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Preparation and Property Evaluation of Anionic Clean Fracturing Fluid

机译:阴离子清洁压裂液的制备与性能评价

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An anionic surfactant clean fracturing fluid was synthesized and its main performance was studied. The viscosity of fracturing fluid increased with increasing dosage of anionic surfactant. And the viscosity of fracturing fluid increased first, and then decreased with increasing concentration of KCl. The viscosity reached maximum 360 mPas when the KC1 content is 2.7%. The results showed that the fracturing fluid had best temperature resistance and shear resistance performance under the condition of 100°C and at the shearing rate of 170 s~(-1). The sedimentation velocity of sand in the fracturing fluid are about 11.124, 18.840 mm/min at the temperature of 80°C and 120°C respectively. It indicated that the fracturing fluid has a better sand-carrying performance. The viscosity of fracturing fluid decreased below 5 mPa-s during 70 minutes when the dosage of kerosene was 3%, and the surface tension of the breaker fluid is 26.10 mN/m while the interfacial tension is 0.73mN/m. The low surface tension can meet the requirements of operation. The damage rate to the core is 7.65% and the fracturing fluid has lower damage to core than guar gel.
机译:合成阴离子表面活性剂清洁压裂液,研究其主要性能。随着阴离子表面活性剂的剂量增加,压裂液的粘度增加。并且压裂液的粘度首先增加,然后随着KCl浓度的增加而降低。当KC1含量为2.7%时,粘度达到最大360mPas。结果表明,压裂液在100℃和170s〜(-1)的剪切速率下具有最佳的耐温性和剪切性能。在80℃和120℃的温度下,压裂液中砂沉淀速度为约11.124,18.840mm / min。它表明压裂液具有更好的砂性性能。当煤油的用量为3%时,在70分钟内降低压裂流体的粘度,并且断路器流体的表面张力为26.10mN / m,而界面张力为0.73mn / m。低表面张力可以满足操作要求。核心的损伤率为7.65%,压裂液与芯损伤低于瓜尔凝胶。

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