Buch, Englisch, 408 Seiten, Format (B × H): 156 mm x 234 mm
Reihe: Application Tribology: Materials, Design, Manufacturing and Testing
Phenomena, Complexities and Applications
Buch, Englisch, 408 Seiten, Format (B × H): 156 mm x 234 mm
Reihe: Application Tribology: Materials, Design, Manufacturing and Testing
ISBN: 978-1-041-22817-2
Verlag: Taylor & Francis Ltd
The text explains the fundamental mechanisms and complexities involved in two-phase flow systems. It presents the physical and rheological properties of slurries, solid-liquid interactions, and the flow regimes. The book focuses on sector-specific use cases, including energy, mining, and processing systems. It highlights the use of machine learning models for predicting the rate of erosion based on experimental and material data.
This book:
· Focuses on modelling approaches such as computational fluid dynamics, multiphase flow solvers, and simulation-based predictive tools relevant to both academic and industrial applications.
· Examines hydraulic issues associated with slurry transportation, such as pressure decline, loss of corrected energy, and the impacts of vortex production.
· Explains the dynamics of slurry erosion, inspecting the mechanisms under the influence of impact forces and wear processes, as well as the behaviour of materials.
· Discusses surface modification strategies, including thermal spraying, laser cladding, and surface alloying.
· Demonstrates machine learning models used for predicting the rate of erosion based on experimental and material data.
It is primarily written for senior undergraduates, graduate students, and academic researchers in mechanical engineering, aerospace engineering, fluid dynamics, heat transfer, manufacturing engineering, production engineering, and materials science.
Zielgruppe
Academic, Postgraduate, and Undergraduate Advanced
Autoren/Hrsg.
Fachgebiete
Weitere Infos & Material
1. Fundamentals of Two-Phase Flows: Phenomenon, Properties, and Complexities. 2. Applications of Two-Phase Flow Systems in Mining and Mineral Processing: A Spiral Separators Case. 3. Numerical and Computational Analysis of Two-Phase Flows: A Guide for Simulation of Pipelines. 4. Complexities in Two-Phase Flows: Head Loss, Turbulence, and Vortices. 5. Two-Phase Flow for Enhanced Thermal Management in Energy Systems. 6. Heat Transfer and Fluid Flow Analysis through Microchannel. 7. Slurry Erosion: Phenomenon, Mechanisms, and Engineering Applications. 8. Coating Techniques for Protection against Solid Particle Erosion. 9. Surface Cladding for Protection against Particulate Erosion. 10. Surface and Heat Treatment Processes for Protection against Slurry Erosion: Nitriding, Carburising, and Laser Surface Treatment. 11. Case Study on Non-Newtonian Behaviour and Flow Complexities of Coal and Coal-Ash Slurries in Two-Phase Pipeline Transport. 12. Image Processing-Based Case Study: Analysis of Solid Particles and Eroded Surfaces. 13. Physico-Chemical Properties, Flowability, and Leachability of Coal and Coal-Ash Based Two-Phase Suspensions: A Slurry Transportation Case. 14. Machine Learning Based Prediction of Slurry Erosion in Coated Materials.




