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Rheological properties of oil-based drilling fluids at high temperature and high pressure

机译:高温高压下油基钻井液的流变性能

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The rheological properties of two kinds of oil-based drilling fluids with typically composition were studied at pressures up to 138 Mpa and temperatures up to 204 °C using the RheoChan 7400 Rheometer. The experimental results show that the apparent viscosity, plastic viscosity and yield point decrease with the increase of temperature, and increase with the increase of pressure. The effect of pressure on the apparent viscosity, plastic viscosity and yield point is considerable at ambient temperature. However, this effect gradually reduces with the increase of temperature. The major factor influencing the rheological properties of oil-based drilling fluids is temperature instead of pressure in the deep sections of oil wells. On the basis of numerous experiments, the model for predict the apparent viscosity, plastic viscosity and yield point of oil-based drilling fluids at high temperature and pressure was established using the method of regressive analysis. It is confirmed that the calculated data are in good agreement with the measured data, and the correlation coefficients are more than 0.98. The model is convenient for use and suitable for the application in drilling operations.
机译:使用较高至138MPa的压力和使用Rheochan 7400流变仪进行高达138MPa的压力和温度高达204℃的温度的水性钻孔流体的流变性能。实验结果表明,随着温度的增加,表观粘度,塑料粘度和屈服点随着压力的增加而增加。在环境温度下,压力对表观粘度,塑料粘度和屈服点的影响。然而,随着温度的增加,这种效果逐渐减少。影响油基钻井液流变性能的主要因素是温度而不是油井深部中的压力。在众多实验的基础上,采用逆变分析方法建立了预测高温和压力下的表观粘度,塑料粘度和屈服点的模型。确认计算的数据与测量数据吻合良好,相关系数大于0.98。该模型方便使用,适用于钻井操作中的应用。

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