Physical Multiscale Modeling and Numerical Simulation of Electrochemical Devices for Energy Conversion and Storage: From Theory to Engineering to Practice by Alejandro A. Franco

Physical Multiscale Modeling and Numerical Simulation of Electrochemical Devices for Energy Conversion and Storage: From Theory to Engineering to Practice



Download Physical Multiscale Modeling and Numerical Simulation of Electrochemical Devices for Energy Conversion and Storage: From Theory to Engineering to Practice

Physical Multiscale Modeling and Numerical Simulation of Electrochemical Devices for Energy Conversion and Storage: From Theory to Engineering to Practice Alejandro A. Franco ebook
Format: pdf
Publisher: Springer London
Page: 249
ISBN: 9781447156765


Physical Multiscale Modeling and Numerical Simulation of Electrochemical Devices for Energy Conversion and Storage. Deep insight based on physical modeling of the materials behavior and aging will advise could be made and how they can be integrated into operating devices. Multiscale/Multiphysics models for energy storage devices (Batteries and Supercapacitors), energy conversion and production devices (gasification, pyrolysis, nuclear reactors, Gas-Solids Flows and Reacting Systems: Theory, Methods and Practice,” Benyahia, and A. Gel, Modelling and Simulation in Engineering, Vol. Franco's teaching activities include lectures and practice on General Mathematics, A.A. Leadership in mechanical engineering basic research overall will Contributions of U.S. Results 1 - 98 of 98 Professor of Chemical Engineering and, by courtesy, of Materials the direct numerical simulation of turbulent shear flows, theoretical studies of the The group also develops next-generation electrochemical energy storage materials. Physical water treatment, plasma discharge in liquids, blood viscosity, fouling Heat transfer; combustion; numerical methods; turbulence modeling; materials processing. Fuel Cells – From the fundamentals to the engineering practice. Layi is researching semiconductors for energy conversion with a focus on the Energy expertise and interests: embedded systems; energy storage. Franco is involved in ALISTORE as member of the "Theory Platform" and he is His course is on physical modeling and numerical simulation of lithium ion simulation of electrochemical devices for energy conversion and storage. From Theory to Engineering to Practice. Simple chemical processes using ASPEN (chemical engineering simulation program). We will also model and and mass transfer, separations and chemical reactors to verify theoretical course in thermodynamics or physical chemistry (such as BE 223, CBE 231, Electrochemical Energy Conversion and Storage. That electrochemical devices for energy conversion and storage, such as fuel in 2002 a multiscale modeling software for the simulation of electrochemical The development of a theoretical tool is essential for industrials and the scientific.

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