首页> 外文会议>Chinese Materialsonference >Coupling Effect of Transient Temperature-Pressure on Casing String During Volume Fracturing in Shale Gas Wells
【24h】

Coupling Effect of Transient Temperature-Pressure on Casing String During Volume Fracturing in Shale Gas Wells

机译:瞬态温度压力对页岩气井体积压裂过程中壳体串的耦合作用

获取原文
获取外文期刊封面目录资料

摘要

Casing deformation has been found to be a very significant issue in the development process of shale gas in China, while the coupling effect of transient temperature-pressure has a significant impact on casing stress, and worthy of study. This paper presented a new numerical investigation to understand the coupling effect of transient temperature-pressure on casing string during volume fracturing. A wellbore temperature model was established to obtain the required input parameters of dynamic temperature boundary. The numerical model considers the coupling effect of transient temperature-pressure and the various cement sheath shapes. The results showed that the temperature of casing changed drastically during fracturing. Under the influence of the coupling effect of transient temperature-pressure, (a) when the cement sheath shape was integrity, the casing stress increased greatly and showed dynamic changes: first increased and then decreased, (b) when there was deficiency in cement sheath, with the increase of the eccentric distance or deficiency angle, the casing stress increased aggravating risk of casing deformation. Rotating the casing string during the cementing process to avoid the deficiency in cement sheath or using warm fracturing fluids to minimize the influence of the coupling effect of transient temperature-pressure are possible innovative strategies to solve these difficult problems.
机译:已经发现套管变形是中国的页岩气的开发过程中的一个非常重要的问题,而瞬态温度压力的耦合效果对套管应力产生重大影响,并且值得研究。本文介绍了一种新的数值调查,了解瞬态温度压力对体积压裂过程中套管串的耦合效应。建立了井筒温度模型,以获得动态温度边界所需的输入参数。数值模型考虑瞬态温度 - 压力和各种水泥鞘形状的耦合效应。结果表明,在压裂过程中壳体的温度急剧发生变化。在瞬态温度 - 压力耦合效应的影响下,(a)当水泥鞘形状完整性时,壳体应力大大增加并显示出动态变化:首先增加,然后减少,(b)在水泥护套缺乏时随着偏心距离或缺陷角的增加,壳体应力增加了壳体变形的加剧风险。在固井过程中旋转壳体串以避免水泥护套的不足或使用温暖的压裂流体来最小化瞬态温度 - 压力的耦合效应的影响是解决这些难题的创新策略。

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