作为巴西 Ap-Th1000 反应堆实施战略的 SWOT 矩阵分析

Francky Roger Araujo da Silva, Giovanni Laranjo de Stefani, Marcelo Vilela da Silva
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摘要

本文分析了实施以钍为燃料的 AP-Th1000 反应堆的 SWOT 矩阵,目的是在未来用钍替代目前以铀为燃料的核反应堆。需要深入研究与巴西实际情况相关的国内和国际文献。随后,召开了专门会议,以确定 SWOT 矩阵 4 个要点的所有可能情况。在平均 1 个小时的会议期间,作者们在讨论 SWOT 矩阵 4 个要点分析中发现的 50 多个项目时,展示了他们在行业和学术方面的专业知识,如创造力、协作、有效沟通、开放和宽容、快速思考、综合能力、问题聚焦和灵活性。每次会议分为三个部分。第一部分是创造性阶段;第二部分是批判性阶段;最后是第三阶段,在这一阶段对各种想法进行筛选,以确定那些更有根据、更容易被接受的想法。然后,列出的方面被分为 4 类:优势 (S)、劣势 (W)、机遇 (O) 和威胁 (T)。在分类之后,根据作者的意见,按照重要性从高到低的顺序,对弱项和威胁进行了优先排序,并提出了中和建议。最后,对获得的数据进行了分析。通过 SWOT 分析,我们得出结论,在巴西核能发电技术的发展中,使用含钍和铀混合氧化物的 AP1000 反应堆具有明显的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the SWOT matrix as a strategy for implementing the Ap-Th1000 Reactor in Brazil
This article analyzes the SWOT Matrix for the implementation of the AP-Th1000 reactor with thorium fuel, aiming at a future replacement of the current nuclear reactors that use uranium as fuel by thorium. There was a need for an in-depth study of the national and international literature linked to the Brazilian reality. After that, specific meetings were held to detect all possible situations of the 4 main points of the SWOT matrix. During the sessions, which averaged 1 hour, the authors' industrial and academic expertise was demonstrated in competencies such as creativity, collaboration, effective communication, openness and tolerance, quick thinking, synthesis ability, problem focus, and flexibility during the discussions of over 50 items found in the analysis of the 4 points of the SWOT matrix. Each meeting was divided into three parts. The first part, which would be the Creative phase; and a second part, which would be the Critical phase; and, finally, the third phase, where ideas are filtered for the permanence of those that were better founded and of better acceptance. Then, the aspects listed were classified into 4 categories: Strengths (S), Weaknesses (W), Opportunities (O), and Threats (T). After the classification, a ranking of priorities was made, in descending order of importance, according to the authors, of the weaknesses and threats, neutralization suggestions were made. Finally, the data obtained were analyzed. We concluded through the SWOT analysis, we can observe an expressive amount of benefits of using the AP1000 reactor with MOX of Thorium and Uranium in the development of nuclear energy generation technologies in Brazil.
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