Numerical Study of Drying in Porous Media

Numerical Study of Drying in Porous Media PDF Author: Suresh Kumar Nadupuri
Publisher:
ISBN:
Category :
Languages : en
Pages : 96

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Numerical Study of Drying in Porous Media

Numerical Study of Drying in Porous Media PDF Author: Suresh Kumar Nadupuri
Publisher:
ISBN:
Category :
Languages : en
Pages : 96

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Book Description


Heat and Mass Transfer in Drying of Porous Media

Heat and Mass Transfer in Drying of Porous Media PDF Author: Peng Xu
Publisher: CRC Press
ISBN: 1351019201
Category : Science
Languages : en
Pages : 206

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Book Description
Heat and Mass Transfer in Drying of Porous Media offers a comprehensive review of heat and mass transfer phenomena and mechanisms in drying of porous materials. It covers pore-scale and macro-scale models, includes various drying technologies, and discusses the drying dynamics of fibrous porous material, colloidal porous media and size-distributed particle system. Providing guidelines for mathematical modeling and design as well as optimization of drying of porous material, this reference offers useful information for researchers and students as well as engineers in drying technology, food processes, applied energy, mechanical, and chemical engineering.

Heat and Mass Transfer in Drying of Porous Media

Heat and Mass Transfer in Drying of Porous Media PDF Author: Peng Xu
Publisher: CRC Press
ISBN: 135101921X
Category : Science
Languages : en
Pages : 210

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Book Description
Heat and Mass Transfer in Drying of Porous Media offers a comprehensive review of heat and mass transfer phenomena and mechanisms in drying of porous materials. It covers pore-scale and macro-scale models, includes various drying technologies, and discusses the drying dynamics of fibrous porous material, colloidal porous media and size-distributed particle system. Providing guidelines for mathematical modeling and design as well as optimization of drying of porous material, this reference offers useful information for researchers and students as well as engineers in drying technology, food processes, applied energy, mechanical, and chemical engineering.

Numerical Simulation of Isothermal Drying in Porous Media with Efficient Time Stepping Strategies

Numerical Simulation of Isothermal Drying in Porous Media with Efficient Time Stepping Strategies PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 27

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Mathematical Modeling and Numerical Techniques in Drying Technology

Mathematical Modeling and Numerical Techniques in Drying Technology PDF Author: Ian Turner
Publisher: CRC Press
ISBN: 148229219X
Category : Science
Languages : en
Pages : 696

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Book Description
Offers information necessary for the development of mathematical models and numerical techniques to solve specific drying problems. The book addresses difficult issues involved with the drying equations of numerical analysis, including mesh generation, discretinization strategies, the nonlinear equation set and the linearized algebraic system, convergance criteria, time step control, experimental validation, optimum methods of visualization results, and more.

Drying of Porous Materials

Drying of Porous Materials PDF Author: Stefan Jan Kowalski
Publisher: Springer Science & Business Media
ISBN: 1402054807
Category : Technology & Engineering
Languages : en
Pages : 235

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Book Description
This book provides recent advances in research on drying of particulate and porous materials. It is based on a selection of papers presented at the XI Polish Drying Symposium 2005. The contributions cover theoretical, as well as experimental and modeling research on heat and mass transfer processes during drying of porous material and fluidized beds. The book is a pioneering contribution to the science and technology of drying of particulate solids.

Experimental and Numerical Analysis of the Effect of Local Non-uniformity on Convective Heat and Mass Transfer in Porous Media

Experimental and Numerical Analysis of the Effect of Local Non-uniformity on Convective Heat and Mass Transfer in Porous Media PDF Author: Huigang Zuo
Publisher:
ISBN:
Category :
Languages : en
Pages : 288

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Numerical Analysis of Heat and Mass Transfer in Porous Media

Numerical Analysis of Heat and Mass Transfer in Porous Media PDF Author: J.M.P.Q. Delgado
Publisher: Springer Science & Business Media
ISBN: 3642305326
Category : Technology & Engineering
Languages : en
Pages : 317

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Book Description
The purpose of ‘Numerical Analysis of Heat and Mass Transfer in Porous Media’ is to provide a collection of recent contributions in the field of computational heat and mass transfer in porous media. The main benefit of the book is that it discusses the majority of the topics related to numerical transport phenomenon in engineering (including state-of-the-art and applications) and presents some of the most important theoretical and computational developments in porous media and transport phenomenon domain, providing a self-contained major reference that is appealing to both the scientists, researchers and the engineers. At the same time, these topics encounter of a variety of scientific and engineering disciplines, such as chemical, civil, agricultural, mechanical engineering, etc. The book is divided in several chapters that intend to be a resume of the current state of knowledge for benefit of professional colleagues.

Heat and Mass Transfer Modelling During Drying

Heat and Mass Transfer Modelling During Drying PDF Author: Mohammad U.H. Joardder
Publisher: CRC Press
ISBN: 0429865538
Category : Science
Languages : en
Pages : 221

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Book Description
Most conventional dryers use random heating to dry diverse materials without considering their thermal sensitivity and energy requirements for drying. Eventually, excess energy consumption is necessary to attain a low-quality dried product. Proper heat and mass transfer modelling prior to designing a drying system for selected food materials can overcome these problems. Heat and Mass Transfer Modelling During Drying: Empirical to Multiscale Approaches extensively discusses the issue of predicting energy consumption in terms of heat and mass transfer simulation. A comprehensive mathematical model can help provide proper insight into the underlying transport phenomena within the materials during drying. However, drying of porous materials such as food is one of the most complex problems in the engineering field that is also multiscale in nature. From the modelling perspective, heat and mass transfer phenomena can be predicted using empirical to multiscale modelling. However, multiscale simulation methods can provide a comprehensive understanding of the physics of drying food materials. KEY FEATURES Includes a detailed discussion on material properties that are relevant for drying phenomena Presents an in-depth discussion on the underlying physics of drying using conceptual visual content Provides appropriate formulation of mathematical modelling from empirical to multiscale approaches Offers numerical solution approaches to mathematical models Presents possible challenges of different modelling strategies and potential solutions The objective of this book is to discuss the implementation of different modelling techniques ranging from empirical to multiscale in order to understand heat and mass transfer phenomena that take place during drying of porous materials including foods, pharmaceutical products, paper, leather materials, and more.

Upscaling Multiphase Flow in Porous Media

Upscaling Multiphase Flow in Porous Media PDF Author: D.B. Das
Publisher: Springer Science & Business Media
ISBN: 9781402035135
Category : Science
Languages : en
Pages : 276

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Book Description
This book provides concise, up-to-date and easy-to-follow information on certain aspects of an ever important research area: multiphase flow in porous media. This flow type is of great significance in many petroleum and environmental engineering problems, such as in secondary and tertiary oil recovery, subsurface remediation and CO2 sequestration. This book contains a collection of selected papers (all refereed) from a number of well-known experts on multiphase flow. The papers describe both recent and state-of-the-art modeling and experimental techniques for study of multiphase flow phenomena in porous media. Specifically, the book analyses three advanced topics: upscaling, pore-scale modeling, and dynamic effects in multiphase flow in porous media. This will be an invaluable reference for the development of new theories and computer-based modeling techniques for solving realistic multiphase flow problems. Part of this book has already been published in a journal. Audience This book will be of interest to academics, researchers and consultants working in the area of flow in porous media.