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Solid-Liquid Thermal Energy Storage: Modeling and Applications
provides a comprehensive overview of solid-liquid phase change
thermal storage. Chapters are written by specialists from both
academia and industry. Using recent studies on the improvement,
modeling, and new applications of these systems, the book discusses
innovative solutions for any potential drawbacks. This book:
Discusses experimental studies in the field of solid-liquid phase
change thermal storage Reviews recent research on phase change
materials Covers various innovative applications of phase change
materials (PCM) on the use of sustainable and renewable energy
sources Presents recent developments on the theoretical modeling of
these systems Explains advanced methods for enhancement of heat
transfer in PCM This book is a reference for engineers and industry
professionals involved in the use of renewable energy systems,
energy storage, heating systems for buildings, sustainability
design, etc. It can also benefit graduate students taking courses
in heat transfer, energy engineering, advanced materials, and
heating systems.
Focusing on heat transfer in porous media, this book covers recent
advances in nano and macro' scales. Apart from introducing heat
flux bifurcation and splitting within porous media, it highlights
two-phase flow, nanofluids, wicking, and convection in bi-disperse
porous media. New methods in modeling heat and transport in porous
media, such as pore-scale analysis and Lattice-Boltzmann methods,
are introduced. The book covers related engineering applications,
such as enhanced geothermal systems, porous burners, solar systems,
transpiration cooling in aerospace, heat transfer enhancement and
electronic cooling, drying and soil evaporation, foam heat
exchangers, and polymer-electrolyte fuel cells.
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