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Evaluation of OiW measurement technologies for deoiling hydrocyclone efficiency estimation and control

机译:OiW测量技术对水力旋流器除油效率估算和控制的评估

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Offshore oil and gas industry has been active in the North Sea for more than half a century, contributing to the economy and facilitating a low oil import rate in the producing countries. The peak production was reached in the early 2000s, and since then the oil production has been decreasing while the water cut has been increasing rapidly. The water dominates some of the wells and a water cut of 90% is not uncommon, where all of the water has to be separated from the oil before it is discharged into the ocean. As the oil cut in the Danish part of the North Sea decreases the pumped volume is increased to reach the desired oil production capacity, consequently the discharged amount of oil increases. This leads to oceanic pollution, which has been linked to various negative effects in the marine life. The current legislation requires a maximum oil discharge of 30 parts per million (PPM). The oil in water (OiW) concentration is difficult to measure and currently is done manually and offline. This poses a challenge in continuously monitoring the actual amount of oil that is being discharged into the ocean. Our goal is to optimize the separation efficiency in a deoiling hydrocyclone, by developing a novel control technology which is based on online and dynamic OiW measurements. This article evaluates some currently available online measuring technologies to measure OiW, and the possibility to use these techniques for hydrocyclone efficiency evaluation, model development and as a feedback parameter. We additionally look at particle size measurements, as they play a big role in the separation process' efficiency.
机译:海上石油和天然气工业在北海活跃了半个多世纪以上,为经济促进了生产国的低油进口率。在2000年代初期达到了峰值生产,从那时起,石油产量一直在减少,而水切割一直在迅速增加。水占据了一些井中的水平,90%的水切口并不少见,其中所有的水必须在排入海洋之前与油分离。由于北海丹麦部分的油减少,泵浦体积增加以达到所需的油生产能力,因此排出量的油增加。这导致海洋污染,这与海洋生物中的各种负面影响有关。目前的立法需要最大的油性放油量为每百万份(PPM)。水中的油(OIW)浓度难以测量,目前是手动和离线完成的。这在不断监测进入海洋的实际油的挑战方面取得了挑战。我们的目标是通过开发基于在线和动态OIW测量的新型控制技术来优化DeoIning Hydrocyclone中的分离效率。本文评估了一些目前可用的在线测量技术来测量OIW,以及利用这些技术用于水力旋流效率评估,模型开发和反馈参数的可能性。我们还看看粒度测量,因为它们在分离过程中发挥着重要作用。

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