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首页> 外文期刊>Brazilian journal of chemical engineering >Study of Continuous Rheological Measurements in Drilling Fluids
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Study of Continuous Rheological Measurements in Drilling Fluids

机译:钻井液连续流变测量的研究

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Abstract Drilling an oil well involves using drilling fluids that perform cleaning and cooling functions, but that most importantly maintain the fluids of the geological formation contained by hydraulic pressure. A fundamental role in predicting the hydraulic pressure of the well consists of monitoring the fluid?¢????s rheological behavior. This paper summarizes an ongoing effort to measure, by evaluating the performance of two online viscometers, drilling fluids?¢???? rheological behavior in real time. One online method proposes a modified Couette system. The other consists of a standard pipe viscometer with default modeling. The performances of the online devices were compared with an offline method - a Couette device commonly used in oilfields as a benchmark. For Newtonian fluids, agreement between the rheological behaviors was found for all instruments, validating the methodology proposed. For non-Newtonian fluids, there were divergences, which were investigated and their probable causes determined to be the following: homogeneity, slippage effects, and interaction in the fluid/gap interfaces. A case study demonstrated that these divergences were not significant during the prediction of hydraulic pressure, meaning that the methodology proposed has the potential to improve overall drilling performance.
机译:摘要钻油井涉及使用具有清洁和冷却功能的钻井液,但最重要的是要保持液压所包含的地质构造液。预测井的液压压力的基本作用是监视流体的流变性。本文总结了通过评估两个在线粘度计,钻井液的性能来进行测量的一项持续性工作。实时流变行为。一种在线方法提出了一种改进的Couette系统。另一个包括具有默认建模的标准管道粘度计。将在线设备的性能与离线方法进行了比较-离线方法是在油田常用的Couette设备作为基准。对于牛顿流体,所有仪器的流变行为之间都存在一致性,从而验证了所提出的方法。对于非牛顿流体,存在分歧,对此进行了调查,并将其可能的原因确定为以下各项:均匀性,滑移效应以及流体/间隙界面中的相互作用。案例研究表明,在预测液压压力时这些差异并不明显,这意味着所提出的方法具有改善整体钻井性能的潜力。

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