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8篇 您的检索式:作者名="KudriakovS"
    题名 作者 年代 出处 被引量
1On wall overheating and other computational difficulties of shock-capturing methods 显示文摘Hui W H Kudriakov S 2001ComputFluid Dyn J2001,10,2:1
2The TONUS CFD code for hydrogen risk analysis:Physical models,numerical schemes and validation matrix显示文摘KudriakovS Dabbene F 0,,:1
3Computationa of the shallow water equations using the unified coordinates显示文摘Hui W H S Kudriakov 2002SIAM J Sci Comput2002,23,:1
4On wall overheating and other computational diffculties of shock-capturing methods显示文摘Hui W H Kudriakov S 2001Comput Fluid Dyn2001,10,:1
5Computationa of the shallow water equations using the unified doordinates显示文摘Hui W H S Kudriakov 2002SIAM J Sci Comput2002,23,:1
6A simplified model of passive containment cooling system in a CFD code显示文摘JIANG X W STUDER E KUDRIAKOV S 2013Nuclear Engineering and Design2013,262,:1
7Computationa of the shallow water equations using the unified coordinates显示文摘Hui WH Kudriakov S 2002SIAM J Sci Comput2002,23,:1
8Particles-induced turbulence: A critical review of physical concepts,numerical modelings and experimental investigations显示文摘The presence of solid particles or water droplets in continuous fluid flow can either induce turbulence attenuation or amplification. The modification of the state of the turbulence depends on the characteristics of the particles, such as volume fraction, mean diameter, mass density, or carrier phase flow properties. In this brief review, the main physical concepts related to the most important physical aspects of turbulence modulation are summarized. Different criteria used to distinguish the enhancement or the attenuation effects of the particles on the carrier phase flows are recalled. For the interest of large-scale industrial applications, several theoretical,experimental and empirical approaches are discussed, which provides an interesting framework for the study of the effect of particles on turbulence behavior modification.Guodong Gai Abdellah Hadjadj Sergey Kudriakov Olivier Thomine 2020Theoretical & Applied Mechanics Letters2020,10,4:0
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