全部文献期刊会议图书|学者科研项目
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作者:W. Biel , M. Cavedon ...
来源:[J].Fusion Engineering and Design(IF 0.842), 2020, Vol.156Elsevier
摘要:Abstract(#br)For electricity producing tokamak fusion reactors like EU-DEMO, it is prudent to choose a plasma scenario close to the ITER baseline, where the largest amount of experimental evidence is available. Nevertheless, there are some aspects in which ITER and EU-DEMO have t...
作者:W. Biel , R. Albanese ...
来源:[J].Fusion Engineering and Design(IF 0.842), 2019, Vol.146, pp.465-472Elsevier
摘要:Abstract(#br)The plasma diagnostic and control (D&C) system for a future tokamak demonstration fusion reactor (DEMO) will have to provide reliable operation near technical and physics limits, while its front-end components will be subject to strong adverse effects within the nucl...
作者:W. Biel , M. Beckers ...
来源:[J].Fusion Engineering and Design(IF 0.842), 2017, Vol.123, pp.206-211Elsevier
摘要:Abstract(#br)In the European strategy towards fusion power, a demonstration tokamak fusion reactor (DEMO) is foreseen as the next single step between ITER and a power plant. The current baseline concept is a tokamak reactor with net electrical output power of P el ∼ 500 MW ...
作者:... M. Mattei , W. Biel , T. Franke
来源:[J].Fusion Engineering and Design(IF 0.842), 2019, Vol.146, pp.728-731Elsevier
摘要:Abstract(#br)About 85% of the primary energy is currently obtained from fossil sources. In the next future, nuclear fusion can significantly contribute to energy production: the fuel is in principle unlimited and radioactive waste are short lived. Next steps in fusion research ar...
作者:W. Biel , S. Ciattaglia ...
来源:[J].Fusion Engineering and Design(IF 0.842), 2017Elsevier
摘要:Abstract(#br)An essential goal of the EU fusion roadmap is the development of design and technology of a Demonstration Fusion Power Reactor (DEMO) to follow ITER. A pragmatic approach is advocated considering a pulsed tokamak based on mature technologies and reliable regimes of o...
作者:W. Biel , L.V. Boccaccini ...
来源:[J].Fusion Engineering and Design(IF 0.842), 2017Elsevier
摘要:Abstract(#br)In the EU DEMO design (Romanelli, 2012; Federici et al., 2014), due to the large number of complex systems inside the tokamak vessel it is of vital importance to address the in-vessel integration at an early stage in the design process. In the EU DEMO design, after a...
作者:W. Biel , G. Federici ...
来源:[J].Fusion Engineering and Design(IF 0.842), 2017, Vol.123, pp.63-66Elsevier
摘要:Abstract(#br)When designing a new large experimental device, extrapolation from current knowledge and scaling laws into unexplored design space is unavoidable, and predicting the behaviour of a new device is therefore subject to significant uncertainties. This makes it difficult ...
作者:W. Biel , L. Boccaccini ...
来源:[J].Fusion Engineering and Design(IF 0.842), 2018Elsevier
摘要:Abstract(#br)This paper describes the progress of the DEMO Design Activities in Europe and particularly the work done to address critical design integration issues that affect the machine configuration and performance, the plant concept layout and the selection of system des...
作者:... A. Hjalmarsson , T. Franke , W. Biel
来源:[J].Fusion Engineering and Design(IF 0.842), 2018Elsevier
摘要:Abstract(#br)The future tokamak demonstration fusion reactor (DEMO) will operate at unprecedented physical and technological conditions where high reliability of the system components is required. The conceptual study of a suite of DEMO diagnostics is on-going. Among these, ...
作者:W. Biel , T. Bolzonella ...
来源:[J].Fusion Engineering and Design(IF 0.842), 2017, Vol.123, pp.495-499Elsevier
摘要:Abstract(#br)The heating & current drive (H&CD) systems in a DEMOnstration fusion power plant are one of the major energy consumers. Due to its high demand in electrical energy the H&CD efficiency optimization is an important goal in the DEMO development.(#br)The H&CD power for D...

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