Computational Methods in Multiphase Flow
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Computational Methods in Multiphase Flow

Computational Methods in Multiphase Flow

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About the Book

Multiphase flows are found in all areas of technology, at all length scales and flow regimes and can involve compressible or incompressible linear or nonlinear, fluids. However, although they are ubiquitous, multiphase flows continue to be one of the most challenging areas of computational mechanics, with numerous problems as yet unsolved. Advanced computational and experimental methods are often required to solve the equations that describe such complex problems. The many challenges that must be faced in solving them include modelling nonlinear fluids, modelling and tracking interfaces, dealing with multiple length scales, characterising phase structures, and treating drop break-up and coalescence. It is important to validate models, which calls for the use of expensive and difficult experimental techniques. This book presents contributions on the latest research in the techniques for solving multiphase flow problems, presented at the seventh in a biennial series of conferences on the subject that began in 2001.Featured topics include: Multiphase Flow Simulation; Multiphase Flow Phenomena in Fire Suppression; Interface Behaviour; Bubble and Drop Dynamics; Flow in Porous Media; Computational Methods; Experimental Measurements; Oil and Gas Applications.

Table of Contents:
Contents Section 1: Multiphase flow simulation Assessment of static bed height and particle diameter on the hydrodynamic behavior of a spouted bed; Morphology of shock-accelerated multiphase flow: experiment and modelling; Modelling plasma flow with particle classes for different charge carriers and neutral particles; Use of Euler free surface flow analysis to provide appropriate injection conditions in Euler-Lagrange numerical models; Development, verification and application of numerical model for coupled free surface and liquid metal flow calculation in EM field; Air-water two-phase flow through U-bend, sudden expansion and sudden contraction in rectangular mini-channels; Large scale simulation of high pressure water mist systems; Comparison of drift-flux and multi-fluid approaches to modeling of multiphase flow in oil and gas wells; Numerical study of the churn-slug transition dynamics in vertical upward air-water flows; Extension of the 1-D characteristic open boundary conditions to the diffuse interface model; Morphology of shock-accelerated multiphase flow: experiment and modelling; Flows of particle-laden Bingham fluids in a Hele-Shaw cell; Particle interactions in oscillatory Stokes flow; Parametric study of multiphase flow in potential Barents Sea pipelines from Fedyn Arch to shore; Flux corrected transport solver for solving 1D multiphase equations for drilling applications Section 2: Multiphase flow phenomena in fire suppression (Special session organised by K. V. Meredith) Rupture of thin liquid films under the influence of external heat flux; Evaporation and heat transfer from thin water films on vertical panels in simulated fire conditions; Impact of non-uniform surface flows on fire suppression of an idealized commodity; Effect of water mist on temperature and burning velocity of stretched propane-air premixed flames; Experimental study of the impingement process of a liquid droplet upon a corrugated cardboard surface; Simplified modeling of sprinkler head fluid mechanics Section 3: Interface behaviour Flow and motion behavior of particle suspensions in shear flow over a rough surface; Modelling of microbubble coalescence; Global eigenmodes of free-interface vertical liquid sheet flows Section 4: Bubble and drop dynamics Generating work from macro cavities in superheated liquids; Design and testing of instrumentation for multi-phase flow sampling and local void fraction measurement; Study on water flow field around a stationary air bubble attached at the top wall of a circular pipe Section 5: Flow in porous media Relating solute and gas dispersion in gravel at different transport velocities; Investigation of the effect of compression on a soft fibrous porous medium Section 6: Computational methods One-dimensional turbulent mass transfer at air-water interfaces: details of discontinuities of derivatives using the RSW method; CFD implementation and experimental validation of the Chen model for heat transfer in nucleate boiling; CFD simulation of a CT scan oral-nasal extrathoracic model; SPH modelling of the interaction between free-surface flows of a viscoplastic fluid and a structure Section 7: Experimental measurements Unexpected behaviour of microbubbles immediately at the aerator exit; Experimental investigation of slug pattern in a horizontal two-phase flow; Effect of 180 bends on gas/liquid flows in vertical upward and downward pipes; Application of the gamma radiation method in analysing the effect of liquid viscosity and flow variables on slug frequency in high viscosity oil-gas horizontal flow; Horizontal air-water flow pattern recognition; Experimental observations of cohesive sediment dynamics in aquaculture recirculation tanks Section 8: Oil and gas applications Pore-scale observation of surfactant flooding for weekly water-wet porous media: the effect of gas injection to improve oil recovery; Near well simulations of heavy oil production with ICD completion; Technical challenges and solutions in a closed loop MEG regeneration system for gas field offshore, UK;On the development of integrated sensor for multiphase measurements


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Product Details
  • ISBN-13: 9781845647353
  • Publisher: WIT Press
  • Publisher Imprint: WIT Press
  • No of Pages: 557
  • ISBN-10: 1845647351
  • Publisher Date: 03 Jul 2013
  • Binding: Digital (delivered electronically)


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