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EVOLVING INNOVATIVE REACTOR DESIGN: PUTTING THE I INTO RD

机译:不断发展的创新反应器设计:将研发投入研发

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This paper traces the development path adopted for the SCWR, including the directions taken for innovative collaboration (R&D+i). In the pre-conceptual design work, instead of taking a fixed concept, the constraints and resulting design targets are defined first. By encouraging innovation, the motivation for the work is not just the size of the R&D funding for a single project, but rather the scale and opportunity of the technology challenge and the potential for attracting grass-roots support at all levels.From the beginning of the Generation IV ideas, the SCWR has taken a somewhat different path from other systems. Learning from the historical lessons of earlier unsuccessful designs of gas-cooled and liquid metal-cooled concepts, the SCWR targets the twin aims of increased efficiency and low cost by leveraging conventional thermal technology while also improving safety and avoiding open-ended development. By working with universities nationally, and other partners internationally, a wider R&D+i activity was possible that was not constrained by any early time-frame demonstration project. As a result, presently a number of unique and creative achievements stand out, where the collaborative SCWR R&D+i partnership is very different from other systems in approach, potential and scope by:a) Providing an open opportunity for some 30 countries to share their development efforts, while representing major global industrial and economic development (the 24 EU nations, plus Canada, Japan, Russia, China, India, Korea and others) without the impediments of any "national" demonstration projects;b) Allowing differing design concepts to flourish, from simple systems to more complex ideas, with process heat and hydrogen production applications emerging naturally, providing flexibility in application and design approach;c) Encouraging extensive educational research opportunities, ideas and contributions outside national laboratories,providing a unique framework for quality assurance that meets the needs of industry, universities and other partners worldwide, as well as a coordinated effort within the Generation IV International Forum and the IAEA cooperative research efforts;d) Examining many innovations (e.g., on alternate thermal cycles, fuel cycles and energy uses) without impacting any specific demonstration, so the testing and research are based largely on new capability development, without committing large funding to design teams with already fixed or unrealizable concepts. This paper describes this new R&D+i concept and itspotential directions and results.
机译:本文追溯了SCWR的发展路径,包括创新合作(R&D + i)的方向。在概念前的设计工作中,首先要定义约束和最终的设计目标,而不是采用固定的概念。通过鼓励创新,这项工作的动机不仅在于单个项目的研发资金规模,还在于技术挑战的规模和机会以及吸引各级基层支持的潜力。 从第四代构想的开始,SCWR就采取了与其他系统稍有不同的道路。从早期的气体冷却和液态金属冷却概念设计失败的历史教训中汲取了经验,SCWR的目标是通过利用传统的热技术同时提高安全性和避免开放式开发来提高效率和降低成本。通过与全国的大学以及国际上的其他合作伙伴合作,可以进行更广泛的R + D + i活动,而不受任何早期时间框架内的示范项目的限制。结果,目前在众多独特和创新成就方面脱颖而出,SCWR R&D + i的合作伙伴关系在方法,潜力和范围上与其他系统大不相同,其原因是: a)为约30个国家(包括24个欧盟国家以及加拿大,日本,俄罗斯,中国,印度,韩国和其他国家)代表主要的全球工业和经济发展提供开放的机会,以分享他们的发展努力,而没有任何障碍“国家”示范项目; b)允许不同的设计概念蓬勃发展,从简单的系统到更复杂的想法,随着过程热和制氢应用的自然出现,为应用和设计方法提供了灵活性; c)鼓励国家实验室以外的广泛的教育研究机会,思想和贡献, 提供满足世界各地工业界,大学和其他合作伙伴需求的独特质量保证框架,以及在第四代国际论坛和国际原子能机构合作研究工作中的协调努力; d)在不影响任何特定示范的情况下,检查了许多创新(例如,在交替的热循环,燃料循环和能源使用方面),因此测试和研究主要基于新能力的开发,而无需向已经固定或无法实现的设计团队投入大量资金概念。本文介绍了这种新的R + D + i概念及其 潜在的方向和结果。

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