Forthcoming Break-Even Conditions of Tokamak Plasma Performance for Fusion Energy Development

التفاصيل البيبلوغرافية
العنوان: Forthcoming Break-Even Conditions of Tokamak Plasma Performance for Fusion Energy Development
المؤلفون: Ryoji Hiwatari, Y. Asaoka, Yuichi Ogawa, Kunihiko Okano, Satoshi Konishi, Koji Tokimatsu
المصدر: Journal of Plasma and Fusion Research. 81:903-916
بيانات النشر: Japan Society of Plasma Science and Nuclear Fusion Research, 2005.
سنة النشر: 2005
مصطلحات موضوعية: Physics, Thermal efficiency, Tokamak, Electricity generation, Fusion energy gain factor, Power station, law, Nuclear engineering, Beta (plasma physics), Energy market, Fusion power, Earth-Surface Processes, law.invention
الوصف: The present study reveals forthcoming break-even conditions of tokamak plasma performance for the fusion energy development. The first condition is the electric break-even condition, which means that the gross electric power generation is equal to the circulating power in a power plant. This is required for fusion energy to be recognized as a suitable candidate for an alternative energy source. As for the plasma performance (normalized beta value ΒN), confinement improvement factor for H-mode HH, the ratio of plasma density to Greenwald density fnGW), the electric break-even condition requires the simultaneous achievement of 1.2 < ΒN < 2.7, 0.8 < HH, and 0.3 < fnGW < 1.1 under the conditions of a maximum magnetic field on the TF coil Btmax = 16 T, thermal efficiency ηe = 30 %, and current drive power PNBI < 200 MW. It should be noted that the relatively moderate conditions of ΒN ˜ 1.8, HH ˜ 1.0, and fnGW ˜ 0.9, which correspond to the ITER reference operation parameters, have a strong potential to achieve the electric break-even condition. The second condition is the economic break-even condition, which is required for fusion energy to be selected as an alternative energy source in the energy market. By using a long-term world energy scenario, a break-even price for introduction of fusion energy in the year 2050 is estimated to lie between 65 mill/kWh and 135 mill/kWh under the constraint of 550 ppm CO2 concentration in the atmosphere. In the present study, this break-even price is applied to the economic break-even condition. However, because this break-even price is based on the present energy scenario including uncertainties, the economic break-even condition discussed here should not be considered the sufficient condition, but a necessary condition. Under the conditions of Btmax = 16 T, ηe = 40 %, plant availability 60 %, and a radial build with/without CS coil, the economic break-even condition requires ΒN ˜ 5.0 for 65 mill/kWh of lower break-even price case. Finally, the present study reveals that the demonstration of steady-state operation with ΒN ˜ 3.0 in the ITER project leads to the upper region of the break-even price in the present world energy scenario, which implies that it is necessary to improve the plasma performance beyond that of the ITER advanced plasma operation.
تدمد: 0918-7928
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_________::b282fb21c6fcac73781f3d0a9acf0ded
https://doi.org/10.1585/jspf.81.903
حقوق: OPEN
رقم الأكسشن: edsair.doi...........b282fb21c6fcac73781f3d0a9acf0ded
قاعدة البيانات: OpenAIRE