首页> 外文会议>Offshore technology conference >Operators Optimize High-Pressure/High-Temperature and Ultrahigh-Pressure Perforation Strategies Using Laboratory Testing
【24h】

Operators Optimize High-Pressure/High-Temperature and Ultrahigh-Pressure Perforation Strategies Using Laboratory Testing

机译:操作员使用实验室测试优化高压/高温和超高压穿孔策略

获取原文
获取外文期刊封面目录资料

摘要

Multiple perforation laboratory programs have been conducted during recent years to support high-pressure/ high-temperature (HP/HT) and ultrahigh-pressure (UHP) oil and gas field developments at various offshore locations globally. This paper highlights six such projects that supported activities within the Asia-Pacific, North Sea, and US Gulf of Mexico (GOM) (both Miocene and Lower Tertiary) regions. Each program was designed and conducted in collaboration with an operator and field operations personnel to help reduce potential risks, improve operational efficiency, and optimize well performance across a variety of challenging environments. Laboratory experiments were based on API RP 19B Sections 2 and 4, with test conditions customized to match specific downhole environments of interest (rock and fluid properties, stress, pressure, temperature, and flow scenarios). Matching downhole conditions at the laboratory proved important because this yields results that can be quite different from those obtained at surface (or scaled) test conditions. Reliable estimations of field perforation skin, sanding propensity, and the effectiveness of subsequent stimulation operations depend on realistic perforation and flow data obtained at relevant downhole conditions. The overriding goal for test design is to create and expose the laboratory perforation in an environment that matches its field counterpart as closely as possible. Beyond obtaining accurate flow data for skin and/or sanding propensity determination, post-test diagnostics, such as computed tomography (CT) and optical techniques, provide additional essential insight into the characteristics of the perforation tunnel, core interior, and the hole through the casing and cement. Results from these various programs were used to confirm or, in some cases, guide the field perforating strategy.
机译:近年来多穿孔实验室方案已经进行了以支持高压/高温(HP / HT)和超高压(UHP)石油和天然气领域的发展在不同的离岸地点全局。本文的亮点是支持的亚太地区,北海和美国墨西哥湾(GOM)内活动的六个这样的项目(包括新统和下第三系)的区域。每个程序的设计,并与运营商和现场操作人员,帮助合作开展减少潜在的风险,提高在各种具有挑战性的环境中运作效率,优化性能良好。实验室实验是基于API RP 19B第2和第4,用测试条件定制,以匹配所关注的特定的井下环境(岩石和流体性质,应力,压力,温度和流量的场景)。在实验室匹配井下条件证明了重要的,因为这产生的结果,可以是从在表面(或缩放的)的测试条件得到的那些完全不同。场穿孔皮肤的可靠估计,砂光倾向,和随后刺激的操作的有效性依赖于现实穿孔和流动在相关井下条件获得的数据。为测试设计的首要目标是创造和其对应的领域作为尽可能一致的环境暴露实验穿孔。除了获得用于皮肤和/或砂磨倾向判定精确的流量数据,检测后诊断,诸如计算机断层扫描(CT)和光学技术,提供额外的必要洞察射孔孔道,芯内部的特征,并通过该孔套管和水泥。从这些不同的方案结果被用来确认或在某些情况下,引导场射孔方案。

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