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Heterogeneous world model and collaborative scenarios of transition to globally sustainable nuclear energy systems

机译:异构世界模型和向全球可持续核能系统过渡的协作方案

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The International Atomic Energy Agency's International Project on Innovative Nuclear Reactors and Fuel Cycles (INPRO) is to help ensure that nuclear energy is available to contribute to meeting global energy needs of the 21st century in a sustainable manner. The INPRO task titled “Global scenarios” is to develop global and regional nuclear energy scenarios that lead to a global vision of sustainable nuclear energy in the 21st century. Results of multiple studies show that the criteria for developing sustainable nuclear energy cannot be met without innovations in reactor and nuclear fuel cycle technologies. Combining different reactor types and associated fuel chains creates a multiplicity of nuclear energy system arrangements potentially contributing to global sustainability of nuclear energy. In this, cooperation among countries having different policy regarding fuel cycle back end would be essential to bring sustainability benefits from innovations in technology to all interested users. INPRO has developed heterogeneous global model to capture countries’ different policies regarding the back end of the nuclear fuel cycle in regional and global scenarios of nuclear energy evolution and applied in a number of studies performed by participants of the project. This paper will highlight the model and major conclusions obtained in the studies.
机译:国际原子能机构的国际创新核反应堆和燃料循环项目(INPRO)旨在帮助确保提供核能,以可持续的方式满足21世纪的全球能源需求。 INPRO的题为“全球方案”的任务是发展全球和区域核能方案,从而带来21世纪全球可持续核能的愿景。多项研究的结果表明,没有反应堆和核燃料循环技术的创新,就无法满足发展可持续核能的标准。将不同的反应堆类型和相关的燃料链结合在一起,便会形成多种核能系统安排,有可能促进全球核能的可持续性。因此,对燃料循环后端采取不同政策的国家之间的合作对于将技术创新的可持续性利益带给所有感兴趣的用户至关重要。 INPRO开发了一种异构的全球模型,以捕捉各国在区域和全球核能发展情景中有关核燃料循环后端的不同政策,并应用于该项目参与者进行的许多研究中。本文将重点介绍该模型和在研究中获得的主要结论。

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