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Rheological properties of Aphron based drilling fluids

机译:Aphron基钻井液的流变特性

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A new drilling fluid system has been successfully used to drill depleted reservoirs which are known as Aphron based drilling fluids. The rheological behavior of the Aphron based drilling fluid was investigated by experimental tests and data analyses. After generating a typical Aphron based drilling fluid, its viscosity was tested at different temperatures, and the test data was fitted using Power law, Bingham Plastic and Herschel-Bulkley models. It is found that Herschel-Bulkley model is more accurate to describe flow properties for fluids before and after Aphron generation process for all temperatures. Based on Herschel Bulkley model, the shear thinning ability of the fluid increases by increasing temperature, the gel strength and hole cleaning capacity of the fluid increase after Aphron generation, and increasing temperature to high value will not debilitate Aphron drilling fluid performance significantly. The fluid has high viscosity in low shear rate conditions, so that it can provide a strong seal in pore openings to bridge the pores. Aphron bubble growth rate over the time and drainage rates are determined as criteria for Aphron bubble stability. Bubble size growth rate is very low and the longevity is long, and liquid drains in a weak rate in drainage static test, which shows a strong stability of the Aphron based drilling fluid.
机译:一种新的钻井液系统已经成功地用于钻井贫化的储层,这被称为基于Aphron的钻井液。通过实验测试和数据分析研究了基于Aphron的钻井液的流变行为。生成典型的基于Aphron的钻井液后,在不同温度下测试了其粘度,并使用幂律,Bingham Plastic和Herschel-Bulkley模型拟合了测试数据。发现Herschel-Bulkley模型更准确地描述了在所有温度下Aphron生成过程之前和之后的流体流动特性。根据Herschel Bulkley模型,流体的剪切稀化能力会随着温度的升高而增加,在Aphron生成后,流体的凝胶强度和孔清洁能力会增加,并且将温度升高至较高值不会明显损害Aphron钻井液的性能。该流体在低剪切速率条件下具有高粘度,因此可以在孔隙开口中提供牢固的密封,以弥合孔隙。随时间变化的Aphron气泡增长率和排水速率被确定为Aphron气泡稳定性的标准。气泡尺寸增长速率非常低,寿命长,并且在排水静态测试中液体以较弱的速率排水,这表明基于Aphron的钻井液具有很强的稳定性。

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