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The book offers a comprehensive report on the design and
optimization of a thermochemical heat storage system for use in
buildings. It combines theoretical and experimental work, with a
special emphasis on model-based methods. It describes the numerical
modeling of the heat exchanger, which allows recovery of about two
thirds of the waste heat from both solar and thermal energy. The
book also provides readers with a snapshot of current research on
thermochemical storage systems, and an in-depth review of the most
important concepts and methods in thermal management modeling. It
represents a valuable resource for students, engineers and
researchers interested in thermal energy storage processes, as well
as for those dealing with modeling and 3D simulations in the field
of energy and process engineering.
The book offers a comprehensive report on the design and
optimization of a thermochemical heat storage system for use in
buildings. It combines theoretical and experimental work, with a
special emphasis on model-based methods. It describes the numerical
modeling of the heat exchanger, which allows recovery of about two
thirds of the waste heat from both solar and thermal energy. The
book also provides readers with a snapshot of current research on
thermochemical storage systems, and an in-depth review of the most
important concepts and methods in thermal management modeling. It
represents a valuable resource for students, engineers and
researchers interested in thermal energy storage processes, as well
as for those dealing with modeling and 3D simulations in the field
of energy and process engineering.
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