Simulation Foundations, Methods and Applications Ser.: Modelling and Simulation of Diffusive Processes : Methods and Applications by Naveen Kumar (2014, Hardcover)

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About this product

Product Identifiers

PublisherSpringer International Publishing A&G
ISBN-103319056565
ISBN-139783319056562
eBay Product ID (ePID)22038523904

Product Key Features

Number of PagesXii, 339 Pages
Publication NameModelling and Simulation of Diffusive Processes : Methods and Applications
LanguageEnglish
Publication Year2014
SubjectComputer Simulation, Life Sciences / Biology, Applied, Physics / General
TypeTextbook
AuthorNaveen Kumar
Subject AreaMathematics, Computers, Science
SeriesSimulation Foundations, Methods and Applications Ser.
FormatHardcover

Dimensions

Item Weight252 Oz
Item Length9.3 in
Item Width6.1 in

Additional Product Features

Intended AudienceScholarly & Professional
Dewey Edition23
Number of Volumes1 vol.
IllustratedYes
Dewey Decimal530.415015118
Table Of ContentDiffusive Processes and Modeling.- Diffusion and Transport of Molecules in Living Cells.- Modeling the Diffusion and Transport of Suspended Sediment in Open Channels, Using Two-Phase Flow Theory.- Mathematical Modeling of Peristaltic Pumping of Nano-Fluids.- Numerical Study on Isotachophoretic Separation of Ionic Samples in Microfluidics.- Thermal Characterization of Non-Homogeneous Media.- Scale Dependent Porous Dispersion Resulting from the Cumulative Effects of Velocity Fluctuations.- Modeling Nitrogen Fate and Transport at the Sediment-Water Interface.- Modeling Groundwater Flow in Unconfined Aquifers.- Two-Dimensional Solute Transport from a Varying Pulse-Type Point Source.- The Problem of Futile Cycles in Metabolic Flux Modeling.- Contaminant Concentration Prediction Along Unsteady Groundwater Flow.- Wavelet-Multigrid Method for Solving Modified Reynolds Equation Modeling Synovial Fluid Flow in a Normal Human Knee Joint.- A Basic Concept on Modeling Soil Organic Carbon.- Crop Growth Simulation Modeling.
SynopsisComputer simulation and mathematical modelling are the most important approaches in the quantitative analysis of the diffusive processes fundamental to many physical, chemical, biological, and geological systems. This comprehensive text/reference addresses the key issues in the Modelling and Simulation of Diffusive Processes from a broad range of different application areas. Applying an holistic approach, the book presents illuminating viewpoints drawn from an international selection of experts across a wide spectrum of disciplines, from computer science, mathematics and engineering, to natural resource management, environmental sciences, applied geo-sciences, agricultural sciences, and theoretical medicine. Topics and features: presents a detailed introduction to diffusive processes and modelling; discusses diffusion and molecular transport in living cells, and suspended sediment in open channels; examines the mathematical modelling of peristaltic transport of nanofluids, and isotachophoretic separation of ionic samples in microfluidics; reviews thermal characterization of non-homogeneous media, and scale-dependent porous dispersion resulting from velocity fluctuations; describes the modelling of nitrogen fate and transport at the sediment-water interface, and groundwater flow in unconfined aquifers; investigates two-dimensional solute transport from a varying pulse type point source, and futile cycles in metabolic flux modelling; studies contaminant concentration prediction along unsteady groundwater flow, and modelling synovial fluid flow in human joints; explores the modelling of soil organic carbon, and crop growth simulation. This interdisciplinary volume will be invaluable to researchers, lecturers and graduate students from such diverse fields as computer science, mathematics, hydrology, agriculture and biology., This book addresses the key issues in the modeling and simulation of diffusive processes from a wide spectrum of different applications across a broad range of disciplines. Features: discusses diffusion and molecular transport in living cells and suspended sediment in open channels; examines the modeling of peristaltic transport of nanofluids, and isotachophoretic separation of ionic samples in microfluidics; reviews thermal characterization of non-homogeneous media and scale-dependent porous dispersion resulting from velocity fluctuations; describes the modeling of nitrogen fate and transport at the sediment-water interface and groundwater flow in unconfined aquifers; investigates two-dimensional solute transport from a varying pulse type point source and futile cycles in metabolic flux modeling; studies contaminant concentration prediction along unsteady groundwater flow and modeling synovial fluid flow in human joints; explores the modeling of soil organic carbon and crop growth simulation.
LC Classification NumberQA76.9.C65

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