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Laboratory test and field evaluation of double armored electro-optical cable for the JAMSTEC/Deep Tow

机译:JAMSTEC /深拖双铠装光缆的实验室测试和现场评估

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The JAMSTEC/Deep Tow system was developed in 1992 and has a depth capability of 6500 m. In order to get color video images in real time, fiber-optic cable was indispensable instead of coaxial cable. After several tests and evaluation, an 8 km long electro-optical cable, which comprised of four electrical conductors and four single mode optical fibers, was manufactured in 1991. During the initial sea trials in 1992, the cable end was severely damaged by kinking at Sea State 4. The electro-optical cable was superior in elongation and torque balance to the coaxial cable. The kinks occurred by accumulating residual torque at the cable end, which was caused mainly by insufficient pre-tension in the factory. It was found that residual torque was apt to propagate toward the cable end with well torque balanced cable (armored electro-optical cable) rather than unbalanced armored cable such as coaxial cable. Practically, high rigidity is more important than good torque balance of the cable.
机译:JAMSTEC / Deep Tow系统于1992年开发,具有6500 m的深度能力。为了实时获取彩色视频图像,必须使用光纤电缆代替同轴电缆。经过多次测试和评估,1991年制造了一条长8 km的光缆,该光缆由四根电导体和四根单模光纤组成。在1992年的首次海试期间,电缆的末端由于扭结而严重受损。海洋状态4.与同轴电缆相比,电光电缆的伸长率和扭矩平衡性更高。扭结是由于电缆末端积累了残余扭矩而引起的,这主要是由于工厂中的预紧力不足所致。发现残余扭矩易于通过扭矩平衡良好的电缆(铠装电光电缆)而不是诸如同轴电缆之类的非铠装电缆向电缆端传播。实际上,高刚性比电缆的良好扭矩平衡更为重要。

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