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Heat and Mass Transfer in Porous Materials.

By: Material type: TextTextSeries: Diffusion foundationsPublication details: Pfaffikon : Trans Tech Publications Inc., 2016.Description: 1 online resource (192 pages)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783035700435
  • 3035700435
Subject(s): Genre/Form: Additional physical formats: Print version:: Heat and Mass Transfer in Porous Materials.DDC classification:
  • 621.4022 23
LOC classification:
  • TJ260 .H438 2016eb
Online resources:
Contents:
Intro -- Heat and Mass Transfer in Porous Materials -- Preface -- Table of Contents -- Intermittent Drying of Porous Materials: A Review -- Fundamentals and Application of Osmotic Dehydration -- Heat and Mass Transfer in Holed Ceramic Material Using Lumped Model -- Displacement of Colloidal Dispersions in Porous Media: Experimental & Numerical Approaches -- Influence of High Temperature Heat Sources on the Moisture and Temperature Distribution in a Real/Virtual Foundry Sand Mould -- Nanofluid Impinging Jets in Porous Media -- Drying Kinetics of Building Materials: Brief Theory and Experimental Evaluation -- The Rising Damp in Cultural Heritage: From Physical and Numerical Analyse to Practical Application -- Towards an Exergy Analysis of Diffusive and Non-Diffusive Processes in Living Organisms -- Keyword Index -- Author Index.
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Electronic-Books Electronic-Books OPJGU Sonepat- Campus E-Books EBSCO Available

Print version record.

Intro -- Heat and Mass Transfer in Porous Materials -- Preface -- Table of Contents -- Intermittent Drying of Porous Materials: A Review -- Fundamentals and Application of Osmotic Dehydration -- Heat and Mass Transfer in Holed Ceramic Material Using Lumped Model -- Displacement of Colloidal Dispersions in Porous Media: Experimental & Numerical Approaches -- Influence of High Temperature Heat Sources on the Moisture and Temperature Distribution in a Real/Virtual Foundry Sand Mould -- Nanofluid Impinging Jets in Porous Media -- Drying Kinetics of Building Materials: Brief Theory and Experimental Evaluation -- The Rising Damp in Cultural Heritage: From Physical and Numerical Analyse to Practical Application -- Towards an Exergy Analysis of Diffusive and Non-Diffusive Processes in Living Organisms -- Keyword Index -- Author Index.

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