B. Pope // Computers and Fluids. — 1988. — Vol 16 (3). — 257-278.33. Eswaran, V. Direct numerical simulations of the turbulent mixing of a passive scalar / V.Eswaran, S.B. Pope // Physics of Fluids. — 1988. — Vol. 31 (3). — P. 506-520.34. Ferziger, J.M. Computational Methods for Fluid Dynamics / J.M. Ferziger, M. Peric. —Springer-Verlag, Berlin, Germany, 2002. — 423 p.35. Gaskell, P.H. Curvature-compensated convective-transport: SMART, A new boundednesspreserving transport algorithm / P.H.
Gaskell, A.K.C. Lau // Int. J. Numer. Methods Fluids. — 1988.— Vol. 8. — Issue 6. — P. 617-641.36. Gerbeau, J.F.. A quasi-newton algorithm based on a reduced model for fluid-structureinteraction problems in blood flows: technical report 4691/ J.F. Gerbeau, M. Vidrascu. — INRIA,2003.37. Ghassemi, H. Hydrodynamic characteristics of the surface-piercing propellers for theplaning craft / H. Ghassemi // Journal of Marine Science and Application. — 2009. — Vol.
8. —P. 267-274.38. Gingold, R.A. Kernel estimates as a basis for general particle methods in hydrodynamics /R.A. Gingold, J.J. Monaghan // J. Comput. Phys. — 1982. — Vol. 46. — P. 429-453.39. Gingold, R.A. Smoothed particle hydrodynamics: theory and application to non-sphericalstars / R.A. Gingold, J.J. Monaghan // Monthly Notices of the Royal Astronomical Society. — 1977.— Vol. 181.
— P. 375 89.40. Givi, P. Model-free simulations of turbulent reactive flows / P. Givi // Progress in Energyand Combustion Science. — 1989. — Vol. 15. — P. 1-107.41. Glimm, J. 3-Dimensional front tracking / J. Glimm, J.W. Grove, X.L. Li, K.-M. Shyue, Y.Zeng, Q. Zhang // SIAM J. sci. computing. —1998.
— Vol. 19. — P. 703-727.42. Grenier, N. Modélisation numérique par la méthode SPH de la séparation eau-huile dans lesséparateurs gravitaires: PhD Thesis /N. Grenier. — Ecole Centrale de Nantes, France, 2009.14643. Guilcher, P.M. Simulation of liquid impacts with a two-phase parallel SPH model / P.M.Guilcher, G. Oger, L.
Brosset , E. Jacquin, N. Grenier, D.L. Touze // Proceedings of the 20thInternational Offshore and Polar Engineering Conference (ISOPE 2010), Beijing, China, 2010. —P. 44-52.44. Hackbusch, W. Multi-Grid Methods and Applications / W. Hackbusch // Springer-verlag.Berlin, 1985.45. Hansbo, P. A free-lagrange finite element method using space-time elements / P. Hansbo //Comput. Methods Appl. Mech. Engrg. — 2000.
— Vol. 188. — P. 347-361.46. Harlow, F.H. Numerical calculation of time-dependent viscous incompressible flow / F.H.Harlow, J.E.Welch // Phys. Fluids. — 1965. — Vol. 8. — P. 2182-2189.47. Harlow, F.H. Relativistic fluid dynamics calculations with the particle-in-cell technique. /F.H. Harlow, A.A. Amsden, J.R. Nix // Journal of computational physics. — 1976. — Vol. 29. —P.
119-129.48. Himei, K. Numerical Analysis of Unsteady Open Water Characteristics of Surface PiercingPropeller / K. Himei // Proceedings of the Third International Symposium on Marine Propulsors(SMP’13), Launceston, Tasmania, Australia, May 2013. — P. 292-297.49. Hinatsu, M. Two-Phase flows for joint research / M. Hinatsu, Y.
Tsukada, R. Fukasawa, Y.Tnanaka // Proceedings of SRI-TUHH mini Workshop on Numerical Simulation of Two-Phase Flows,Tokyo, Japan, 2001. — P. 12-19.50. Hirt, C.W. An arbitrary lagrangian-eulerian computing method for all speeds / C.W. Hirt,A.A. Amsden // J. comput. phys. — 1974. — Vol. 14. — P. 227-253.51. Hirt, C.W. Volume of fluid (VOF) method for the dynamics of free boundaries. / C.W. Hirt,B.D. Nichols // Journal of computational physics. — 1981. — Vol. 39.
— P. 201-226.52. Hogg, P.W. Аn implicit algorithm for capturing sharp fluid interfaces in the volume of fluidadvection method: technical report DL-TR-2006-001 / P.W.Hogg, X.J. Gu, D.R.Emerson. —Daresbury Laboratory, Warrington, United Kingdom, 2006. — 26 p.53. Hu, C. Numerical Simulation and Experiment on Dam Break Problem // C. Hu, M.Sueyoshi / Journal of Marine Science and Application. — 2010. — Vol.
9. — P. 109-114.54. Hu, X. A constant-density approach for incompressible multi-phase SPH / X. Hu, N.Adams // Journal of Computational Physics. — 2009. — Vol. 228 (6). — P 2082-2091.55. Hu, X. A multi-phase SPH method for macroscopic and mesoscopic flows / X. Hu, N.Adams // Journal of Computational Physics.
— 2006. — Vol. 213 (2). — P 844-861.56. Huang, S. A coupled analysis of nonlinear sloshing and ship motion / S. Huang; W. Duan;H. Zhang// Journal of Marine Science and Application. — 2012. — Vol. 11. — P. 427-436.14757. Huerta, A. Viscous flow with large free surface motion / A.
Huerta, W.K. Liu // Comput.Methods Appl. Mech. Engrg. — 1988. — Vol. 69. — P. 277-324.58. Hugues, T.J.R. Lagrangian-Eulerian finite element formulation for incompressible viscousflows / T.J.R. Hugues, W.K. Liu, T.K. Zimmermann // Comput. Methods Appl. Mech. Engrg. — 1981.— Vol. 29. — P. 329-349.59. Idelsohn, S.R. Lagrangian formulations to solve free surface incompressible inviscid fluidflows / S.R.
Idelsohn, M.A. Storti, E. Onate // Comput. Methods Appl. Mech. Engrg. — 2001. —Vol. 191. — P. 583-593.60. Jan, Y.J. A front tracking method for the computations of multiphase flow / Y.J. Jan //Journal of computational physics. — 2001. — Vol. 169. — P. 708-759.61. Janosi, I.M. Turbulent drag reduction in dam-break flows / I.M. Janosi, D.
Jan, K.G. Szabo,T. Tamas // Experiments in Fluids. — 2004. — Vol. 37(2). — P. 219-229.62. Jasak, H. High resolution NVD differencing scheme for arbitrarily unstructured meshes / H.Jasak, H.C. Weller, R.I. Issa, A.D. Gosman // Int.
J. Numer. Meth. Fluids. — 1999. — Vol. 31. —P 431-449.63. Johannessen, T.B. Extreme Wave Effects on Deep Water TLPs - Lessons Learned from theSnorre A Model Tests / T.B. Johannessen, S. Haver, T. Bunnik, B. Buchner // Proceedings of the DeepOffshore Technology Conference (DOT), Houston, November 28-30, 2006.64. Kato, M. The Modeling of Turbulent Flow Around Stationary and Vibrating SquareCylinders / M.
Kato, B.E. Launder // Proceedings of the 9th Symposium on Turbulent Shear Flows,Kyoto, August 1993. — P. 10.4.1-10.4.6.65. Kawamura, T. Numerical simulation of the flow about self-propelling tanker models // T.Kawamura, H. Miyata, K. Mashimo. / Journal of Marine Science and Technology. — 1997.
— No. 2.— P. 245-256.66. Khezzar, L. Water sloshing in rectangular tanks – an experimental investigation &numerical simulation / L. Khezzar, A.C. Seibi, A. Goharzadeh // International Journal of Engineering.— 2009. — Vol. 3. — Issue 2. — P. 174-184.67. Kleefsman, K.M.T. A Volume-of-Fluid based simulation method for wave impact problems/ K.M.T. Kleefsman, G. Fekken, A.E.P. Veldman // Journal of Computational Physics. — 2005. —Vol.
206. — P. 363-393.68. Kocaman, S. The effect of lateral channel contraction on dam break flows: Laboratoryexperiment / S. Kocaman, H. Ozmen-Cagatay // Journal of Hydrology. — 2012. — Vol. 432-433. —P. 145-153.14869. Lafaurie, В. Modelling merging and fragmentation in multiphase flows with SURFER / B.Lafaurie, C. Nardone, R. Scardovelli, S.
Zaleski, G. Zanetti // Journal of computational physics. —1994. — Vol. 39. — P. 134-147.70. Lam, C.K.G. Modified form of the k- model for predicting wall turbulence / C.K.G. Lam,K.A. Bremhorst // J. Fluids Engineering. — 1981. — Vol. 103. — P.
456-460.71. Launder, B.E. Application of the Energy-Dissipation Model of Turbulence to theCalculation of Flow Near a Spinning Disc / B.E. Launder, B.I. Sharma // Letters in Heat and MassTransfer. — 1974. — Vol. 1, No. 2. — P. 131-138.72. Launder, B.E. The Numerical Computation of Turbulent Flows / B.E. Launder, D.B.Spalding // Computer Methods in Applied Mechanics and Engineering. — 1974. — Vol. 3. — P.
269289.73. Leonard, B.P. A stable and accurate convective modelling procedure based on quadraticupstream interpolation / B.P. Leonard // Comput. Methods Appl. Mech. Engrg. — 1979. — Vol.19. —P. 59-98.74. Leonard, B.P. The ULTIMATE conservative difference scheme applied to unsteadyonedimensional advection / B.P. Leonard // Comput.
Methods Appl. Mech. Engrg. — 1991. —Vol. 88. — P. 17-74.75. Liu, J. Numerical simulation of flows with moving interfaces. / J. Liu, D.B. Spalding //Physico chemical hydrodynamics. — 1988. — Vol. 10 (5/6). — P. 625-637.76. Liu, Y. Numerical Simulation of Motion Response of an Offshore Observation Platform inWaves // Y. Liu, D. Wan / Journal of Marine Science and Application. — 2013. — Vol. 12.
— P. 8997.77. Lucy, L.B. A numerical approach to the testing of the fission hypothesis / L.B. Lucy //Astron. J. — 1977. — Vol. 82 (12). — P 1013-1024.78. Lungu, A. Free-Surface Flow around an Appended Hull / A. Lungu, F. Pacuraru //Proceedings of the 25th IAHR Symposium on Hydraulic Machinery and Systems, Timisoara, 2010.