Tortuosity and Microstructure Effects in Porous Media : Classical Theories, Empirical Data and Modern Methods / / by Lorenz Holzer, Philip Marmet, Mathias Fingerle, Andreas Wiegmann, Matthias Neumann, Volker Schmidt.

This open access book presents a thorough look at tortuosity and microstructure effects in porous materials. The book delivers a comprehensive review of the subject, summarizing all key results in the field with respect to the underlying theories, empirical data available in the literature, modern m...

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Superior document:Springer Series in Materials Science, 333
:
TeilnehmendeR:
Place / Publishing House:Cham : : Springer International Publishing :, Imprint: Springer,, 2023.
Year of Publication:2023
Edition:1st ed. 2023.
Language:English
Series:Springer Series in Materials Science, 333
Physical Description:1 online resource (198 pages)
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spelling Holzer, Lorenz.
Tortuosity and Microstructure Effects in Porous Media [electronic resource] : Classical Theories, Empirical Data and Modern Methods / by Lorenz Holzer, Philip Marmet, Mathias Fingerle, Andreas Wiegmann, Matthias Neumann, Volker Schmidt.
1st ed. 2023.
Cham : Springer International Publishing : Imprint: Springer, 2023.
1 online resource (198 pages)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Springer Series in Materials Science, 2196-2812 ; 333
Chapter 1. Introduction -- Chapter 2. Review of theories and a classification of tortuosity types -- Chapter 3. Review of empirical data from literature - tortuosity-porosity relationships -- Chapter 4. Methodologies, workflows and calculation approaches -- Chapter 5. Towards a quantitative understanding of microstructure - property relationships -- Chapter 6. Summary and Conclusions. .
This open access book presents a thorough look at tortuosity and microstructure effects in porous materials. The book delivers a comprehensive review of the subject, summarizing all key results in the field with respect to the underlying theories, empirical data available in the literature, modern methodologies and calculation approaches, and quantitative relationships between microscopic and macroscopic properties. It thoroughly discusses up to 20 different types of tortuosity and introduces a new classification scheme and nomenclature based on direct geometric tortuosities, indirect physics-based tortuosities, and mixed tortuosities (geometric and physics-based). The book also covers recent progress in 3D imaging and image modeling for studying novel aspects of tortuosity and associated transport properties in materials, while providing a comprehensive list of available software packages for practitioners in the community. This book is a must-read for researchers and students in materials science and engineering interested in a deeper understanding of microstructure–property relationships in porous materials. For energy materials in particular, such as lithium-ion batteries, tortuosity is a key microstructural parameter that can greatly impact long-term material performance. Thus, the information laid out in this book will also greatly benefit researchers interested in computational modeling and design of next-generation materials, especially those for sustainability and energy applications.
Open Access
Porous materials.
Mathematical physics.
Materials.
Catalysis.
Force and energy.
Materials—Analysis.
Imaging systems.
Materials science—Data processing.
Thermodynamics.
Heat engineering.
Heat transfer.
Mass transfer.
Porous Materials.
Mathematical Physics.
Materials for Energy and Catalysis.
Imaging Techniques.
Computational Materials Science.
Engineering Thermodynamics, Heat and Mass Transfer.
3-031-30476-4
Marmet, Philip.
Fingerle, Mathias.
Wiegmann, Andreas.
Neumann, Matthias.
Schmidt, Volker.
language English
format Electronic
eBook
author Holzer, Lorenz.
spellingShingle Holzer, Lorenz.
Tortuosity and Microstructure Effects in Porous Media Classical Theories, Empirical Data and Modern Methods /
Springer Series in Materials Science,
Chapter 1. Introduction -- Chapter 2. Review of theories and a classification of tortuosity types -- Chapter 3. Review of empirical data from literature - tortuosity-porosity relationships -- Chapter 4. Methodologies, workflows and calculation approaches -- Chapter 5. Towards a quantitative understanding of microstructure - property relationships -- Chapter 6. Summary and Conclusions. .
author_facet Holzer, Lorenz.
Marmet, Philip.
Fingerle, Mathias.
Wiegmann, Andreas.
Neumann, Matthias.
Schmidt, Volker.
author_variant l h lh
author2 Marmet, Philip.
Fingerle, Mathias.
Wiegmann, Andreas.
Neumann, Matthias.
Schmidt, Volker.
author2_variant p m pm
m f mf
a w aw
m n mn
v s vs
author2_role TeilnehmendeR
TeilnehmendeR
TeilnehmendeR
TeilnehmendeR
TeilnehmendeR
author_sort Holzer, Lorenz.
title Tortuosity and Microstructure Effects in Porous Media Classical Theories, Empirical Data and Modern Methods /
title_sub Classical Theories, Empirical Data and Modern Methods /
title_full Tortuosity and Microstructure Effects in Porous Media [electronic resource] : Classical Theories, Empirical Data and Modern Methods / by Lorenz Holzer, Philip Marmet, Mathias Fingerle, Andreas Wiegmann, Matthias Neumann, Volker Schmidt.
title_fullStr Tortuosity and Microstructure Effects in Porous Media [electronic resource] : Classical Theories, Empirical Data and Modern Methods / by Lorenz Holzer, Philip Marmet, Mathias Fingerle, Andreas Wiegmann, Matthias Neumann, Volker Schmidt.
title_full_unstemmed Tortuosity and Microstructure Effects in Porous Media [electronic resource] : Classical Theories, Empirical Data and Modern Methods / by Lorenz Holzer, Philip Marmet, Mathias Fingerle, Andreas Wiegmann, Matthias Neumann, Volker Schmidt.
title_auth Tortuosity and Microstructure Effects in Porous Media Classical Theories, Empirical Data and Modern Methods /
title_new Tortuosity and Microstructure Effects in Porous Media
title_sort tortuosity and microstructure effects in porous media classical theories, empirical data and modern methods /
series Springer Series in Materials Science,
series2 Springer Series in Materials Science,
publisher Springer International Publishing : Imprint: Springer,
publishDate 2023
physical 1 online resource (198 pages)
edition 1st ed. 2023.
contents Chapter 1. Introduction -- Chapter 2. Review of theories and a classification of tortuosity types -- Chapter 3. Review of empirical data from literature - tortuosity-porosity relationships -- Chapter 4. Methodologies, workflows and calculation approaches -- Chapter 5. Towards a quantitative understanding of microstructure - property relationships -- Chapter 6. Summary and Conclusions. .
isbn 3-031-30477-2
3-031-30476-4
issn 2196-2812 ;
callnumber-first T - Technology
callnumber-subject TA - General and Civil Engineering
callnumber-label TA418
callnumber-sort TA 3418.9 P6
illustrated Not Illustrated
dewey-hundreds 600 - Technology
dewey-tens 620 - Engineering
dewey-ones 620 - Engineering & allied operations
dewey-full 620.116
dewey-sort 3620.116
dewey-raw 620.116
dewey-search 620.116
oclc_num 1393169607
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