建立商业油井井底流动压力的多层次统计模型

IF 0.2 Q4 ENGINEERING, MULTIDISCIPLINARY
I. Ponomareva, V. Galkin, A. Rastegaev, Sergey Vl. Galkin
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引用次数: 0

摘要

井底流动压力(BHFP)的确定是油井生产监测的主要任务之一。Perm krai的绝大多数井都使用井内泵进行服务,这使得直接测量井底流动压力变得困难。这些井的BHFP通常是通过重新计算在井口测量的参数(环空压力、动态液位深度)来确定的。重新计算是通过分析确定井筒中气液混合物的特性来完成的,由于混合物的复杂行为,计算结果非常不一致。本文提出了一种本质上不同的BHFP测量方法,该方法依赖于对4000多个平行口的发现进行数学处理,并对大型产油区的油井进行深入调查。因此,建立了多元数学模型,可以可靠地确定生产井的BHFP。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Developing multilevel statistical models of determining bottom-hole flowing pressure in commercial oil well operations
One of the major tasks of monitoring oil production well operations is to determine bottom-hole flowing pressure (BHFP). The overwhelming majority of wells in the Perm krai are serviced using borehole pumps, which makes it difficult to take direct bottom-hole flowing pressure measurements. The BHFP in these wells is very often determined by recalculating the parameters measured at the well mouth (annulus pressure, dynamic fluid level depth). The recalculation is done by procedures based on analytically determining the characteristics of the gas-liquid mixture in the wellbore, which is very inconsistent to perform due to the mixture’s complex behavior. This article proposes an essentially different approach to BHFP measurements, that relies on the mathematical processing of the findings of more than 4000 parallel mouth and deep investigations of the oil production wells of a large oil-production region. As a result, multivariate mathematical models are elaborated that allow reliably determining the BHFP of oil-production wells in operation.
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来源期刊
Ingenieria UC
Ingenieria UC ENGINEERING, MULTIDISCIPLINARY-
自引率
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发文量
8
审稿时长
12 weeks
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