Flowing Matter

Flowing Matter
Author: Federico Toschi
Publisher: Springer Nature
Total Pages: 309
Release: 2019-09-25
Genre: Science
ISBN: 3030233707

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This open access book, published in the Soft and Biological Matter series, presents an introduction to selected research topics in the broad field of flowing matter, including the dynamics of fluids with a complex internal structure -from nematic fluids to soft glasses- as well as active matter and turbulent phenomena. Flowing matter is a subject at the crossroads between physics, mathematics, chemistry, engineering, biology and earth sciences, and relies on a multidisciplinary approach to describe the emergence of the macroscopic behaviours in a system from the coordinated dynamics of its microscopic constituents. Depending on the microscopic interactions, an assembly of molecules or of mesoscopic particles can flow like a simple Newtonian fluid, deform elastically like a solid or behave in a complex manner. When the internal constituents are active, as for biological entities, one generally observes complex large-scale collective motions. Phenomenology is further complicated by the invariable tendency of fluids to display chaos at the large scales or when stirred strongly enough. This volume presents several research topics that address these phenomena encompassing the traditional micro-, meso-, and macro-scales descriptions, and contributes to our understanding of the fundamentals of flowing matter. This book is the legacy of the COST Action MP1305 “Flowing Matter”.

Flowing Matter

Flowing Matter
Author: Federico Toschi
Publisher: Springer
Total Pages: 309
Release: 2020-09-11
Genre: Science
ISBN: 9783030233723

Download Flowing Matter Book in PDF, Epub and Kindle

This open access book, published in the Soft and Biological Matter series, presents an introduction to selected research topics in the broad field of flowing matter, including the dynamics of fluids with a complex internal structure -from nematic fluids to soft glasses- as well as active matter and turbulent phenomena. Flowing matter is a subject at the crossroads between physics, mathematics, chemistry, engineering, biology and earth sciences, and relies on a multidisciplinary approach to describe the emergence of the macroscopic behaviours in a system from the coordinated dynamics of its microscopic constituents. Depending on the microscopic interactions, an assembly of molecules or of mesoscopic particles can flow like a simple Newtonian fluid, deform elastically like a solid or behave in a complex manner. When the internal constituents are active, as for biological entities, one generally observes complex large-scale collective motions. Phenomenology is further complicated by the invariable tendency of fluids to display chaos at the large scales or when stirred strongly enough. This volume presents several research topics that address these phenomena encompassing the traditional micro-, meso-, and macro-scales descriptions, and contributes to our understanding of the fundamentals of flowing matter. This book is the legacy of the COST Action MP1305 “Flowing Matter”.

Flowing Matter

Flowing Matter
Author: Marcello Sega
Publisher:
Total Pages: 312
Release: 2020-10-08
Genre: Science
ISBN: 9781013272677

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This open access book, published in the Soft and Biological Matter series, presents an introduction to selected research topics in the broad field of flowing matter, including the dynamics of fluids with a complex internal structure -from nematic fluids to soft glasses- as well as active matter and turbulent phenomena. Flowing matter is a subject at the crossroads between physics, mathematics, chemistry, engineering, biology and earth sciences, and relies on a multidisciplinary approach to describe the emergence of the macroscopic behaviours in a system from the coordinated dynamics of its microscopic constituents. Depending on the microscopic interactions, an assembly of molecules or of mesoscopic particles can flow like a simple Newtonian fluid, deform elastically like a solid or behave in a complex manner. When the internal constituents are active, as for biological entities, one generally observes complex large-scale collective motions. Phenomenology is further complicated by the invariable tendency of fluids to display chaos at the large scales or when stirred strongly enough. This volume presents several research topics that address these phenomena encompassing the traditional micro-, meso-, and macro-scales descriptions, and contributes to our understanding of the fundamentals of flowing matter. This book is the legacy of the COST Action MP1305 "Flowing Matter". This work was published by Saint Philip Street Press pursuant to a Creative Commons license permitting commercial use. All rights not granted by the work's license are retained by the author or authors.

The Lattice Boltzmann Equation: For Complex States of Flowing Matter

The Lattice Boltzmann Equation: For Complex States of Flowing Matter
Author: Sauro Succi
Publisher: Oxford University Press
Total Pages: 784
Release: 2018-04-13
Genre: Technology & Engineering
ISBN: 0192538853

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Flowing matter is all around us, from daily-life vital processes (breathing, blood circulation), to industrial, environmental, biological, and medical sciences. Complex states of flowing matter are equally present in fundamental physical processes, far remote from our direct senses, such as quantum-relativistic matter under ultra-high temperature conditions (quark-gluon plasmas). Capturing the complexities of such states of matter stands as one of the most prominent challenges of modern science, with multiple ramifications to physics, biology, mathematics, and computer science. As a result, mathematical and computational techniques capable of providing a quantitative account of the way that such complex states of flowing matter behave in space and time are becoming increasingly important. This book provides a unique description of a major technique, the Lattice Boltzmann method to accomplish this task. The Lattice Boltzmann method has gained a prominent role as an efficient computational tool for the numerical simulation of a wide variety of complex states of flowing matter across a broad range of scales; from fully-developed turbulence, to multiphase micro-flows, all the way down to nano-biofluidics and lately, even quantum-relativistic sub-nuclear fluids. After providing a self-contained introduction to the kinetic theory of fluids and a thorough account of its transcription to the lattice framework, this text provides a survey of the major developments which have led to the impressive growth of the Lattice Boltzmann across most walks of fluid dynamics and its interfaces with allied disciplines. Included are recent developments of Lattice Boltzmann methods for non-ideal fluids, micro- and nanofluidic flows with suspended bodies of assorted nature and extensions to strong non-equilibrium flows beyond the realm of continuum fluid mechanics. In the final part, it presents the extension of the Lattice Boltzmann method to quantum and relativistic matter, in an attempt to match the major surge of interest spurred by recent developments in the area of strongly interacting holographic fluids, such as electron flows in graphene.

Physics of Liquid Matter

Physics of Liquid Matter
Author: Paola Gallo
Publisher: Springer Nature
Total Pages: 329
Release: 2021-07-06
Genre: Science
ISBN: 3030683494

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This book offers a didactic and a self-contained treatment of the physics of liquid and flowing matter with a statistical mechanics approach. Experimental and theoretical methods that were developed to study fluids are now frequently applied to a number of more complex systems generically referred to as soft matter. As for simple liquids, also for complex fluids it is important to understand how their macroscopic behavior is determined by the interactions between the component units. Moreover, in recent years new and relevant insights have emerged from the study of anomalous phases and metastable states of matter. In addition to the traditional topics concerning fluids in normal conditions, the authors of this book discuss recent developments in the field of disordered systems in condensed and soft matter. In particular they emphasize computer simulation techniques that are used in the study of soft matter and the theories and study of slow glassy dynamics. For these reasons the book includes a specific chapter about metastability, supercooled liquids and glass transition. The book is written for graduate students and active researchers in the field.

Flowing Harmony: Navigating The Riverine Ecosystem

Flowing Harmony: Navigating The Riverine Ecosystem
Author: Baiju G. Verghese
Publisher: Google Book Publishers
Total Pages: 70
Release:
Genre: Nature
ISBN:

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The book "Flowing Harmony: Navigating The Riverine Ecosystem" delves into the intricate dynamics and rich biodiversity of river ecosystems, offering a comprehensive exploration of their ecological significance and the myriad interactions that shape their existence. Authored by esteemed environmental scientists and ecologists, this seminal work serves as a beacon illuminating the importance of rivers as lifelines of the planet. The book begins by laying a foundation of understanding, elucidating the fundamental components of riverine ecosystems. It navigates through the diverse habitats encompassed within river systems, from the headwaters to the estuaries, unravelling the unique adaptations of flora and fauna that thrive in each niche. Through meticulous research and vivid descriptions, the authors paint a vivid portrait of the interconnectedness of life along the riverbanks. One of the central themes explored in the book is the intricate web of relationships that sustains river ecosystems. Readers are introduced to the concept of trophic cascades and the pivotal role played by keystone species in maintaining ecological balance. From the predatory prowess of apex predators to the symbiotic relationships between plants and aquatic organisms, every aspect of the riverine food web is meticulously discussed. However, "Flowing Harmony: Navigating The Riverine Ecosystem" does not shy away from addressing the myriad challenges threatening the health and resilience of these vital ecosystems. Pollution, habitat degradation, overexploitation of resources, and the looming spectre of climate change cast a shadow over the pristine beauty of rivers worldwide. The book underscores the urgent need for concerted conservation efforts and sustainable management practices to safeguard these invaluable natural treasures for future generations. Furthermore, the text serves as a call to action, urging policymakers, conservationists, and the general public to recognize the intrinsic value of rivers beyond their utilitarian functions. It advocates for holistic approaches to river management that prioritize ecosystem health and resilience, emphasizing the interconnectedness of human well-being with the vitality of river ecosystems. "Flowing Harmony: Navigating The Riverine Ecosystem" transcends disciplinary boundaries, appealing to ecologists, biologists, environmentalists, policymakers, and anyone with a vested interest in understanding and preserving the intricate tapestry of life woven within river corridors. With its blend of scientific rigor, ecological insights, and impassioned advocacy, this book stands as a testament to the enduring beauty and importance of rivers in shaping the fabric of our planet.

The Physics of Deformation and Fracture of Polymers

The Physics of Deformation and Fracture of Polymers
Author: A. S. Argon
Publisher: Cambridge University Press
Total Pages: 535
Release: 2013-03-07
Genre: Technology & Engineering
ISBN: 1139619128

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Demonstrating through examples, this book presents a mechanism-based perspective on the broad range of deformation and fracture response of solid polymers. It draws on the results of probing experiments and considers the similar mechanical responses of amorphous metals and inorganic compounds to develop advanced methodology for generating more precise forms of modelling. This, in turn, provides a better fundamental understanding of deformation and fracture phenomena in solid polymers. Such mechanism-based constitutive response forms have far-reaching application potential in the prediction of structural responses and in tailoring special microstructures for tough behaviour. Moreover, they can guide the development of computational codes for deformation processing of polymers at any level. Applications are wide-ranging, from large strain industrial deformation texturing to production of precision micro-fluidic devices, making this book of interest to both advanced graduate students and to practising professionals.