Drop, Bubble and Particle Dynamics in Complex Fluids / / edited by Pengtao Yue and Shahriar Afkhami.

The presence of drops, bubbles, and particles affects the behavior and response of complex multiphase fluids. In many applications, these complex fluids have more than one non-Newtonian component, e.g., polymer melts, liquid crystals, and blood plasma. In fact, most fluids exhibit non-Newtonian beha...

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Place / Publishing House:Basel, Switzerland : : MDPI - Multidisciplinary Digital Publishing Institute,, 2020.
Year of Publication:2020
Language:English
Physical Description:1 online resource (142 pages)
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spelling Drop, Bubble and Particle Dynamics in Complex Fluids / edited by Pengtao Yue and Shahriar Afkhami.
Basel, Switzerland : MDPI - Multidisciplinary Digital Publishing Institute, 2020.
1 online resource (142 pages)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Description based on publisher supplied metadata and other sources.
The presence of drops, bubbles, and particles affects the behavior and response of complex multiphase fluids. In many applications, these complex fluids have more than one non-Newtonian component, e.g., polymer melts, liquid crystals, and blood plasma. In fact, most fluids exhibit non-Newtonian behaviors, such as yield stress, viscoelastity, viscoplasticity, shear thinning, or shear thickening, under certain flow conditions. Even in the complex fluids composed of Newtonian components, the coupling between different components and the evolution of internal boundaries often lead to a complex rheology. Thus the dynamics of drops, bubbles, and particles in both Newtonian fluids and non-Newtonian fluids are crucial to the understanding of the macroscopic behavior of complex fluids. This Special Issue aims to gather a wide variety of papers that focus on drop, bubble and particle dynamics in complex fluids. Potential topics include, but are not limited to, drop deformation, rising drops, pair-wise drop interactions, drop migration in channel flows, and the interaction of particles with flow systems such as pastes and slurries, glasses, suspensions, and emulsions. We emphasize numerical simulations, but also welcome experimental and theoretical contributions.
Civil engineering.
Technology.
3-03928-297-2
Afkhami, Shahriar, editor.
Yue, Pengtao, editor.
language English
format eBook
author2 Afkhami, Shahriar,
Yue, Pengtao,
author_facet Afkhami, Shahriar,
Yue, Pengtao,
author2_variant s a sa
p y py
author2_role TeilnehmendeR
TeilnehmendeR
title Drop, Bubble and Particle Dynamics in Complex Fluids /
spellingShingle Drop, Bubble and Particle Dynamics in Complex Fluids /
title_full Drop, Bubble and Particle Dynamics in Complex Fluids / edited by Pengtao Yue and Shahriar Afkhami.
title_fullStr Drop, Bubble and Particle Dynamics in Complex Fluids / edited by Pengtao Yue and Shahriar Afkhami.
title_full_unstemmed Drop, Bubble and Particle Dynamics in Complex Fluids / edited by Pengtao Yue and Shahriar Afkhami.
title_auth Drop, Bubble and Particle Dynamics in Complex Fluids /
title_new Drop, Bubble and Particle Dynamics in Complex Fluids /
title_sort drop, bubble and particle dynamics in complex fluids /
publisher MDPI - Multidisciplinary Digital Publishing Institute,
publishDate 2020
physical 1 online resource (142 pages)
isbn 3-03928-297-2
callnumber-first T - Technology
callnumber-subject TA - General and Civil Engineering
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callnumber-sort TA 3145 D767 42020
illustrated Not Illustrated
dewey-hundreds 600 - Technology
dewey-tens 620 - Engineering
dewey-ones 624 - Civil engineering
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dewey-sort 3624
dewey-raw 624
dewey-search 624
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is_hierarchy_title Drop, Bubble and Particle Dynamics in Complex Fluids /
author2_original_writing_str_mv noLinkedField
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