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Prüfung von Abdichtbauwerken für Endlager auf Risse - eine Herausforderung

机译:检查裂缝储存库密封结构 - 挑战

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In 2011, the German Bundestag decided to phase out nuclear energy. The resulting waste will remain highly radioactive for many hundreds of thousands of years and represents a considerable danger for future generations. This radioactive waste is to be safely disposed of in deep geological formations (e. g. salt, clay or crystalline). The repositories will be sealed by means of engineered barrier systems. The impermeability of these structures is indispensable. In the current research phase, various materials are being investigated and methods for monitoring the structures are being developed. In this context, the investigation of cracks is a priority topic. In recent years, extensive experience in the investigation of in-situ test objects in full scale were gained. The measurements were performed in the Morsleben repository for radioactive waste at the test structure for the in-situ experiment "Sealing structure in rock salt" and in the Teutschenthal mine at the large-scale GV2 test structure. With a newly developed ultrasonic measuring system it has been possible to achieve penetration depths of up to approx. 9.0 m. Measurements with the Large Aperture Ultrasonic System in combination with the Synthetic Aperture Focusing Technique reconstruction method show that the non-destructive testing of sealing structures is possible and the use of the measuring system for quality assurance in the construction of sealing structures is promising.
机译:2011年,德国联邦格决定逐步淘汰核能。由此产生的废物将持续高度放射性,持续数十万年,对后代表示相当大的危险。该放射性废物是安全地处理深层地质形成(例如盐,粘土或结晶)。存储库将通过工程屏障系统密封。这些结构的不可渗透率是必不可少的。在目前的研究阶段,正在研究各种材料,并且正在开发用于监测结构的方法。在这种情况下,裂缝调查是一个优先级主题。近年来,获得了广泛的全规模调查了原位测试对象的经验。在Morsleben储存库中进行测量,用于在原位实验“岩盐中的密封结构”和Teutschenthal Mine的测试结构中的放射性废物中进行的放射性废物。通过新开发的超声波测量系统,可以实现最高约的穿透深度。 9.0米。用大型孔径超声波系统与合成孔径聚焦技术重建方法的测量结果表明,密封结构的非破坏性测试是可能的,并且使用测量系统在密封结构的构造中的质量保证是有前途的。

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