Now in a fresh updated and extended edition, this third volume of the series on multiphase flow dynamics focuses on turbulence and includes the basics of the single-phase boundary layer theory including important scales and flow oscillation characteristics.
Now in a fresh updated and extended edition, this third volume of the series on multiphase flow dynamics focuses on turbulence and includes the basics of the single-phase boundary layer theory including important scales and flow oscillation characteristics.
From the content: Some basics of the single phase boundary layer theory. Introduction to turbulence of multi phase flows. Sources for fine resolution outside the boundary layer. Source terms for k eps models in porous structures. Influence of the interfacial forces on the turbulence structure. Particle¿eddy interactions. Two group k eps models. Set of benchmarks for verification of k eps models in system computer codes. Simple algebraic models for eddy viscosity in bubbly flow. Large eddy simulation.
Heat release in the reactor core.- Temperature inside the fuel elements.- The "simple" steady boiling flow in a pipe.- The "simple" steady three-fluid boiling flow in a pipe.- Core thermal hydraulic.- Flow boiling and condensation stability analysis.- Critical multiphase flow.- Steam generators.- Moisture separation.- Pipe networks.- Some auxiliary systems.- Emergency condensers.- Core degradation.- Melt-water interaction.- Coolability of layers of molten reactor material.- External cooling of reactor vessels during severe accident.- Thermo-physical properties for severe accident analysis.
From the content: Some basics of the single phase boundary layer theory. Introduction to turbulence of multi phase flows. Sources for fine resolution outside the boundary layer. Source terms for k eps models in porous structures. Influence of the interfacial forces on the turbulence structure. Particle¿eddy interactions. Two group k eps models. Set of benchmarks for verification of k eps models in system computer codes. Simple algebraic models for eddy viscosity in bubbly flow. Large eddy simulation.
Heat release in the reactor core.- Temperature inside the fuel elements.- The "simple" steady boiling flow in a pipe.- The "simple" steady three-fluid boiling flow in a pipe.- Core thermal hydraulic.- Flow boiling and condensation stability analysis.- Critical multiphase flow.- Steam generators.- Moisture separation.- Pipe networks.- Some auxiliary systems.- Emergency condensers.- Core degradation.- Melt-water interaction.- Coolability of layers of molten reactor material.- External cooling of reactor vessels during severe accident.- Thermo-physical properties for severe accident analysis.
Rezensionen
From the reviews: "The work by Kolev presents a very careful and detailed introduction to the methodology of nuclear thermal hydraulics providing knowledge and mathematical tools for adequate description of processes in materials due to nuclear reactions. ... well written and readable, and contains a lot of original and excellently prepared figures in color form. Results of numerical solutions are given graphically and in tabular form. ... will be of interest to a wide range of specialists working in the area of multiphase flow dynamics and heat transfer." (Ioan Pop, Zentralblatt MATH, Vol. 1175, 2010)
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