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首页> 外文期刊>Journal of Computational Methods in Sciences and Engineering >Comparative investigations into dynamic rheological modeling of the water-based drilling fluid under HTHP conditions
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Comparative investigations into dynamic rheological modeling of the water-based drilling fluid under HTHP conditions

机译:HTHP条件下水基钻井液动态流变模型的比较研究

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摘要

An accurate HTHP rheological model is essential for safe and economical deep drilling. In this work, the water-based fluid applied in Southwest China Gas Fields is selected as a typical example to systematically explore rheological modeling at elevated temperature(up to 180°C) and pressure(up to 100 MPa). The HTHP rheological behavior of water-based drilling fluid was firstly investigated. Then general rheological modeling approaches and specific HTHP modeling process have been employed to establish an accurate HTHP rheological model. The results showed that for general rheological models, the Bingham model appears to be more suitable to predict the transient rheology at constant conditions; under HTHP conditions, a dynamic rheological model has been established using the relative dial reading method modified by the direct fitting, whose prediction deviation was in the range of -7.13%~10.63%, meeting in-field application requirements well. This research will be useful to direct a comprehensive rheological treatment, and will also enrich the modeling strategy of HTHP rheology for drilling fluids.
机译:准确的HTHP流变模型对于安全且经济的深钻至关重要。在这项工作中,以西南气田使用的水基流体为典型实例,系统地研究了在高温(最高180°C)和压力(最高100 MPa)下的流变模型。首先研究了水性钻井液的高温高压流变行为。然后采用一般的流变建模方法和特定的HTHP建模过程来建立准确的HTHP流变模型。结果表明,对于一般的流变模型,Bingham模型似乎更适合于在恒定条件下预测瞬态流变。在高温高压条件下,采用直接拟合修正的相对表盘读数法建立了动态​​流变模型,其预测偏差在-7.13%〜10.63%范围内,很好地满足了现场应用的要求。这项研究将有助于指导全面的流变学处理,并将丰富HTHP钻井液流变学的建模策略。

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