03735nam 2200481 450 99650866520331620230504104420.09783031177118(electronic bk.)978303117710110.1007/978-3-031-17711-8(MiAaPQ)EBC7167861(Au-PeEL)EBL7167861(CKB)25936572800041(DE-He213)978-3-031-17711-8(PPN)26780976X(EXLCZ)992593657280004120230504d2022 uy 0engurcnu||||||||txtrdacontentcrdamediacrrdacarrierSystems approaches to nuclear fusion reactors /Frederick B. Marcus1st ed. 2022.Cham, Switzerland :Springer,[2022]©20221 online resource (484 pages)Springer Series in Plasma Science and Technology,2511-2015Print version: Marcus, Frederick B. Systems Approaches to Nuclear Fusion Reactors Cham : Springer International Publishing AG,c2023 9783031177101 Includes bibliographical references and index.Introduction to systems approaches and nuclear fusion -- Doublet III and DIII-D – robustness and adaptation -- TCV – A case study in systems approaches and robustness -- JET and fusion plasmas – systems optimization -- ITER – fusion proto-reactor and large scale systems integration -- Mirrors and other reactor concepts -- Alternative systems approaches -- Conclusions on systems approaches.This book offers an overall review, applying systems engineering and architecture approaches, of the design, optimization, operation and results of leading fusion experiments. These approaches provide a unified means of evaluating reactor design. Methodologies are developed for more coherent construction or evaluation of fusion devices, associated experiments and operating procedures. The main focus is on tokamaks, with almost all machines and their important results being integrated into a systems design space. Case studies focus on DIII-D, TCV, JET, WEST, the fusion reactor prototype ITER and the EU DEMO concept. Stellarator, Mirror and Laser inertial confinement experiments are similarly analysed. The book examines the engineering and physics design and optimization process for each machine, analysing their performance and major results achieved, thus establishing a basis for the improvement of future machines. The reader will gain a broad historical and up-to-date perspective of the status of nuclear fusion research from both an engineering and physics point of view. Explanations are given of the computational tools needed to design and operate successful experiments and reactor-relevant machines. This book is aimed at both graduate students and practitioners of nuclear fusion science and engineering, as well as those specializing in other fields demanding large and integrated experimental equipment. Systems engineers will obtain valuable insights into fusion applications. References are given to associated complex mathematical derivations, which are beyond the scope of this book. The general reader interested in nuclear fusion will find here an accessible summary of the current state of nuclear fusion.Springer Series in Plasma Science and Technology,2511-2015Fusion reactorsFusion reactors.910.5Marcus Frederick B.1274936MiAaPQMiAaPQMiAaPQ996508665203316Systems Approaches to Nuclear Fusion Reactors3003930UNISA