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This book gathers the proceedings of the 8th International
Symposium on Coal Combustion. The contributions reflect the latest
research on coal quality and combustion, techniques for pulverized
coal combustion and fluidized bed combustion, special issues
regarding CO2 capture (CCS), industrial applications, etc. -
aspects that are of great importance in promoting academic
communications between related areas and the technical development
of coal-related fields. The International Symposium on Coal
Combustion (ISCC), sponsored and organized by Tsinghua University
since 1987, has established itself as an important platform
allowing scientists and engineers to exchange information and ideas
on the science and technology of coal combustion and related
issues, and to forge new partnerships in the growing Chinese
market. Researchers in the fields of clean coal combustion, carbon
dioxide capture and storage, coal chemical engineering, energy
engineering, etc. will greatly benefit from this book. Guangxi Yue,
professor of the Department of Thermal Engineering in Tsinghua
University, Beijing, China, and a member of Chinese Academy of
Engineering(CAE). Shuiqing Li, professor of the Department of
Thermal Engineering in Tsinghua University, Beijing, China.
This book gathers the proceedings of the 9th International
Symposium on Coal Combustion, held in Qingdao, China in July 2019.
It provides the latest research results on techniques for
pulverized coal combustion and fluidized bed combustion, low-carbon
energy and emission controls, and industrial applications.
Highlighting research areas that are of great importance in
promoting collaboration between related subjects and the technical
development of coal-related fields, the book offers a valuable
reference guide for researchers and engineers alike.
This book gathers the proceedings of the 9th International
Symposium on Coal Combustion, held in Qingdao, China in July 2019.
It provides the latest research results on techniques for
pulverized coal combustion and fluidized bed combustion, low-carbon
energy and emission controls, and industrial applications.
Highlighting research areas that are of great importance in
promoting collaboration between related subjects and the technical
development of coal-related fields, the book offers a valuable
reference guide for researchers and engineers alike.
Offering a comprehensive treatment of adhesive particle flows, this
book adopts a particle-level approach oriented toward directly
simulating the various fluid, electric field, collision, and
adhesion forces and torques acting on the particles, within the
framework of a discrete-element model. It is ideal for
professionals and graduate students working in engineering and
atmospheric and condensed matter physics, materials science,
environmental science, and other disciplines where particulate
flows have a significant role. The presentation is applicable to a
wide range of flow fields, including aerosols, colloids, fluidized
beds, and granular flows. It describes both physical models of the
various forces and torques on the particles as well as practical
aspects necessary for efficient implementation of these models in a
computational framework.
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