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Energy efficiency challenge of waxy oil production by electric submersible pumps

机译:电动潜水泵生产蜡质油的能源效率挑战

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Abstract In this paper the solid wax formation in two live oils of the Samara region fields on five operating pressures with different contents of high molecular substances were examined. For both oil samples a linear relation between wax appearance temperature and pressure was obtained. The study showed the inevitable transition of wax from the liquid phase to solid in the examined live oils under downhole conditions. This fact indicates a high probability of complications during well operations of these oilfields. If measures are not put in place to prevent the deposit formation in wells, there is a chance of complete blockage of tubing and flowlines by wax. These problems will lead to decrease in well flowrates to their shutdown, thereby increasing the operation costs to remove deposits and capital expenditures of oil production. Evaluation of the conditions for the wax precipitation in oil wells will allow to develop technology of prevention and remediation of previously formed organic deposits. The potential solid wax formation depth of both wells for minimum well flowrate of 20 m3 per day are calculated. The technology of continuous injection wax inhibitor in designed depth where formation of solid wax has not been observed yet is proposed.
机译:摘要本文研究了五种不同高分子物质含量的工作压力下,在萨马拉地区两个活性油中的固体蜡形成情况。对于这两种油样品,获得蜡出现温度和压力之间的线性关系。研究表明,在井下条件下,被检查的活油中蜡不可避免地从液相转变为固体。这一事实表明在这些油田的油井作业中发生并发症的可能性很高。如果没有采取措施防止井中沉积物的形成,蜡就有可能完全堵塞管道和输油管线。这些问题将导致关闭井的井流量减少,从而增加了消除沉积物的运营成本和石油生产的资本支出。对油井中蜡沉淀条件的评估将允许开发预防和修复先前形成的有机沉积物的技术。计算了每天最小井流量为20 m3时两个井的潜在固体蜡形成深度。提出了在尚未观察到固体蜡形成的设计深度连续注入蜡抑制剂的技术。

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