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Dynamics of Nanoparticles in Stagnation Flames: Springer Theses

Autor Yiyang Zhang
en Limba Engleză Hardback – 29 mar 2017
This book studies the collision, coalescence and deposition of nanoparticles in stagnation flames. With the help of synthesis experiments, in-situ laser diagnostics and molecular dynamics simulations, it investigates the growth of nanoparticles in flames and their deposition in boundary layers at a macroscopic flow field scale, as well as particle and molecular scale issues such as the interaction force between particles, how the collision rate is enhanced by attractive forces, and how the nano-scale coalescence process is influenced by the high surface curvature – all of which are crucial to understanding nanoparticle transport phenomena at high temperatures. The book also reports on a novel in-situ laser diagnostics phenomenon called phase-selective laser-induced breakdown spectroscopy and related applications for tracing gas-to-particle transitions and measuring local particle volume fractions in nano-aerosols.
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Specificații

ISBN-13: 9783662536131
ISBN-10: 3662536137
Pagini: 221
Ilustrații: XIX, 183 p. 122 illus.
Dimensiuni: 155 x 235 x 13 mm
Greutate: 0.47 kg
Ediția:1st ed. 2017
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Springer Theses

Locul publicării:Berlin, Heidelberg, Germany

Cuprins

Dynamic Field.- Field of Stationary Currents.- Dynamics Introduction.- Elements of Magnetofluid Dynamics.- Special Relativity.- Minkowski Space.-Appendix.

Textul de pe ultima copertă

This book studies the collision, coalescence and deposition of nanoparticles in stagnation flames. With the help of synthesis experiments, in-situ laser diagnostics and molecular dynamics simulations, it investigates the growth of nanoparticles in flames and their deposition in boundary layers at a macroscopic flow field scale, as well as particle and molecular scale issues such as the interaction force between particles, how the collision rate is enhanced by attractive forces, and how the nano-scale coalescence process is influenced by the high surface curvature – all of which are crucial to understanding nanoparticle transport phenomena at high temperatures. The book also reports on a novel in-situ laser diagnostics phenomenon called phase-selective laser-induced breakdown spectroscopy and related applications for tracing gas-to-particle transitions and measuring local particle volume fractions in nano-aerosols.

Caracteristici

Presents a comprehensive study on flame synthesis of metal oxide nanoparticles Includes cutting-edge laser diagnostic technologies for nanoparticle formation and transport Offers a microscopic view of nanoparticle collision and coalescence with the help of molecular dynamics simulation Includes supplementary material: sn.pub/extras