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超高性能混凝土在核储存设施中的适用性:耐久性、热性能和核性能的综合与批判性综述,以指导配合比调整

UHPC Viability for Nuclear Storage Facilities: Synthesis and Critical Review of Durability, Thermal, and Nuclear Properties for Informed Mix Modifications.

作者信息

Igrashkina Nataliia, Moustafa Mohamed A

机构信息

Department of Civil and Environmental Engineering, University of Nevada, Reno, NV 89557, USA.

Division of Engineering, New York University Abu Dhabi, Abu Dhabi P.O. Box 129188, United Arab Emirates.

出版信息

Materials (Basel). 2025 Jan 17;18(2):430. doi: 10.3390/ma18020430.

Abstract

Spent nuclear fuel (SNF) from the United States' nuclear power plants has been placed in dry cask storage systems since the 1980s. Due to the lack of a clear path for permanent geological repository for SNF, consolidated and long-term storage solutions that use durable concrete and avoid current aging and licensing challenges are becoming indispensable. Ultra-high-performance concrete (UHPC) is a rapidly growing advanced concrete solution with superior mechanical and durability properties that can help realize future resilient nuclear storage facilities. Thus, the overall goal of this review study is to demonstrate the viability of UHPC as a long-term solution for future nuclear storage facilities. The paper first identifies all possible non-nuclear (environmental) and nuclear (thermal and radiation-induced) degradation mechanisms in concrete overpacks and storage modules with critical assessment and projections on UHPC performance in comparison to current conventional concrete solutions. Next, since concrete serves as a shielding material in nuclear settings, the preliminary attenuation properties of UHPC from emerging studies are synthesized along with the possible mix modifications to improve its attenuation performance. The paper identifies the major knowledge gaps to inform future research and development, aimed at rethinking the design of SNF dry storage facilities by incorporating UHPC.

摘要

自20世纪80年代以来,美国核电站产生的乏核燃料(SNF)一直被置于干式贮存系统中。由于缺乏明确的乏核燃料永久地质处置库路径,采用耐用混凝土并避免当前老化和许可挑战的综合长期贮存解决方案变得不可或缺。超高性能混凝土(UHPC)是一种快速发展的先进混凝土解决方案,具有卓越的力学性能和耐久性,有助于实现未来坚固的核贮存设施。因此,本综述研究的总体目标是证明超高性能混凝土作为未来核贮存设施长期解决方案的可行性。本文首先识别了混凝土外包装和贮存模块中所有可能的非核(环境)和核(热和辐射诱导)降解机制,并对超高性能混凝土与当前传统混凝土解决方案的性能进行了批判性评估和预测。接下来,由于混凝土在核环境中用作屏蔽材料,本文综合了新兴研究中超高性能混凝土的初步衰减特性以及可能的配合比调整,以改善其衰减性能。本文识别了主要的知识空白,为未来的研究和开发提供参考,旨在通过纳入超高性能混凝土来重新思考乏核燃料干式贮存设施的设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6d4/11766686/cbe66bcbc865/materials-18-00430-g001.jpg

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