Novel Sensor Technology for Identifying Subsea Power Cables’ and Umbilicals’ Axial Stiffness

Lars Jordal, R. Slora, B. Konradsen, P. Karlsen
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Abstract

This paper presents how to establish the axial stiffness for subsea power cables and umbilicals based on multiple measurement points along the test object. The Cartesian coordinates of the measuring points are measured with use of a total station consisting of an electronic theodolite integrated with an electronic distance measurement unit. The advantage of the total station compared to other displacement measuring systems is that the sensors are not in physical contact with the test object. The measurement method, including calculation of elongation and axial stiffness, is evaluated through a full-scale test with a super duplex steel tube with known mechanical properties. The deviation between the theoretical axial stiffness of the steel tube and the measurement method is 1.2%.
用于识别海底电力电缆和脐带缆轴向刚度的新型传感器技术
本文介绍了如何基于沿测试对象的多个测点建立海底电力电缆和脐带缆的轴向刚度。测量点的笛卡尔坐标使用由电子经纬仪和电子测距装置组成的全站仪测量。与其他位移测量系统相比,全站仪的优点是传感器与测试对象没有物理接触。该测量方法包括伸长率和轴向刚度的计算,并通过已知力学性能的超级双相钢管的全尺寸试验进行了评估。钢管的理论轴向刚度与测量方法的偏差为1.2%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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