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The Rheological Properties of Oil-Based Mud under High Pressure and High Temperature Conditions

机译:高压高温条件下油基泥浆的流变特性

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Designing a proper drilling fluid that can function properly under the conditions of High-Pressure, High-Temperature (HP/HT) operations is very challenging. Among these challenges is the alteration of the rheological properties of drilling fluid due to the high temperature and high pressure (Ibeh et. al, 2007). This work investigates the rheological behavior of oil-based drilling fluids with different properties at Ultra-HP/HT conditions using a state-of-the-art viscometer capable of measuring drilling fluids properties up to 600°F and 40,000 psi. For this purpose, two actual oil based mud samples used by industry with the same mud weight (12.5 ppg) were chosen to carry out a matrix of experiments. The results of this study led to concluding that the viscosity, yield point and gel strength decrease with increasing temperature (until the mud sample fails, for oil-based mud with regular formulation). This behavior is the result of the thermal degradation of the solid, polymers, and other components of the mud samples and the expansion of the molecular distances which will lower the resistance of the fluid to flow and, hence, its viscosity, yield point, and gel strength. Moreover, it is concluded that the viscosity and yield point increase as the pressure increases. Pressure’s effect on these parameters, however, is more apparent at low temperature (below failure point, for oil-based mud with regular formulation).
机译:设计合适的钻井液,使其在高压,高温(HP / HT)操作条件下可以正常工作,这是非常具有挑战性的。这些挑战之一是由于高温和高压导致钻井液流变性的改变(Ibeh等,2007)。这项工作使用最先进的粘度计,能够测量高达600°F和40,000 psi的钻井液性能,研究了在Ultra-HP / HT条件下具有不同性能的油基钻井液的流变行为。为了这个目的,选择了两个实际的工业用的具有相同泥浆重量(12.5 ppg)的油基泥浆样品,以进行实验矩阵。这项研究的结果得出结论,粘度,屈服点和凝胶强度会随着温度的升高而降低(直到泥浆样品失效,对于常规配方的油基泥浆而言)。这种行为是由于泥浆样品中的固体,聚合物和其他组分发生热降解以及分子距离扩大而导致的,这将降低流体的流动阻力,从而降低其粘度,屈服点和凝胶强度。此外,可以得出结论,粘度和屈服点随着压力的增加而增加。但是,压力在低温下对这些参数的影响更为明显(低于故障点,对于常规配方的油基泥浆而言)。

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