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From Multiscale Modeling to Meso-Science: A Chemical Engineering Perspective

Autor Jinghai Li, Wei Ge, Wei Wang, Ning Yang, Xinhua Liu, Limin Wang, Xianfeng He, Xiaowei Wang, Junwu Wang, Mooson Kwauk
en Limba Engleză Paperback – 9 apr 2015
Multiscale modeling is becoming essential for accurate, rapid simulation in science and engineering. This book presents the results of three decades of research on multiscale modeling in process engineering from principles to application, and its generalization for different fields. This book considers the universality of meso-scale phenomena for the first time, and provides insight into the emerging discipline that unifies them, meso-science, as well as new perspectives for virtual process engineering.
Multiscale modeling is applied in areas including:
  • multiphase flow and fluid dynamics
  • chemical, biochemical and process engineering
  • mineral processing and metallurgical engineering
  • energy and resources
  • materials science and engineering
Jinghai Li is Vice-President of the Chinese Academy of Sciences (CAS), a professor at the Institute of Process Engineering, CAS, and leader of the EMMS (Energy-minimizing multiscale) Group.
Wei Ge, Wei Wang, Ning Yang and Junwu Wang are professors at the EMMS Group, part of the Institute of Process Engineering, CAS.
Xinhua Liu, Limin Wang, Xianfeng He and Xiaowei Wang are associate professors at the EMMS Group, part of the Institute of Process Engineering, CAS.
Mooson Kwauk is an emeritus director of the Institute of Process Engineering, CAS, and is an advisor to the EMMS Group.
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Specificații

ISBN-13: 9783642446900
ISBN-10: 3642446906
Pagini: 512
Ilustrații: XXVI, 484 p.
Dimensiuni: 155 x 235 x 27 mm
Greutate: 0.71 kg
Ediția:2013
Editura: Springer Berlin, Heidelberg
Colecția Springer
Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

Footprint and Profile.- Meso-scale Modeling—the EMMS Model for Gas-Solid Systems.- Verification of the EMMS model with pseudo-particle modeling.- Extension of the EMMS Model to Gas-Liquid Systems.- From EMMS Model to EMMS Paradigm.- Partial Realization of the EMMS Paradigm.- Complete Realization of the EMMS Paradigm.- Applications in Industry.- Academic Applications of EMMS-based Models.- Many-core Programming.- Software.- Experimental Characterization of Meso-scale Behaviors.- Perspectives: Meso-science and Virtual Process Engineering.

Textul de pe ultima copertă

Multiscale modeling is becoming essential for accurate, rapid simulation in science and engineering. This book presents the results of three decades of research on multiscale modeling in process engineering from principles to application, and its generalization for different fields. This book considers the universality of meso-scale phenomena for the first time, and provides insight into the emerging discipline that unifies them, meso-science, as well as new perspectives for virtual process engineering.
Multiscale modeling is applied in areas including:
  • multiphase flow and fluid dynamics
  • chemical, biochemical and process engineering
  • mineral processing and metallurgical engineering
  • energy and resources
  • materials science and engineering
Jinghai Li is Vice-President of the Chinese Academy of Sciences (CAS), a professor at the Institute of Process Engineering, CAS, and leader of the EMMS (Energy-minimization multiscale) Group.
Wei Ge, Wei Wang, Ning Yang and Junwu Wang are professors at the EMMS Group, part of the Institute of Process Engineering, CAS.
Xinhua Liu, Limin Wang, Xianfeng He and Xiaowei Wang are associate professors at the EMMS Group, part of the Institute of Process Engineering, CAS.
Mooson Kwauk is an emeritus director of the Institute of Process Engineering, CAS, and is an advisor to the EMMS Group.

Caracteristici

Is the culmination of 25 years of work on the multi-scale simulation of different multi-phase chemical processes Highlights transdisciplinarity and the issues from the perspective of complexity science Contributed by outstanding scientists from Chinese Academy of Sciences Includes supplementary material: sn.pub/extras