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Advanced Computational Techniques for Heat and Mass Transfer in Food Processing - Advanced Computational Techniques for Heat and Mass Transfer in Food Processing (Hardcover)
Loot Price: R5,019
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Advanced Computational Techniques for Heat and Mass Transfer in Food Processing - Advanced Computational Techniques for Heat and Mass Transfer in Food Processing (Hardcover)
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Computational methods have risen as a powerful technique for
exploring the system phenomena and solving real-life problems.
Currently, there are two principle computational approaches for
system analysis: continuous and discrete. In the continuous
approach, the governing equations can be obtained by applying the
fundamental laws, such as conservation of mass, momentum, and
energy over an infinitesimal control volume. On the other hand, the
discrete approach concentrates on mimicking the molecular movement
within the system. Both approaches have pros and cons, and
continuous development and improvement in the existing
computational methods are ongoing. Advanced Computational
Techniques for Heat and Mass Transfer in Food Processing provides,
in a single source, information on the use of methods based on
numerical and computational analysis as applied in food science and
technology. It explores the use of various numerical/computational
techniques for the simulation of fluid flow and heat and mass
transfer within food products. Key Features: Explores various
numerical techniques used for modeling and validation Describes the
knowhow of numerical and computational techniques for food process
operations Covers a detailed numerical or computational approach of
the principles of heat and mass transfer in the food processing
operation Discusses the detailed computational simulation procedure
of the food operation Recent years have witnessed a rapid
development in the field of computational techniques owing to its
abundant benefit to the food processing industry. The relevance of
advanced computational methods has helped in understanding the
fundamental physics of thermal and hydrodynamic behavior that can
provide benefits to the food processing industry in numerous
applications. As a single information source for those interested
in the use of methods based on numerical and computational analysis
as applied in food science and technology, this book will ably
serve any food academician or researcher in learning the advanced
numerical techniques exploring fluid flow, crystallization, and
other food processing operations.
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