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Experimental Analysis of Water Based Drilling Fluid Aging Processes at High Temperature and High Pressure Conditions

机译:高温高压条件下水基钻井液时效过程的实验分析

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摘要

In efforts to render the safest, fastest, and most cost efficient drilling program for a high temperature and high pressure (HT/HP) well the maximization of drilling operational efficiencies is key. Designing an adequate, HT/HP well specific, drilling fluid is of most importance and a technological challenge that can greatly affect the outcome of the overall operational efficiency. It is necessary to have a sound fundamental understanding of the behavior that water-based muds (WBM) exhibit when exposed to HT/HP conditions. Therefore, in order to adequately design and treat a WBM for a HT/HP well specific drilling program, it is essential that the mud be evaluated at HT/HP conditions.Currently, industry standard techniques used to evaluate WBM characteristics involve aging the fluid sample to a predetermined temperature, based on the anticipated bottom hole temperature (BHT), either statically or dynamically, for a predetermined length, then cooling and mixing the fluid and measuring its rheological properties at a significantly lower temperature. This, along with the fact that the fluid is not subjected to the anticipated bottom hole pressure (BHP) during or after the aging process, brings to question if the properties recorded are those that are truly experienced down-hole. Furthermore, these testing methods do not allow the user to effectively monitor the changes during the aging process.The research in this thesis is focused on evaluating a high performance WBM and the current test procedures used to evaluate their validity. Experimental static and dynamic aging tests were developed for comparative analysis as well to offer a more accurate and precise method to evaluate the effects experienced by WBM when subjected to HT/HP conditions. The experimental tests developed enable the user to monitor and evaluate, in real-time, the rheological changes that occur during the aging of a WBM while being subjected to true BHT and BHP.Detailed standard and experimental aging tests were conducted and suggest that the standard industry tests offer false rheological results with respect to true BHT and BHP. Furthermore, the experimental aging tests show that high pressure has a significant effect on the rheological properties of the WBM at elevated temperatures.
机译:在努力为高温高压(HT / HP)井提供最安全,最快和最具成本效益的钻井程序时,最大限度地提高钻井作业效率是关键。设计适当的HT / HP井眼特定的钻井液非常重要,并且这是一项技术挑战,会极大地影响整体运营效率的结果。有必要对暴露于HT / HP条件下的水基泥浆(WBM)表现出的行为有基本的了解。因此,为了针对HT / HP井特定的钻井程序充分设计和处理WBM,必须在HT / HP条件下对泥浆进行评估。当前,用于评估WBM特性的行业标准技术涉及对流体样品进行时效处理根据预期的井底温度(BHT),以静态或动态方式将温度升至预定温度达预定长度,然后冷却和混合流体,并在明显较低的温度下测量其流变性。这以及在老化过程中或老化后流体不会受到预期的井底压力(BHP)的事实,使人们质疑所记录的特性是否是真正在井下经历过的特性。此外,这些测试方法不允许用户有效地监视老化过程中的变化。本文的研究集中在评估高性能WBM和当前用于评估其有效性的测试程序上。还开发了实验静态和动态老化测试以进行比较分析,以提供一种更准确,更精确的方法来评估WBM在承受HT / HP条件下所遭受的影响。开发的实验测试使用户能够实时监测和评估WBM在经受真正的BHT和BHP老化过程中发生的流变变化。进行了详细的标准和实验老化测试,并提出了该标准对于真正的BHT和BHP,行业测试提供了错误的流变结果。此外,实验性老化测试表明,高压在高温下对WBM的流变性具有重要影响。

著录项

  • 作者

    Zigmond Brandon;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en_US
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