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Development of technology for destroying stable water-in-oil emulsions by ultrasonic method at the mobile well production preparing unit

机译:通过超声波制备制备单元破坏稳定水油乳液的技术开发

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Treatment of production fluids to meet the requirements of the first quality group for commercial purposes is becoming more relevant every year in the Perm Region. Most operational facilities are in the final stages of development and characterized by the high water content of production fluids, which later leads to the formation of water-in-oil emulsions (WOEs) during transportation and field preparation. When treated by traditional methods, such as thermal and thermo chemical gravity sedimentation, stable WOEs are not amenable to destruction. These preparation methods are easy to use but do not always provide the expected result. In this regard, an urgent task is to develop and implement new technologies for the preparation of hydrocarbons, which can be used separately from traditional methods, or in combination with them. This method is called ultrasound impact (USI). This article describes regularities in the influence of various parameters on the efficiency of stable water-in-oil emulsion destruction during field-based treatment with the use of USI. The paper describes the experience of using USI, as well as the high destruction efficiency of stable water-in-oil emulsions in comparison with traditional methods. The authors of the article conducted pilot tests using a mobile unit for treating production fluids with stable WOEs pre-treated by ultrasound. Following test results, the technological effect has been evaluated and recommendations for the practical application of the proposed method have been made.
机译:产液治疗,以满足质量第一组用于商业用途的需求每年都在彼尔姆地区正变得越来越重要。大多数操作设施正在开发中的最后阶段和特点是生产流体中的水含量高,这以后导致水包油乳液(困境)的运输和现场制备过程中形成。当通过传统的方法,如热和热化学重力沉降处理,稳定困境不适合于破坏。这些制备方法很容易使用,但并不总是提供预期的结果。在这方面,一个迫切的任务是为制备烃类,可分别从传统的方法来使用,或与他们联合开发和实施新技术。这种方法被称为超声冲击(USI)。本文与使用USI的场为基础的治疗过程中描述了在上稳定的水包油乳状液破坏的效率的各种参数的影响的规律性。本文描述了使用USI的经验,以及在与传统方法相比,稳定的水包油乳状液的高破坏效率。使用移动单元,其用于治疗与稳定困境生产流体制品进行试验测试的作者通过超声进行预处理。下面的测试结果,技术效果进行了评估,并已取得了该方法的实际应用建议。

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