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Development and Testing of a Friction-Based Post-Installable Fiber-Optic Monitoring System for Subsea Applications

机译:基于摩擦的海底应用后安装式光纤监控系统的开发和测试

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摘要

This paper presents the design and development of a friction-based coupling device for a fiber-optic monitoring system capable of measuring pressure, strain, and temperature that can be deployed on existing subsea structures. A summary is provided of the design concept, prototype development, prototype performance testing, and subsequent design refinements of the device. The results of laboratory testing of the first prototype performed at the National Aeronautics and Space Administration (NASA) Johnson Space Center (JSC) are also included. Limitations of the initial concept were identified during testing and future design improvements were proposed and later implemented. These new features enhance the coupling of the sensor device and improve the monitoring system measurement capabilities. A major challenge of a post-installed instrumentation monitoring system is to ensure adequate coupling between the instruments and the structure of interest for reliable measurements. Friction-based devices have the potential to overcome coupling limitations caused by marine growth and soil contamination on flowlines, risers, and other subsea structures. The work described in this paper investigates the design and test of a friction-based coupling device (herein referred to as a friction clamp) which is suitable for pipelines and structures that are suspended in the water column as well as for those that are resting on the seabed. The monitoring elements consist of fiberoptic sensors that are bonded to a stainless steel clamshell assembly with a high-friction surface coating. The friction clamp incorporates a single hinge design to facilitate installation of the clamp and dual rows of opposing fasteners to distribute the clamping force along the structure. The friction clamp can be modified to be installed by commercial divers in shallow depths or by remotely operated vehicles in deep-water applications. NASA-JSC was involved in the selection and testing of the friction coating, and in the design and testing of the prototype clamp device. Four-inch diameter and eight-inch diameter sub-scale friction clamp prototypes were built and tested to evaluate the strain measuring capabilities of the design under different loading scenarios. The testing revealed some limitations of the initial design concept, and subsequent refinements were explored to improve the measurement performance of the system. This study was part of a collaboration between NASA-JSC and Astro Technology Inc. within a study called Clear Gulf. The primary objective of the Clear Gulf study is to develop advanced instrumentation technologies that will improve operational safety and reduce the risk of hydrocarbon spillage. NASA provided unique insights, expansive test facilities, and technical expertise to advance technologies that will benefit the environment, the public, and commercial industries.
机译:本文介绍了一种基于摩擦的耦合装置的设计和开发,该耦合装置用于光纤监测系统,该系统能够测量压力,应变和温度,并且可以部署在现有海底结构上。提供了设备的设计概念,原型开发,原型性能测试以及后续设计改进的摘要。还包括在美国国家航空航天局(NASA)约翰逊航天中心(JSC)进行的第一架原型机的实验室测试结果。在测试期间确定了最初概念的局限性,并提出了未来的设计改进,并在以后实施。这些新功能增强了传感器设备的耦合性,并提高了监视系统的测量能力。安装后的仪器监视系统的主要挑战是确保仪器与目标结构之间的充分耦合,以实现可靠的测量。基于摩擦的设备有可能克服由于海洋生长和流线,立管和其他海底结构上的土壤污染而引起的耦合限制。本文描述的工作研究了基于摩擦的耦合装置(在本文中称为“摩擦夹具”)的设计和测试,该装置适用于悬挂在水柱中的管道和结构以及固定在水柱上的管道和结构。海底。监控元件由光纤传感器组成,这些传感器与具有高摩擦表面涂层的不锈钢翻盖组件结合在一起。摩擦夹具采用了单铰链设计,以利于夹具的安装和两排相对的紧固件,以沿结构分配夹紧力。摩擦夹可以修改为由商业潜水员在较浅的深度安装,也可以由远程操作的车辆在深水应用中安装。 NASA-JSC参与了摩擦涂层的选择和测试,以及原型夹具的设计和测试。建立并测试了直径为4英寸和直径为8英寸的子级摩擦钳原型,以评估设计在不同载荷情况下的应变测量能力。测试揭示了初始设计概念的某些局限性,并进行了后续改进以提高系统的测量性能。这项研究是NASA-JSC与Astro Technology Inc.合作开展的一项研究的一部分,这项研究被称为Clear Gulf。 Clear Gulf研究的主要目的是开发先进的仪器技术,以提高操作安全性并减少碳氢化合物泄漏的风险。 NASA提供了独特的见识,广泛的测试设施和技术专长,以推动有益于环境,公共和商业行业的技术。

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