Mathematical modeling of emission in small-size cathode
Danilov, Vladimir
Mathematical modeling of emission in small-size cathode by Vladimir Danilov, Roman Gaydukov, Vadim Kretov - First edition - 1 recurso en línea (XII, 194 páginas) 77 ilustraciones - Heat and Mass Transfer 1860-4846 Engineering (Springer-11647) .
1 Introduction -- 2 Physical basis for field emission -- 3 Mathematical model -- 4 Numerical simulation and its results.
This book deals with mathematical modeling, namely, it describes the mathematical model of heat transfer in a silicon cathode of small (nano) dimensions with the possibility of partial melting taken into account. This mathematical model is based on the phase field system, i.e., on a contemporary generalization of Stefan-type free boundary problems. The approach used is not purely mathematical but is based on the understanding of the solution structure (construction and study of asymptotic solutions) and computer calculations. The book presents an algorithm for numerical solution of the equations of the mathematical model including its parallel implementation. The results of numerical simulation concludes the book. The book is intended for specialists in the field of heat transfer and field emission processes and can be useful for senior students and postgraduates.
9789811501951
10.1007/978-981-15-0195-1 doi
Electrones
Electrodos
Modelos matemáticos
QC793.5 .E628 / 2020 EB
Mathematical modeling of emission in small-size cathode by Vladimir Danilov, Roman Gaydukov, Vadim Kretov - First edition - 1 recurso en línea (XII, 194 páginas) 77 ilustraciones - Heat and Mass Transfer 1860-4846 Engineering (Springer-11647) .
1 Introduction -- 2 Physical basis for field emission -- 3 Mathematical model -- 4 Numerical simulation and its results.
This book deals with mathematical modeling, namely, it describes the mathematical model of heat transfer in a silicon cathode of small (nano) dimensions with the possibility of partial melting taken into account. This mathematical model is based on the phase field system, i.e., on a contemporary generalization of Stefan-type free boundary problems. The approach used is not purely mathematical but is based on the understanding of the solution structure (construction and study of asymptotic solutions) and computer calculations. The book presents an algorithm for numerical solution of the equations of the mathematical model including its parallel implementation. The results of numerical simulation concludes the book. The book is intended for specialists in the field of heat transfer and field emission processes and can be useful for senior students and postgraduates.
9789811501951
10.1007/978-981-15-0195-1 doi
Electrones
Electrodos
Modelos matemáticos
QC793.5 .E628 / 2020 EB