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FORMULATION AND ANALYSIS OF THE PROBABILITY OF DETECTION AND FALSE DETECTION FOR SUBSEA LEAK DETECTION SYSTEMS

机译:浅层泄漏检测系统检测与伪检测概率的公式与分析

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Insuring the integrity of subsea process component is one of the primary business objectives for oil and gas industry. One of the systems used to insure reliability of a pipeline, is the Leak Detection System (LDS). Different leak detection systems use different technologies for detecting and locating leaks that could result from pipelines. One technology in particular that is gaining wide acceptance by the industry is the optical leak detection systems. This technology has great potential for subsea pipelines applications. It is the most suited for underwater applications due to the ease of installation and reliable sensing capabilities. Having pipelines underwater in the deep sea present a greater challenge and a potential threat to the environment and operation. Thus, there is a need to have a reliable and effective system to provide the assurances that the monitored subsea pipeline is safe and functioning as per operating conditions. Two important performance parameters that are of concern to operators are the probability of detection and probability of false alarm. This article presents a probabilistic formulation of the probability of detection and probability of false detection for fiber optic LDS based systems.
机译:确保海底工艺组件的完整性是石油和天然气行业的主要业务目标之一。用于确保管道可靠性的系统之一是泄漏检测系统(LDS)。不同的泄漏检测系统使用不同的技术来检测和定位可能由管道引起的泄漏。特别地,一种被业界广泛接受的技术是光泄漏检测系统。该技术在海底管道应用中具有巨大的潜力。由于易于安装和可靠的感应功能,它最适合水下应用。在深海中将管道置于水下会带来更大的挑战,并对环境和运营构成潜在威胁。因此,需要一种可靠且有效的系统来提供保证,即所监测的海底管线是安全的并且根据操作条件起作用。操作员需要关注的两个重要性能参数是检测的概率和错误警报的概率。本文介绍了基于光纤LDS的系统的检测概率和错误检测概率的概率表述。

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