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A mechanical design for a detection unit for a deep-sea neutrino telescope

机译:深海中微子望远镜探测装置的机械设计

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摘要

The future KM3NeT neutrino telescope will be built on the seabed of the Mediterranean Sea at a depth between three and five kilometers. The high ambient pressure, but also the fact that the detector is hardly accessible, put severe constraints on the mechanical design of the detection units of the telescope. A detection unit is a vertical structure that supports the optical sensors of the telescope. It has a height of almost 900 m; two data cables run along the full length of the structure. The detection unit will be installed at the seabed as a compact package. Once acoustically released, it unfurls to its full length. The stability of the detection unit during unfurling and during operation is an important requirement for the mechanical design of the structure. We present the evolution of the design of the detection unit for the KM3NeT detector.
机译:未来的KM3NeT中微子望远镜将在地中海海底建造,深度在三到五公里之间。较高的环境压力以及难以接近探测器的事实,对望远镜探测装置的机械设计提出了严格的限制。检测单元是支撑望远镜光学传感器的垂直结构。它的高度接近900 m;两条数据电缆沿着整个结构延伸。该检测装置将作为紧凑包装安装在海底。一旦声学释放,它就会展开至全长。在展开和操作期间检测单元的稳定性是结构机械设计的重要要求。我们介绍KM3NeT检测器检测单元设计的发展。

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