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VALVE AUTOMATION FOR OIL PIPELINE SAFETY

机译:管道自动化的阀门自动化

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摘要

Most pipeline codes, do not stipulate any requirement for block valve spacing nor for remote pipeline valve operations along transmission pipelines carrying low vapor pressure petroleum products. This requirement is generally industry driven for their desire to proactively control hazards and mitigation of environmental impacts in the event of pipeline ruptures or failures causing hydrocarbon spills. This paper will highlight a summary of pipeline codes for valve spacing requirements and spill limitation in high consequence areas along with a criteria for an acceptable spill volume that could be caused by pipeline leak/full rupture. A technique for deciding economically and technically effective pipeline block valve automation for remote operation to reduce oil spill and thus control of hazards is also provided. The criteria for maximum permissible oil spill volume, is based on industry's best practice. The application of the technique for deciding valve automation as applied to three initially selected pipelines (ORSUB, OSPAR and ORBEL) is discussed. These pipeline represent about 14% of the total (6,800 kilometers, varying between 6" to 42") liquid petroleum transmission lines operated by Petobras Transporte S.A. (Transpetro) in Brazil. Results of the application of the technique is provided for two of the pipelines: OSPAR (117 Km, 30" line) and ORBEL II (358 Km 24" line), both carrying large volumes of crude oil.
机译:大多数管道规范都没有规定对截止阀间距的任何要求,也没有规定沿输送低蒸气压石油产品的输送管道的远程管道阀操作。这项要求通常是由工业驱动的,因为他们希望在管道破裂或导致烃类泄漏的故障中主动控制危害并减轻环境影响。本文将重点概述阀位要求和高泄漏区域的泄漏限制的管道规范,以及可能由管道泄漏/完全破裂引起的可接受泄漏量的标准。还提供了一种技术,该技术用于决定经济和技术上有效的管道截止阀自动化以进行远程操作,以减少漏油并因此控制危险。最大允许溢油量的标准基于行业的最佳实践。讨论了确定阀门自动化的技术应用于三个最初选择的管道(ORSUB,OSPAR和ORBEL)的应用。这些管道约占巴西Petobras Transporte S.A.(Transpetro)运营的液体石油传输线总数的14%(6,800公里,介于6英寸至42英寸之间)。该技术的应用结果提供给两条输送大量原油的管道:OSPAR(117 Km,30“管道)和ORBEL II(358 Km,24”管道)。

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