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Back From the Abyss: A Case Study of the Condition of a Thermoplastic- Hose Umbilical After Extended Service in Deep Water

机译:从深渊回来:在深水中扩展服务后热塑性软管脐带的病情

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This paper attempts to shed some light on the deepwater performance capabilities of subsea umbilicals incorporating thermoplastic hoses as fluid conduits and for provision of hydraulic power, by reporting and discussing the significance of the empirical findings derived from a case study of a section of thermoplastic-hose (TPH) umbilical salvaged after deployment in the deepwater Zafiro field offshore Equatorial Guinea for more than a decade. It is of utmost environmental and economic importance for an umbilical to perform safely and reliably throughout the productive life of a subsea oil and gas project. Offshore oil and gas producers have used TPH umbilicals beneficially for more than 30 years to link remote and/or subsea wells with operating facilities. As offshore E&P has moved into ever deeper water, the performance capabilities of TPH umbilicals increasingly have been challenged, both in the field and in the minds of deepwater operators, despite steady improvements in umbilical construction methods and materials of construction, alike. Today, TPH umbilicals are manufactured to exacting technical design standards and quality is carefully monitored and verified throughout the manufacturing process. However, uncertainty about TPH umbilical capabilities persists in part because of a dearth of publicly available, scientific data evaluating their performance in the field. This case study contributes such hard-to-get credible scientific data to the public record by documenting the extent of physical and chemical degradation suffered by a TPH umbilical following extended deployment in deep water. The author describes the physical design, dimensions, and technical characteristics of a salvaged TPH umbilical and the conditions under which it was utilized, including the water depth in which deployed, the role played in the Zafiro field, and operating conditions during deployment. The author describes the testing methodology and the results of various tests performed upon the umbilical to determine its physical and chemical condition to establish a scientific basis for drawing conclusions about the safety and reliability of TPH umbilicals in deep water.
机译:本文试图通过将热塑性软管作为流体管道的海底脐带的深水性能能力进行一些光,并通过报告和讨论源自热塑性软管截面截面的实证发现的重要性,提供液压动力(TPH)在深水Zafiro领域部署后的脐带销售近年来赤道几内亚十多年。对于在海底石油和天然气项目的生产寿命中安全可靠地进行安全可靠的脐带,这是极大的环境和经济意义。海上石油和天然气生产商有利地使用TPH脐带30多年来将遥控器和/或海底井连接到运营设施。由于海上E&P已经进入更深的水,尽管脐带施工方法和建筑材料的材料稳步改善,但TPH脐部的性能越来越越来越受到挑战的挑战,这是脐带施工方法和建筑材料的稳态。如今,TPH脐带制造成严格的技术设计标准,并在整个制造过程中仔细监测和验证质量。然而,由于公开可用的科学数据的缺乏评估其在该领域的性能,因此,对TPH脐带能力的不确定性仍然存在。本案例研究通过记录在深水中扩展部署后的TPH脐部的物理和化学降解的程度来提高公共记录的难以获得的可信科学数据。作者描述了拯救的TPH脐带的物理设计,尺寸和技术特征以及其使用的条件,包括部署的水深,在Zafiro领域中发挥的作用以及部署期间的操作条件。作者描述了测试方法论和在脐带上进行的各种测试的结果,以确定其物理和化学条件,以确定关于深水中TPH脐带的安全性和可靠性的基础。

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