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This book discusses the design and scheduling of residential,
industrial, and commercial energy hubs, and their integration into
energy storage technologies and renewable energy sources. Each
chapter provides theoretical background and application examples
for specific power systems including, solar, wind, geothermal, air
and hydro. Case-studies are included to provide engineers,
researchers, and students with the most modern technical and
intelligent approaches to solving power and energy integration
problems with special attention given to the environmental and
economic aspects of energy storage systems.
This book discusses the design and scheduling of residential,
industrial, and commercial energy hubs, and their integration into
energy storage technologies and renewable energy sources. Each
chapter provides theoretical background and application examples
for specific power systems including, solar, wind, geothermal, air
and hydro. Case-studies are included to provide engineers,
researchers, and students with the most modern technical and
intelligent approaches to solving power and energy integration
problems with special attention given to the environmental and
economic aspects of energy storage systems.
This book explores the different aspects of energy in human life
especially expressing the advanced technologies in renewable energy
resources. Due to the environmental pollution caused by fossil
fuels and the non-permanent nature of these resources, the move
towards the use of renewable energy has accelerated. In recent
years, many attempts have been made to improve energy systems'
performance by using multi-generation units, and these set-ups have
been analyzed from the perspective of energy, exergy, economics,
and environmental indicators. The book's primary goal is the effort
to introduce new methods for assessing and upgrading the synergy.
Therefore it examines sustainable practices such as
water-energy-food nexus in poly-generation units, novel
desalination systems, and smart greenhouses. One of the significant
issues in these energy systems is the storage methods; for
instance, carbon capture to reduce environmental pollution and the
hydrogen store for the utilization in supplementary fuel. Also,
robust optimization, uncertainty and risk-aware probabilistic
analysis, energy management, and power supply of sensitive places
such as oil rig platforms by renewables are examined.
This book explores the different aspects of energy in human life
especially expressing the advanced technologies in renewable energy
resources. Due to the environmental pollution caused by fossil
fuels and the non-permanent nature of these resources, the move
towards the use of renewable energy has accelerated. In recent
years, many attempts have been made to improve energy systems'
performance by using multi-generation units, and these set-ups have
been analyzed from the perspective of energy, exergy, economics,
and environmental indicators. The book's primary goal is the effort
to introduce new methods for assessing and upgrading the synergy.
Therefore it examines sustainable practices such as
water-energy-food nexus in poly-generation units, novel
desalination systems, and smart greenhouses. One of the significant
issues in these energy systems is the storage methods; for
instance, carbon capture to reduce environmental pollution and the
hydrogen store for the utilization in supplementary fuel. Also,
robust optimization, uncertainty and risk-aware probabilistic
analysis, energy management, and power supply of sensitive places
such as oil rig platforms by renewables are examined.
This book presents design principles, performance assessment and
robust optimization of different poly-generation systems using
renewable energy sources and storage technologies. Uncertainties
associated with demands or the intermittent nature of renewables
are considered in decision making processes. Economic and
environmental benefits of these systems in comparison with
traditional fossil fuels based ones are also provided. Case
studies, numerical results, discussions, and concluding remarks
have been presented for each proposed system/strategy. This book is
a useful tool for students, researchers, and engineers trying to
design and evaluate different zero-energy and zero-emission
stand-alone grids.
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