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Study on the practice of downhole dewaxing by in situ generated heat

机译:原位生成热井下脱蜡实践研究

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In situ heat systems are a technology that effectively solves paraffin deposition and improves oil recovery. Generally, the oxidation–reduction reaction of sodium nitrite and ammonium chloride generates a large amount of heat to promote the melting of paraffin. An in situ heat system combined with an acid-resistant fracturing fluid system can form an in situ heat fracturing fluid system, which solves the problem of the poor reformation effect caused by cold damage during the fracturing process of low-pressure and high-pour-point oil reservoirs. In this paper, with the goals of system heating up to 50?°C, a low H+?concentration, a high exotherm, and reduction of the toxic and harmful by-product NOX, the preferred in situ heat system was found to comprise 1.6?mol/L ammonium chloride, 1.0?mol/L sodium nitrite, and 0.8% hydrochloric acid. The effect of five factors on the heat production of the reaction was studied experimentally, and a reaction kinetic equation for the in situ heat system was proposed based on the results. The results showed that increasing the concentration of the reactants and lowering the ambient temperature produced more heat. The in situ heat system was used to conduct a crude oil cold damage elimination experiment, and the results of the removal experiments verified that the system could effectively but not completely reduce the cold damage. Overall, the in situ heat fracturing fluid system formed by the preferred in situ heat system combined with an acid-resistant fracturing fluid system could avoid cold damage in the formation during construction and increase the output.
机译:在原位热系统是一种有效解决石蜡沉积并提高油回收的技术。通常,亚硝酸钠和氯化铵的氧化还原反应产生大量的热量以促进石蜡的熔化。与耐酸压裂流体系统相结合的原位热系统可以形成原位热压裂流体系统,这解决了低压和高倒的压裂过程中冷损伤引起的改革效应差的问题点油藏。在本文中,具有高达50Ω·℃的系统的目标,低H +浓度,高放热和毒性和有害的副产物NOx的浓度,优选的原位热系统含有1.6摩尔/氯化铵,1.0摩尔/ L亚硝酸钠,0.8%盐酸。实验研究了五种因素对反应热量产生的影响,基于结果提出了对原位热系统的反应动力学方程。结果表明,增加反应物的浓度并降低环境温度产生更多的热量。原位热系统用于进行原油冷损伤消除实验,除去实验的结果证实了该系统可以有效但不能完全降低冷损伤。总的来说,由优选的原位热系统形成的原位热压裂流体系统与耐酸压裂流体系统结合,可以避免在施工过程中避免在地层中的冷损坏并增加输出。

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