Búsqueda avanzada
Buscar
 

Entra en BiblioEteca...

Disfruta de todo el potencial de biblioEteca entrando con tu usuario...

 

MULTIPHASE FLOW DYNAMICS 4


AUTOR: ; ND
 
 
Anterior
  • Portada de MULTIPHASE FLOW DYNAMICS 4

    9783540929178

  • Portada de MULTIPHASE FLOW DYNAMICS 4

    9783642207488

Siguiente
 
Compartir: Compartir con un amigo de biblioeteca Compartir por email Compartir en Facebook Compartir Twitter Compartir en Tuenti Capturar código QR Añadir RSS

Sinópsis del libro:

  • Volume 4 of the successful book package "Multiphase Flow" is devoted to nuclear thermal hydraulics which is a substantial part of nuclear reactor safety. It provides knowledge and mathematical tools for adequate description of the process of transferring the fission heat released in materials due to nuclear reactions into its environment. It step by step introduces into the heat release inside the fuel, temperature fields in the fuels, the simple boiling flow in a pipe described using ideas of different complexity like equilibrium, non equilibrium, homogeneity, non homogeneity. Then the simple three-fluid boiling flow in a pipe is described by gradually involving the mechanisms like entrainment and deposition, dynamic fragmentation, collisions, coalescence, turbulence. All heat transfer mechanisms are introduced gradually discussing their uncertainty. Different techniques are introduced like boundary layer treatments or integral methods. Comparisons with experimental data at each step demonstrate the success of the different ideas and models. After an introduction of the design of the reactor pressure vessels for pressurized and boiling water reactors the accuracy of the modern methods is demonstrated using large number of experimental data sets for steady and transient flows in heated bundles. Starting with single pipe boiling going through boiling in a rod bundles the analysis of complete vessel including the reactor is finally demonstrated. Then powerful method for non-linear stability analysis of flow boiling and condensation is introduced. Models are presented and their accuracies are investigated for describing critical multiphase flow at different level of complexity. Basics of designing of steam generators, moisture separators and emergency condensers are presented. Methods for analyzing a complex pipe network flows with components like pumps, valves etc. are also presented. Methods for analysis of important aspects of the severe accidents like melt-water interactions, external cooling and cooling of layers of molten nuclear reactor material are presented. Valuable sets of thermo-physical and transport properties for severe accident analysis for the following materials: uranium dioxide, zirconium dioxide, stainless steel, zirconium, aluminum, aluminum oxide, silicon dioxide, iron oxide, molybdenum, boron oxide, reactor corium, sodium, lead, bismuth, and lead-bismuth eutectic alloy. The emphasis is on the complete and consistent thermo dynamical sets of analytical approximations appropriate for computational analysis. Therefore the book presents a complete coverage of the modern Nuclear Thermal Hydrodynamics.

    Idioma: INGLÉS

  • The present Volume 4 of the successful monograh package ?Multiphase Flow Dynamics?is devoted to selected Chapters of the multiphase fluid dynamics that are important for practical applications but did not find place in the previous volumes. The state of the art of the turbulence modeling in multiphase flows is presented. As introduction, some basics of the single phase boundary layer theory including some important scales and flow oscillation characteristics in pipes and rod bundles are presented. Then the scales characterizing the dispersed flow systems are presented. The description of the turbulence is provided at different level of complexity: simple algebraic models for eddy viscosity, simple algebraic models based on the Boussinesq hypothesis, modification of the boundary layer share due to modification of the bulk turbulence, modification of the boundary layer share due to nucleate boiling. The role of the following forces on the mathematical description of turbulent flows is discussed: the lift force, the lubrication force in the wall boundary layer, and the dispersion force. A pragmatic generalization of the k-eps models for continuous velocity field is proposed containing flows in large volumes and flows in porous structures. A Methods of how to derive source and sinks terms for multiphase k-eps models is presented. A set of 13 single- and two phase benchmarks for verification of k-eps models in system computer codes are provided and reproduced with the IVA computer code as an example of the application of the theory. This methodology is intended to help other engineers and scientists to introduce this technology step-by-step in their own engineering practice.

    In many practical application gases are solved in liquids under given conditions, released under other conditions and therefore affecting technical processes for good of for bad. Useful information on the solubility of oxygen, nitrogen, hydrogen and carbon dioxide in water under large interval of pressures and temperatures is collected, and appropriate mathematical approximation functions are provided. In addition methods for the computation of the diffusion coefficients are described. With this information solution and dissolution dynamics in multiphase fluid flows can be analyzed. For this purpose the non-equilibrium absorption and release on bubble, droplet and film surfaces under different conditions is mathematically described.

    A systematic set of internally consistent state equations for diesel fuel gas and liquid valid in broad range of changing pressure and temperature is provided.

    This new second edition includes various updates, extensions, improvements and corrections.

    In many practical application gases are solved in liquids under given conditions, released under other conditions and therefore affecting technical processes for good of for bad. Useful information on the solubility of oxygen, nitrogen, hydrogen and carbon dioxide in water under large interval of pressures and temperatures is collected, and appropriate mathematical approximation functions are provided. In addition methods for the computation of the diffusion coefficients are described. With this information solution and dissolution dynamics in multiphase fluid flows can be analyzed. For this purpose the non-equilibrium absorption and release on bubble, droplet and film surfaces under different conditions is mathematically described.

    A systematic set of internally consistent state equations for diesel fuel gas and liquid valid in broad range of changing pressure and temperature is provided.

    This new second edition includes various updates, extensions, improvements and corrections.

    Idioma: INGLÉS

 
 

Clasificador

Según nuestros usuarios

RIGUROSO
Riguroso

Determina lo preciso o impreciso que es este libro con respecto a lo que se cuenta en el mismo. 0 significa que es completamente impreciso y 10 que cuenta es rigurosamente verídico

Más información
DIVERTIDO
Divertido

Determina lo divertido que te ha resultado el libro: 0-aburrido 10-muy divertido

Más información
COMPLEJO
Complejo

Determinamos lo complejo que nos ha resultado la lectura del libro. Desde el nivel más bajo, que indica que es un texto secillo de comprender hasta el valor máximo que indica que es complejo de comprender

Más información
SORPRENDE
Sorprende

Indica lo sorprendente que resulta el argumento del libro, desde 0: previsible hasta 10: totalmente desconcertante y sorprendente

Más información
 
 

Etiquetas de otros usuarios

Así han etiquetado este libro más usuarios

Así han etiquetado otros usuarios este libro. Si ves acertada su elección puedes añadir la etiqueta con un simple clic a tus etiquetas

 
Publicidad La Asistenta La asistenta
 
 

Comentarios de los lectores

 
 
 

Yo Leo

Información para lectores

Anillo de blogs

¿Tienes un blog?

Paga si te gusta

La forma de pago del futuro...

BiblioEtecarios

Ayudanos con los libros

Yo Escribo

Si eres autor, descubre más...

Ayuda

Todo lo que puedes hacer en la web
C/ Parque Bujaruelo, 37, 1C.
28924 Alcorcón (Madrid)
Tel/Fax : 91 288 73 76
E-mail : info@biblioeteca.com

BiblioEteca en Google Plus BiblioEteca en Rss

 
Copyright © 2021 BiblioEteca Technologies SL - Todos los derechos reservados