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Maintaining Horizontal Well Stability During Shale Gas Development

机译:在页岩气体开发期间保持水平井稳定性

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Along with the development of unconventional resource, an increasing number of researches and field operations have been focusing on horizontal shale gas well. The most crucial element of a horizontal well is to enlarge the drainage area, subsequently enhance the well productivity. The technique of hydraulic fracturing has been accepted as an industry standard in developing shale gas play. Therefore, the casing-cement-shale system in the horizontal well should be able to survive from any potential variation of temperature and pressure during well stimulations. The current horizontal well design for casing burst resistance and collapse resistance have been improved by some researchers. Little research can be found to consider the mechanical behavior of shale during the development of a horizontal shale gas well. This paper focuses on the instability of shale behind the casing and cement in a horizontal shale gas well. The variation of Von-Mise stress with time resulting from the wellbore flowing fluid in the horizontal well is predicted. The proposed model also quantitatively elaborates the difference of temperature distribution in horizontal shale cased hole and open hole. Well stimulation fluid with lower temperature is found to increase the risk of failure in the horizontal shale well. With the model, the down-hole instability of shale gas play in horizontal wells can be evaluated confidently.
机译:随着非传统资源的发展,越来越多的研究和现场运营一直专注于水平页岩气井。水平井的最重要元素是扩大排水区,随后提高良好的生产率。液压压裂技术已被接受为发展页岩气相中的行业标准。因此,水平井中的壳体 - 水泥页面系统应该能够在井刺激期间的温度和压力的任何潜在变化中存活。一些研究人员改善了用于套管突发抗性和塌陷性的电流水平阱设计。可以发现在水平页岩气井开发过程中考虑页岩的机械行为很少。本文侧重于壳体背后的页岩的不稳定,在水平的页岩气井中井。预测了由水平阱中的井筒流动流体产生的时间的von-mise应力的变化。所提出的模型也定量地阐述了水平页岩套孔孔和开孔中温度分布的差异。发现温度较低的良好刺激液会增加水平页岩中失效的风险。通过该模型,可以自信地评估水平孔中页岩气相的下孔不稳定性。

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