首页> 外文会议>SPE Oil and Gas India Conference and Exhibition >Pressure Build up Study with Echo Meter Data-A Case Study of NE Field
【24h】

Pressure Build up Study with Echo Meter Data-A Case Study of NE Field

机译:回声仪表数据压力建立研究 - 以网元田径为例

获取原文

摘要

The NE field is located in Barmer Basin, Rajasthan, India. The field is on production with two wells since March 2015 and is currently producing about 1100 bopd. Both the wells are completed with progressive cavity pumps (PCPs). Production is being carried through a small production facility (QPF). The presence of pumps in the well makes the acquisition of pressure build up (PBU) data complex. However, gathering a PBU was considered an important part of gauging reservoir performance. This paper details how an echometer was used in one of the wells for acquiring Pressure Build Up data. The echo-meter was used to measure dynamic fluid levels in the casing-tubing annulus; these were used to estimate reservoir pressure and other properties in a cost effective manner. The paper discusses a systematic approach in echo-meter based well test design, execution challenges and the PTA of the acquired data. The well was flowing with a drawdown of about 100 psi and the liquid level in the annulus was about 100m from the top. The direct collection of PBU data would have required a work-over to remove the pump to place the gauge. This would need to be repeated to retrieve the gauge. A novel & cost effective approach was required to acquire pressure build up data. An alternate option was acquiring the pressure data indirectly by measuring the continuous dynamic level in the annulus using an echo-meter. Although this option had its own challenges, it was economically justified. The required number of echo-meter shots and frequency of the shots was selected based on well test design. The test design provided guidance on the pressure build up rate required for damaged (skin) and non-damaged conditions, permitting us to identify the pressure build up duration and the optimum frequency of the echometer shots. One challenge was concern over annulus liquid level rise in the wellbore. This was addressed prior to the build-up by injecting nitrogen into the annulus to reduce the liquid level in the annulus. This mitigated the possibility of liquid level rise in the annulus to the wellhead. The quality of the pressure data acquired through echometer shots was good enough for carrying out pressure transient analysis. The pressure derivative plot was constructed and information on skin & permeability was obtained. Radial flow signature was clearly observed. The average reservoir pressure value as well as the permeability agreed with expectations. The impact of uncertainties on the final interpretation was evaluated and found to be in acceptable range. In current oil price environment and in marginal fields like NE, where there is always a constraint on economics, this low cost technique can be a vital tool for effective reservoir management.
机译:NE领域位于印度拉贾斯坦邦的Barmer Basin。该领域自2015年3月以来,该领域正在制作两个井,目前正在制作大约1100个Bopd。井中的井层都与渐进式腔泵(PCP)完成。生产正在通过小型生产设施(QPF)进行。井中存在泵的存在使得采集压力积聚(PBU)数据复杂。然而,收集PBU被认为是测量水库表现的重要组成部分。本文详细说明了如何在用于获取压力建立数据的井之一中使用ECH计。回声计用于测量壳管环中的动态流体水平;这些用于以成本效益的方式估算储层压力和其他性质。本文讨论了基于回声计的井测试设计,执行挑战和所获取数据的PTA的系统方法。井流动的缩小为约100psi,环中的液位距离顶部约100米。 PBU数据的直接收集将需要一个工作,以拆下泵以放置仪表。这需要重复检索仪表。需要一种新颖性和成本效益的方法来获得压力建立数据。替代选择通过使用回声仪测量环空中的连续动态水平来间接获取压力数据。虽然这种选择有自己的挑战,但它在经济上有理由。基于井测试设计选择所需的回声仪镜像和频率的频率。测试设计提供了有关损坏(皮肤)和非损坏条件所需的压力累积率的指导,允许我们识别压力积聚持续时间和回声计射击的最佳频率。一个挑战是对井筒环液位升高的关注。通过将氮气注入环形以降低环空的液位之前,在积聚之前解决了这一点。这种减轻了液位升高到井口的可能性。通过Echometer射击获取的压力数据的质量足以进行压力瞬态分析。构建了压力衍生图,获得了有关皮肤和渗透性的信息。清楚地观察到径向流量签名。平均储层压力值以及渗透率同意预期。评估不确定性对最终解释的影响,并发现是可接受的范围。在目前的油价环境和NE等边缘领域,那里总有一个经济学的限制,这种低成本技术可以成为有效水库管理的重要工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号