瞬态行为的环境问题

Gareev Aa
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引用次数: 0

摘要

目前,我们正目睹油田在产量下降阶段的高开采率。这种下降是油田枯竭的结果,这导致使用动态扬程低于饱和压力的电潜泵(ESP)。在这种工作模式下,ESP的效率会下降,导致其工作元件在工作过程中过热。井水沸腾和盐沉积可能发生在过热的泵中。这反过来又会导致离心泵过早失效,降低这种采油方法的经济可行性。为了消除过早的故障,这些装置必须转换到定期停机的工作模式。然而,脱扣和重新启动时间表的规划是在缺乏适当的理论依据的情况下进行的。由于电缆线路电阻降低或盐沉积,这种规划往往会导致ESP故障。为了防止盐沉积,石油生产公司使用不同的化学品,这些化学品被泵入井眼环空,并期望在泵入泵罐时阻止盐沉积。化学处理实践表明,这些试剂的性能很差,可能根本无法防止盐沉积。在现实中,化学化合物会破坏井下设备及其结构元件。长期使用这些试剂可能会导致生态灾难——生产地层和承压地下水位受到污染。本文探讨了无盐沉积的周期性ESP作业和不使用化学试剂的油田开发的可能性。开发一种不含盐的定期作业方法,可以避免在采油过程中使用试剂,从而降低生态灾害的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Environmental Issues of Transient Behavior
We are currently witnessing a high-rate of exploitation of oil fields at the stage of declining production. This decline is a result of the depletion of oil fields, which leads to the use of electric submersible centrifugal pumps (ESP) with dynamic head below saturation pressure. In this operating mode, the ESP’s efficiency deteriorates, leading to the overheating of its working elements during operation. The boiling of water contained in the wellstream and salt deposition can take place in an overheated pump. This, in turn, can lead to a premature failure of the centrifugal pump and reduce the economic viability of this oil production method. To eliminate premature failure, such units must be transferred to an operating mode with periodic shutdowns. Yet, the planning of trip-out and restart time schedules is performed in the absence of a proper theoretical justification. Such planning often leads to ESP failures due to the reduction of the electric resistance of cable lines or salt deposition. To prevent salt deposition, oil production companies use different chemicals, which are pumped into the hole annulus and are expected to stop salt deposition when propelled into the pump pot. Chemical treatment practice shows that these reagents perform poorly and may not prevent salt deposition at all. In reality, chemical compounds can damage downhole equipment and its structural elements. Long-term use of these reagents may lead to ecological disaster – the contamination of productive formations and confined groundwater beds. This work investigates the possibility of ESP operation in periodic mode without salt deposition and the exploitation of oil fields without the application of chemical reagents. The development of a periodic operation method allowing for ESP operation without salt deposition could eliminate the use of reagents in oil production and thereby reduce the risk of ecological disasters.
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