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LEAK DETECTION USING DISTRIBUTED TEMPERATURE SENSING: AN IMPROVED CALCULATION METHOD

机译:使用分布式温度传感泄漏检测:改进的计算方法

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This paper presents an efficient calculation to determine the transient heat transfer in ground surrounding a liquid pipeline. This improved calculation method was applied to support a feasibility assessment regarding implementation of Distributed Temperature Sensing (DTS) fibre optic systems for detection of leaks on an oil pipeline spanning long distances and varied geological conditions. With DTS, a leak or rupture could be detected if a portion of the sensor that is soaked is heated or cooled by leaked fluid. In many scenarios the temperature difference of a small leak may approach the sensing limits of the technology; calculating this limit requires an accurate understanding of the expected thermal characteristics of the fluid and soil surrounding the pipeline to identify where the technology is suitable and to calibrate accordingly. The method discussed in this paper was developed for use in heavy oil pipelines, for which changes in temperature have a large effect on the fluid viscosity, and therefore on frictional pressure losses. The model predicts the temperature profile in the soil surrounding a pipeline, including a number of transient effects. The model and results obtained are useful to identify optimal placement of a DTS cable, given a target size of detectable leak, time of year, and a number of parameters specific to the pipeline design. Importantly, this approach addresses changing geological conditions along the length of a pipeline, allowing an assessment of coverage and performance year round for the line under the most conservative case.
机译:本文提出了有效的计算,以确定液体管道周围地面的瞬态传热。应用这种改进的计算方法支持关于分布式温度感测(DTS)光学系统的可行性评估,用于检测跨越长距离和变化的地质条件的油管道上的泄漏。利用DTS,如果通过泄漏的流体加热或冷却的传感器的一部分传感器,可以检测泄漏或破裂。在许多情况下,小泄漏的温差可以接近技术的传感限制;计算该限制需要准确地理解围绕管道围绕管道的流体和土壤的预期热特性,以识别该技术适合并相应地校准的地方。本文讨论的方法是开发用于重油管道的方法,其温度变化对流体粘度有很大的影响,因此对摩擦压力损失有很大影响。该模型预测管道周围的土壤中的温度曲线,包括许多瞬态效应。获得的模型和结果可用于识别DTS电缆的最佳放置,给定年度可检测泄漏,一年时间的时间和多个针对管道设计的参数。重要的是,这种方法解决了沿着管道的长度改变了地质条件,允许评估在最保守的情况下的线路的覆盖和性能。

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