Experimental Wave Flume Tests in ROV-Wave Interaction Effects on the Line Tension for a Work Class ROV in Splash Zone

Michael Binsar Lubis, M. Kimiaei
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引用次数: 1

Abstract

Integrity and stability of Remotely Operated Vehicle (ROV) when passing through the splash zone is one of the main concerns in the design of an ROV-umbilical system. Due to the lightweight nature of ROV in water, the umbilical experiences repetitive rapid transitions between slack and taut as the ROV travels through the splash zone. These rapid transitions induce tension spikes in the umbilical, namely snap forces, that can endanger the launch and recovery of an ROV. Therefore, it is important to ensure that the tension spikes do not exceed the safe working load of the umbilical. In this study, launch and recovery of a deep-water work class ROV are experimentally investigated using a 1:10 scaled ROV model through a series of wave flume tests. Different regular and irregular waves are generated in the flume while the ROV model is hung over the flume in four different positions. The tension time-history in the line is measured and recorded using a load cell at the top-end of the line. A simplified numerical model for launch and recovery of the ROV is developed and the numerical results are compared with the experimental ones. It is shown that the presented simplified model can be accurately used for analysis of launch and recovery of the ROV.
水花区工作级ROV-波浪相互作用对线张力影响的波浪水槽试验
通过溅溅区时,ROV的完整性和稳定性是ROV-脐带系统设计的主要问题之一。由于ROV在水中的重量轻,当ROV通过溅水区时,脐带缆会在松弛和绷紧之间反复快速转换。这些快速的转变会导致脐带缆的张力峰值,即弹跳力,这可能会危及ROV的发射和回收。因此,确保张力峰值不超过脐带缆的安全工作负荷是非常重要的。在本研究中,通过一系列波浪水槽试验,采用1:10比例的ROV模型对深水工作级ROV的发射和回收进行了实验研究。水下机器人模型在水槽上不同位置悬吊时,水槽内会产生不同的规则波和不规则波。在线的张力时程测量和记录使用称重传感器在线的顶端。建立了ROV发射与回收的简化数值模型,并将数值结果与实验结果进行了比较。结果表明,所建立的简化模型可以准确地用于ROV的发射和回收分析。
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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