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2014 | Buch

Flow and Heat and Mass Transfer in Laminar and Turbulent Mist Gas-Droplets Stream over a Flat Plate

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In this book the author presents selected challenges of thermal-hydraulics modeling of two-phase flows in minichannels with change of phase. These encompass the common modeling of flow boiling and flow condensation using the same expression. Approaches to model these two respective cases show, however, that experimental data show different results to those obtained by methods of calculation of heat transfer coefficient for respective cases. Partially that can be devoted to the fact that there are non-adiabatic effects present in both types of phase change phenomena which modify the pressure drop due to friction, responsible for appropriate modelling. The modification of interface shear stresses between flow boiling and flow condensation in case of annular flow structure may be considered through incorporation of the so called blowing parameter, which differentiates between these two modes of heat transfer. On the other hand, in case of bubbly flows, the generation of bubbles also modifies the friction pressure drop by the influence of heat flux. Presented are also the results of a peculiar M-shape distribution of heat transfer coefficient specific to flow boiling in minichannels. Finally, some attention is devoted to mathematical modeling of dryout phenomena. A five equation model enabling determination of the dryout location is presented, where the mass balance equations for liquid film, droplets and gas are supplemented by momentum equations for liquid film and two-phase core.

Inhaltsverzeichnis

Frontmatter
Chapter 1. Flow Dynamics, Heat and Mass Transfer in Two-Phase Laminar and Turbulent Boundary Layer on a Flat Plate with and without Heat Transfer Between Solid Wall and Flow: The State-of-the-Art
Abstract
In the section the results of experimental and numerical studies of disperse particles behavior and their influence on the parameters of gas flow in the laminar and turbulent boundary layers are given and analyzed. Extensive experimental and theoretical information on the dynamics and heat and mass transfer in the two-phase laminar and turbulent systems is given in the reviews (Brennen 2006; Clift et al. 1978; Crowe et al. 1998; Drew 1983; Friedlander 1977; Ishii 1975; Loth 2006; Michaelides 2006; Nigmatulin 1991; Osiptsov 1997; Soo 1967; Varaksin 2007; Zaichik et al. 2008). Note that from the analysis of the now available experimental and numerical results it is obvious that influence of the particles on the near-wall flow may be of two kinds. First, the dispersed phase may effects the flow in the boundary layer for the account of its modification. Second, th e particles directly influence the flow in the boundary layer due to their inertial nature, namely for the account of the present dynamic and heat interface slip.
Viktor I. Terekhov, Maksim A. Pakhomov
Chapter 2. Laminar Mist Flows Over a Flat Plate with Evaporation
Abstract
The experimental and numerical study of laminar two-phase boundary layer with evaporating liquid droplets performed in relatively small number of works (Bhatti and Savery 1975; Heyt and Larsen 1970; Hishida et al. 1980, 1982; Osiptsov and Shapiro 1989, 1993; Osiptsov and Korotkov 1998; Pakhomov and Terekhov 2012; Terekhov and Pakhomov 2002; Terekhov et al. 2000; Trela 1981). Nevertheless investigation of such flows is a topical problem for various short channels that are widely used in different heat transfer equipment.
Viktor I. Terekhov, Maksim A. Pakhomov
Chapter 3. Flow and Heat and Mass Transfer in a Laminar Gas-Droplets Boundary Layer
Abstract
In the chapter is considered the steady flow of the gas-droplets flow in the laminar and turbulent boundary layer taking into account evaporation of monodispersed droplets, interfacial interaction, particles deposition on the plate surface, heat transfer deposited particles with the wall and vapor diffusion in the gas–vapor mixture.
Viktor I. Terekhov, Maksim A. Pakhomov
Chapter 4. Numerical Modeling of Flow and Heat Transfer in a Turbulent Gas-Droplets Boundary Layer
Abstract
Wall-bounded turbulent gas-droplets flows with phase changes employ very often in a vide range of industrial processes. The addition of the particulate phase to the already complicated turbulent flow substantially increased the description of the problem.
Viktor I. Terekhov, Maksim A. Pakhomov
Chapter 5. Comparison with Experimental Data in a Flat Plate Turbulent Gas-Particles Boundary Layer
Abstract
Unlike for laminar boundary layer, we failed to come across in the literature measured data concerning the flow structure and heat transfer in turbulent mist gas-droplets flows over the flat vertical plate. That is why in the present section is given a comparison of our calculated data with available well-known experimental data on the structure of turbulent boundary layer air flows laden with solid particles (Rogers and Eaton 1990, 1991).
Viktor I. Terekhov, Maksim A. Pakhomov
Backmatter
Metadaten
Titel
Flow and Heat and Mass Transfer in Laminar and Turbulent Mist Gas-Droplets Stream over a Flat Plate
verfasst von
Victor I. Terekhov
Maksim A. Pakhomov
Copyright-Jahr
2014
Electronic ISBN
978-3-319-04453-8
Print ISBN
978-3-319-04452-1
DOI
https://doi.org/10.1007/978-3-319-04453-8

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