首页> 外文会议>SPE Annual Technical Conference and Exhibition >Novel Analyses and Design of Relief Wells Considering 3D Effects
【24h】

Novel Analyses and Design of Relief Wells Considering 3D Effects

机译:考虑3D效应的浮雕井的新型分析与设计

获取原文
获取外文期刊封面目录资料

摘要

In developing a relief well contingency,current industry standard practice is to use a one-dimensional(1D)multiphase flow model to determine the requirements such as pump rate and mud weight to kill the blowout well.However,this does not consider certain variables.For instance,this analysis returns the same results regardless of the intercept angle of the relief well(i.e.results are identical if the relief well intercepts at a steep angle into the direction of flow,or if it intercepts at a steep angle in the same direction of flow).A novel approach has been developed that considers the three-dimensional vector effects when a blowing out well is killed by means of a relief well intercept.This analysis offers safety and environmental benefits for well kill design and operations because it provides results which more accurately reflect the physical principles.This allows for optimization of a relief well design.For instance,this more comprehensive analysis allows the possibility to design a relief well with shallower intercept depth and lower pump requirements with the potential for an earlier kill.This new method considers the complex interaction of the countercurrent flow that occurs at the relief well intercept and can utilize computational fluid dynamics(CFD).This enables optimization of parameters previously not considered such as specific spray design from the relief well.For instance,industry currently assumes that there is an advantage to pumping the kill fluid down the annulus of the relief well.The frictional losses are lowered(compared to pumping down the drillstring),thereby minimizng the pump requirements and maximizing the achievable rate for given pump capability.Whilst this may indeed be the case,the research covered in this paper shows that,depending on the circumstances,there can be a benefit to designing the spray pattern from the flow from the relief well at the intercept.Various relief well kill cases were analyzed by both the standard method and the new method and the results compared.The new method predicted that relief well kills could be made with lower rates and pressures than predicted by the standard model.Using the new method offers an opportunity to increase the accuracy of relief well planning,enabling a more precise understanding of what may be achievable.A test apparatus was designed and created to verify which of the two methods was more accurate.Physical experiments indicate that results from the proposed method match the test results closer than the standard approach.
机译:在开发救济井意外事故时,现有的行业标准做法是使用一维(1D)多相流动模型来确定泵速和泥浆重量,以扼杀井喷的要求。然而,这不考虑某些变量。例如,这种分析返回相同的结果,而不管浮雕阱的截取角度如何(iEresults是相同的,如果浮雕很好地拦截到流动方向上,或者它在相同方向上截取陡峭角度流动的流程已经开发了新的方法,以通过释放速度释放吹出良好的吹出良好的三维向量效应。本分析为良好的杀戮设计和运营提供了安全和环境效益,因为它提供了结果更准确地反映物理原理。这允许优化浮雕良好设计。例如,这种更全面的分析允许设计的可能性具有较浅的拦截深度和较低泵要求的缓解,具有早期杀戮的潜力。这方法考虑了在浮雕阱截距处发生的逆流流的复杂交互,并且可以利用计算流体动力学(CFD)。这使得能够优化以前不被认为是特定的喷涂设计的参数。对于实例,行业目前假设有利于将杀灭液体泵送储存液井井下井下井下。摩擦损失降低(与泵送下来钻头),从而最小化泵的要求并最大化可实现的泵能力的可实现速率。这可能确实如此,本文涵盖的研究表明,根据情况,可以有利于设计喷雾模式的好处从拦截的浮雕井中的流量。通过标准方法和t的分析,分析了释放良好杀死病例他的新方法和结果比较。新方法预测,可以通过标准模型预测的速度和压力来制造浮雕良好杀戮。采用新方法提供了增加浮雕规划准确性的机会,使得更加有机会精确了解可能是可实现的内容。设计并创建测试设备以验证两种方法中哪一种更准确。物理实验表明,所提出的方法的结果与标准方法更接近测试结果。

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