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Electrochemical Cell Calculations with OpenFOAM
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Electrochemical Cell Calculations with OpenFOAM/ edited by Steven Beale, Werner Lehnert.
other author:
Beale, Steven.
Description:
VII, 212 p. 120 illus., 84 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Energy storage. -
Online resource:
https://doi.org/10.1007/978-3-030-92178-1
ISBN:
9783030921781
Electrochemical Cell Calculations with OpenFOAM
Electrochemical Cell Calculations with OpenFOAM
[electronic resource] /edited by Steven Beale, Werner Lehnert. - 1st ed. 2022. - VII, 212 p. 120 illus., 84 illus. in color.online resource. - Lecture Notes in Energy,422195-1292 ;. - Lecture Notes in Energy,28.
Electrochemical cell fundamentals -- The simplest possible fuel cell -- Solid oxide cell model -- High temperature polymer electrolyte model -- Stack models -- Low temperature polymer electrolyte fuel cells and two-phase flow (continuum scale) -- Direct numerical simulation of porous media: Effective transport properties -- Micro-scale simulations - two-phase models, focusing on volume-of-fluid -- Implementation of pore network model in a finite volume computational fluid dynamics code -- Simulating polymer electrolyte fuel cell degradation using OpenFOAM and FAST-FC -- Redox flow batteries -- Liquid metal batteries.
This unique book is at the nexus of modern software programming practices and electrochemical process engineering. It is the authoritative text on developing open source software for many applications, including: • fuel cells; • electrolyzers; and • batteries. Written by experts in the field in the open source computational fluid dynamics (CFD) code suite OpenFOAM, this book is intended for process engineering professionals developing practical electrochemical designs for industry, as well as researchers focused on finding tomorrow’s answers today. The book covers everything from micro-scale to cell-scale to stack-scale models, with numerous illustrations and programming examples. Starting from a clear explanation of electrochemical processes and simple illustrative examples, the book progresses in complexity through a range of diverse applications. After reading this book, the reader is able to take command and control of model development as an expert. The book is aimed at all engineers and scientists with basic knowledge of calculus and programming in C++.
ISBN: 9783030921781
Standard No.: 10.1007/978-3-030-92178-1doiSubjects--Topical Terms:
677971
Energy storage.
LC Class. No.: TJ165
Dewey Class. No.: 621.3126
Electrochemical Cell Calculations with OpenFOAM
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Electrochemical cell fundamentals -- The simplest possible fuel cell -- Solid oxide cell model -- High temperature polymer electrolyte model -- Stack models -- Low temperature polymer electrolyte fuel cells and two-phase flow (continuum scale) -- Direct numerical simulation of porous media: Effective transport properties -- Micro-scale simulations - two-phase models, focusing on volume-of-fluid -- Implementation of pore network model in a finite volume computational fluid dynamics code -- Simulating polymer electrolyte fuel cell degradation using OpenFOAM and FAST-FC -- Redox flow batteries -- Liquid metal batteries.
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This unique book is at the nexus of modern software programming practices and electrochemical process engineering. It is the authoritative text on developing open source software for many applications, including: • fuel cells; • electrolyzers; and • batteries. Written by experts in the field in the open source computational fluid dynamics (CFD) code suite OpenFOAM, this book is intended for process engineering professionals developing practical electrochemical designs for industry, as well as researchers focused on finding tomorrow’s answers today. The book covers everything from micro-scale to cell-scale to stack-scale models, with numerous illustrations and programming examples. Starting from a clear explanation of electrochemical processes and simple illustrative examples, the book progresses in complexity through a range of diverse applications. After reading this book, the reader is able to take command and control of model development as an expert. The book is aimed at all engineers and scientists with basic knowledge of calculus and programming in C++.
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