...
首页> 外文期刊>Journal of Petroleum Science & Engineering >Quemada model approach to oil or synthetic oil based drilling fluids rheological modelling
【24h】

Quemada model approach to oil or synthetic oil based drilling fluids rheological modelling

机译:QUEMADA模型探讨油或合成油基钻井液流变模型

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Understanding and modelling the deviations from Newtonian behavior of synthetic-based drilling fluids (SBFs) is essential to design optimal flow systems and efficient cuttings transport. This research develops a better insight into synthetic fluid rheology based on the theory of internal structural units (SUs) suspensions. Although different studies have been proposed to characterize SBF rheology, yield stress and time dependency proved difficult to determine. This study explains how most difficulties disappear when taking thixotropy into account. The behavior of structural units and effective volume fractions as a function of shear rate, has been analyzed by Qemada (1998) to develop a rheological model for particles suspension. This rheological model has been modified to describe the behavior of SBFs. For validation purposes, an industrial SBF used for drilling in a shale reservoir is analyzed. A novel experimental procedure is proposed that makes extensive use of rotational rheometers to estimate the parameters of the model. Various combinations of temperatures and resting times have been tested to develop semi-empirical correlations for the model parameters. In addition, a practical use of the model is demonstrated by accurately estimating the settling of retrieved shale cuttings through the analyzed synthetic fluid. The experimental protocol represents a design tool for onshore and offshore drilling operations that involve SBFs, with potential improvements on optimization of flow systems and cuttings transport efficiency.
机译:理解和建模牛顿钻井液(SBF)的牛顿行为偏差对于设计最佳流动系统和有效的切屑运输是必不可少的。该研究基于内部结构单元(SUS)悬浮液理论,对合成流体流变学具有更好的洞察。虽然已经提出了不同的研究表征了SBF流变学,但屈服应力和时间依赖性难以确定。本研究解释了在考虑到触变性时,大部分困难如何消失。 QEMDA(1998)分析了结构单元和有效体积分数作为剪切速率的函数,为颗粒悬浮液开发流变模型。这种流变模型已被修改以描述SBFS的行为。为了验证目的,分析了用于钻入页岩储层的工业SBF。提出了一种新的实验程序,使得大量使用旋转流变仪来估计模型的参数。已经测试了各种温度和休息时间的组合来为模型参数产生半经验相关性。此外,通过精确地估计通过分析的合成液来准确地估计检索的页岩切割的沉降来证明模型的实际使用。实验方案代表陆上和海上钻井操作的设计工具,涉及SBFS,具有对流量系统优化和扦插运输效率的潜在改进。

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