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Fluid (Air/Water) Cushion Transportation Technology for Emplacing Heavy Canisters into Horizontal Disposal Drifts - 8094

机译:液体(空气/水)缓冲运输技术,用于将重型罐进入水平处置漂移 - 8094

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The disposal of certain types of radioactive waste canisters in a deep repository involves handling and emplacement of very heavy loads. The weight of these particular canisters can be in the order of 20 to 50 metric tons. They generally have to be handled underground in openings that are not much larger than the canisters themselves as it is time consuming and expensive to excavate and backfill large openings in a repository. This therefore calls for the development of special technology that can meet the requirements for safe operation at an industrial scale in restrained operating spaces. Air/water cushion lifting systems are used world wide in the industry for moving heavy loads. However, until now the technology needed for emplacing heavy cylindrical radioactive waste packages in bored drifts (with narrow annular gaps) has not been previously developed or demonstrated. This paper describes the related R&D work carried out by ANDRA (for air cushion technology) and by SKB and Posiva (for water cushion technology) respectively, mainly within the framework of the European Commission (EC) funded Integrated Project called ESDRED (6th European Framework Programme). The background for both the air and the water cushion applications is presented. The specific characteristics of the two different emplacement concepts are also elaborated. Then the various phases of the Test Programmes (including the Prototype phases) are detailed and illustrated for the two lifting media. Conclusions are drawn for each system developed and evaluated. Finally, based on the R&D experience, improvements deemed necessary for an industrial application are listed. The tests performed so far have shown that the emplacement equipment developed is operating efficiently. However further tests are required to verify the availability and the reliability of the equipment over longer periods of time and to identify the modifications that would be needed for an industrial application in a nuclear and mining environment.
机译:某些类型的放射性废物罐处于深度储存库中的处置涉及处理和施加非常重的载荷。这些特定罐的重量可以是20到50公吨的量。它们通常必须在地下处理,这些开口不比罐本身大得多,因为它是耗时和昂贵的挖掘和回收存储库中的大开口。因此,这需要开发特殊技术,可以满足受限制的运营空间的工业规模安全操作的要求。空气/水垫提升系统在行业中使用全球,用于移动重载。然而,直到现在尚未开发或证明钻孔漂移中的重型圆柱放射性废物包装所需的技术(具有窄的环形间隙)所需的技术。本文介绍了ANDRA(用于空气垫技术)和SKB和Posiva(用于水坐水池技术)的相关研发工作,主要是欧洲委员会(EC)资助综合项目的框架(第6欧洲框架程序)。提供了空气和水垫应用的背景。两种不同的施加概念的具体特征也被阐述。然后,针对两个提升介质详细和示出了测试程序(包括原型阶段)的各个阶段。为每个系统制定和评估的结论。最后,根据研发经验,列出了对工业申请所需必要的改进。到目前为止执行的测试已经表明,开发的施加设备是有效的。然而,需要进一步的测试来验证设备的可用性和可靠性在更长的时间段内,并确定核和采矿环境中工业应用所需的修改。

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