Performance Evaluation of Wireline-Retrievable Downhole Chemical Injection System Used in HPHT Wells

P. He, Lei Zhao, O. Bello
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Abstract

Downhole chemical injection (DHCI) systems provide precise wellbore production chemical management by pumping down chemicals via dedicated injection lines. Worldwide installation of DHCI systems has steadily increased as a large proportion of high-pressure, high-temperature (HPHT) wells are continuously drilled and completed in deepwater and ultra-deepwater fields. Ultra-low variable rate application in HPHT wells can help to control deposition of scales and enhance injection efficiency, which can lead to improved environmental protection, lower operating costs, high equipment reliability, and improved topside space usage. One of the most common failures in DHCI systems is the breakdown of check valves. This issue is significant. Stringent requirements exist for a continuous injection rate above a certain cracking pressure, preventing flow from the injection line to the wellbore at shut-in conditions and creating a zero-leak seal that prevents reverse flow from the wellbore to the injection line. To meet these requirements, a so-called "check valve" design is generally used, in which a pressure differential valve is put in series with a check valve. The pressure differential valve sets the cracking pressure and shut-in pressure of the system while the check valve prevents reverse flow from the wellbore. This paper is part of a series effort for developing chemical injection solutions for HPHT wells. Previous work summarizes development and qualification of a pressure differential valve at higher flow rates, while this paper presents qualification tests conducted to assess the performance of the pressure differential valve and check valve as a system for HPHT applications under extreme low flow rates. The qualification tests include initial material selection based on a sophisticated gas test, a liquid flow endurance test and a post inspection, followed by a second-round test. Test results indicate that a bubble-tight check valve can be qualified to 0.0016 gpm to 0.047gpm with a pressure rating greater than 10,000 psi and 350° F. The pressure differential valve and check valve can be used in different applications other than DHCI systems.
高温高压井电缆可回收井下化学注入系统性能评价
井下化学注入(DHCI)系统通过专用注入管线泵入化学物质,提供精确的井筒生产化学管理。随着高压、高温(HPHT)井在深水和超深水油田的连续钻井和完井,全球范围内DHCI系统的安装量稳步增加。超低可变速率应用于高温高压井,有助于控制结垢,提高注入效率,从而改善环境保护,降低运营成本,提高设备可靠性,并改善上部空间利用率。DHCI系统中最常见的故障之一是止回阀的故障。这个问题很重要。严格要求连续注入速度高于一定的开裂压力,以防止在关井条件下从注入管线流入井筒,并创建零泄漏密封,防止从井筒流向注入管线。为了满足这些要求,通常采用所谓的“止回阀”设计,其中压差阀与止回阀串联。压差阀设置系统的破裂压力和关井压力,而止回阀防止井筒倒流。本文是开发高温高压井化学注入溶液系列工作的一部分。之前的工作总结了高流量下压差阀的开发和鉴定,而本文则介绍了在极低流量下进行的鉴定试验,以评估压差阀和止回阀作为高压高压应用系统的性能。资格测试包括基于复杂气体测试、液体流动耐久性测试和后期检查的初步材料选择,然后是第二轮测试。测试结果表明,在额定压力大于10,000 psi和350°f的情况下,气泡密封止回阀可以满足0.0016 gpm至0.047gpm的要求。压差阀和止回阀可以用于DHCI系统以外的不同应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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