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首页> 外文期刊>Journal of nuclear engineering and radiation science >Development of Experimental Instrumentation for Measurement of Advection in Narrow Aperture in Granite Block
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Development of Experimental Instrumentation for Measurement of Advection in Narrow Aperture in Granite Block

机译:花岗岩块窄孔径测量实验仪的研制

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摘要

A granite block, acquired from a quarry Panská Dubenka located in the Czech Republic and used in presented experiments, is part of the same bedrock that can be potentially used for a deep geological repository. It is important to characterize advection in fractured rock to assess possible groundwater contamination. Newly used method—three-dimensional scanning using Hexagon Romer Arm was implemented to characterize the morphology of an examined fractured block with a aperture. The scanning technology provides the possibility to digitalize the rock surface. The scanning can be also used to determine any changes in the rock surface. The block was instrumented by tubing, and the aperture was sealed using a silicone. Flow paths were investigated by the comparison of fluid weights on the outlet on every output/site. The Hexagon Romer Arm is an ideal tool for the precise determination of a aperture's width in its full volume.
机译:从位于捷克共和国的采石场Panskádubenka获得并用于所呈现的实验的花岗岩块是可以用于深层地质储存库的相同基岩的一部分。 重要的是在骨折岩石中表征平流,以评估可能的地下水污染。 使用六边形romer臂进行新使用的方法 - 三维扫描以表征具有孔径的被检查的裂缝块的形态。 扫描技术提供了数字化岩石表面的可能性。 扫描也可以用于确定岩石表面的任何变化。 块通过管道仪表,使用硅树脂密封孔。 通过比较每个输出/位点上的出口上的流体重量来研究流动路径。 六边形罗米尔臂是精确地确定孔径宽度的理想工具。

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