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Energy is one of the most important topics of our time, and
renewable energy has been a long and still-unfolding story that has
taken decades to bring us to where we are today. Even after so much
progress, engineers and scientists are always still developing new
and innovative techniques, processes, equipment, and materials to
further the science and fulfill the mission of generating cleaner,
renewable energy for the world's consumption. This new
groundbreaking series, Advances in Renewable Energy, covers these
topics across the spectrum, including solar, wind, and other
renewable energy sources. This first volume in the series focuses
on solar energy, probably the fastest-growing and developing area
of renewable energy. With new materials and processes constantly
coming online, it is important for engineers and scientists to stay
abreast of the state-of-the-art in the field, and this volume does
just that. Covering not just the basics of the technology and
technological advances, the contributors delve into the financial
aspects of solar energy systems as well. They look at total costs,
not just initial costs, but the costs of maintenance, as well,
Covering nearly every aspect of solar energy systems and the latest
advances in the field, this is a must-have volume for any engineer,
scientist, student, or educator working in or studying solar
energy.
This is the most comprehensive and in-depth study of the theory and
practical applications of a new and groundbreaking method for the
energy industry to "go green" with renewable and alternative energy
sources. The global warming phenomenon as a significant
sustainability issue is gaining worldwide support for development
of renewable energy technologies. The term "polygeneration" is
referred to as "an energy supply system, which delivers more than
one form of energy to the final user." For example, electricity,
cooling and desalination can be delivered from a polygeneration
process. The polygeneration process in a hybrid solar thermal power
plant can deliver electricity with less impact on the environment
compared to a conventional fossil fuel-based power generating
system. It is also THE next generation energy production technique
with the potential to overcome the undesirable intermittence of
renewable energy systems. In this study, the polygeneration process
simultaneous production of power, vapor absorption refrigeration
(VAR) cooling and multi-effect humidification and dehumidification
(MEHD) desalination system from different heat sources in hybrid
solar-biomass (HSB) system with higher energy efficiencies (energy
and exergy), primary energy savings (PES) and payback period are
investigated, focusing on several aspects associated with hybrid
solar-biomass power generation installations, such as wide
availability of biomass resources and solar direct normal
irradiance (DNI), and other technologies. Thermodynamic evaluation
(energy and exergy) of HSB power has also been investigated, along
with the VAR cooling system, the modelling, simulation,
optimization and cost analysis of the polygeneration hybrid solar
biomass system, all accompanied by multiple case studies and
examples for practical applications. This volume provides the
researcher, student and engineer with the intellectual tool needed
for understanding new ideas in this rapidly emerging field. The
book is also intended to serve as a general source and reference
book for the professional (consultant, designer, contractor etc.)
who is working in the field of solar thermal, biomass, power plant,
polygeneration, cooling and process heat. It is a must-have for
anyone working in this field.
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