[1] International Atomic Energy Agency. Power reactor information system[R/OL]. [2024-01-09]. http://www.iaea.org/resources/databases/power-reactor-information-system-pris. [2] International Atomic Energy Agency. International status and prospects for nuclear power [R]. Vienna:IAEA, 2021. [3] IAEA. International Atomic Energy Agency (IAEA) (2020d) advances in small modular reactor technology developments[R]. 2020 Edition, a supplement to: IAEA Advanced Reactors Information System (ARIS),2018 Edition. Vienna:IAEA,2020. [4] Nuclear Street. IAEA evaluates SMR technology[EB/OL]. (2020-11-04)[2023-07-21]. https://nuclearstreet.com/nuclear_power_industry_news/b/nuclear_power_news/archive/2020/11/04/iaea-evaluates-smr-technology-110402#:~:text=IAEA%20Evaluates%20SMR %20Technology%20A%20new%20IAEA%20publication,in%20the%20challenge%20of%20lowering%20greenhouse%20gas%20emissions. [5] Benjamin Vegel,Jason C. Quinn. Economic evaluation of small modular nuclear reactors and the complications of regulatory fee structures [J]. Energy Policy,2017(104):395-403. [6] OECD. Nuclear energy agency for the generation IV international forum, technology roadmap update for generation IV nuclear energy systems [R]. 2014. [7] Wrigley P A, Wood P, O’Neill S, et al. Module design layout and equipment analysis for off-site prefabrication manufacture and assembly in a small modular reactor[C]// 2020 Power Conference. 2020. [8] Asa A, Gl B. Economics of nuclear power plants[M]//Nuclear Reactor Technology Development and Utilization. Woodhead Publishing,2020:161-186. [9] Jakub H. Facilitating deployment of transportable nuclear power plants through a new regime of mutual recognition[J]. Journal of World Energy Law and Business, 2022,15(4):282-294. [10] Handrlica J. Transportable nuclear power plants: An enigma of international nuclear liability law[J]. The Journal of World Energy Law & Business, 2019, 12(6):465-479. [11] Yan B H, Wang C, Li L G. The technology of micro heat pipe cooled reactor: A review[J]. Annals of Nuclear Energy, 2020, 135:106948. [12] Filippone C, Jordan K. The holos reactor: A distributable power generator with transportable subcritical power modules [R]. 2017. [13] Transportable reactor facility for electricity supply in remote areas(UNITHERM). Annex II [R]. 2007. [14] Powell J R, Farrell J P, Merkel G. Compact transportable nuclear power for remote locations and humanitarian applications[J]. Transactions of the American Nuclear Society, 2007, 97(11):861. [15] Strogen B. Small-scale nuclear reactors for remote military operations: Opportunities and challenges [Z].2015. [16] IAEA. International Atomic Energy Agency (2016) advances in small modular reactor technology developments [R]. 2016. [17] Carelli M D, Ingersoll D T. Handbook of small modular nuclear reactors[R]. 2014. [18] Levinsky A, Wyk J, Arafat Y, et al. Westinghouse eVinci? reactor for off-grid markets[J]. Transactions of the American Nuclear Society, 2018(11):119. [19] Hernandez R, Todosow M, Brown N R. Micro heat pipe nuclear reactor concepts: Analysis of fuel cycle performance and environmental impacts[J]. Annals of Nuclear Energy, 2019, 126(4):419-426. [20] Kimura R, Asano K. Ensuring criticality safety of vSMR core during transport based on its temperature reactivity[J]. Nuclear Science and Engineering, 2020, 194(3):1-8. [21] 伍浩松,戴定.加拿大监管机构收到第四种小堆设计[J].国外核新闻, 2017(3):2. [22] Mcclure P, Poston D, Rao D, et al. Design of megawatt power level heat pipe reactors[R]. Los Alamos: Los Alamos National Lab, 2015. [23] Testoni R, Bersano A, Segantin S. Review of nuclear microreactors: Status, potentialities and challenges[J]. Progress in Nuclear Energy, 2021,138(402):103822. [24] Alemberti A, Smirnov V, Smith C F, et al. Overview of lead cooled fast reactor activities[J]. Progress in Nuclear Energy, 2014,77:300-307. [25] Leslie M. Nuclear energy seeks revival with advanced fuel options[J]. Engineering, 2021, 7(11):1508-1510. [26] 郑开云, 超临界二氧化碳布雷顿循环效率分析[J]. 发电设备,2017,31(5):305-309. [27] Ruscak M, Melichar T, Syblik J, et al. Energy well: Concept of 20 MW micro reactor cooled by molten salts[J]. Journal of Nuclear Engineering and Radiation Science, 2021,7(2): 021302. [28] Oková J, Dambrosio A, Mazzini G, et al. Residal heat estimation of nuclear fuel in energy well reactor[C]//Acta Polytechnica CTU Proceedings 24. 2019. [29] IAEA. Regulations for the safe transport of radioactive material (SSR-6)[S]. Vienna:IAEA, 2018. [30] IAEA. Advisory material for the IAEA regulations for the safe transport of radioactive material(SSG-26)[S]. Vienna:IAEA, 2012. [31] International Atomic Energy Agency. Discussion paper-the deployment of transportable reactors within the transport safety regulatory framework[R]. Vienna:IAEA, 2021. [32] Denise O, Mark R H, Piyush S. Regulatory and licensing strategy for microreactor[R].Report No. INL/EXT-18-51111. Idaho Falls: Idaho National Laboratory, 2018. [33] International Atomic Energy Agency. Legal and institutional issues of transportable nuclear power plants: A preliminary study[R]. Vienna:IAEA, 2014. |