The Results of Pilot and Industrial Application of Thermal-Gas-Chemical Well Treatment with Binary Mixtures and Development of Mathematical Models for Reservoir Processes in Source Oil Rock

Alexander Nikolaevich Lishcuk, M. Kravchenko, N. Shesternina, N. N. Dieva, A. A. Nafikov, M. Khisametdinov, A. V. Kataev
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引用次数: 1

Abstract

The purpose of this paper is to generalize the experience of applying the thermo-gas-chemical treatment methods (TGCT) using binary mixtures based on ammonium nitrate to enhance the inflow at oil fields. More than a decade of industrial tests of binary mixtures injection into mature fields’ marginal wells showed a multiple long-term increase in oil inflow. The positive experience of TGCT application to Tatarstan oil fields strongly suggests the perspective of its application to the layers with high content of organic substance in rock matrix including Bazhenov formation reservoirs for those technologies have been only battle-tested. The development of mathematical methods for describing the TGCT process considering the multiphase and multi-component nature of the process, chemical reactions and transformation of the reservoir structure allow to respond to the features of each field at the macro scale, to identify micro-scale features and changes in the reservoir matrix structure, using a percolation approach, and allowed to assess the current state of the bottom-hole zone adequately and conduct pilot tests on specific wells in strict accordance with the established technological regulations and control of hydrodynamic parameters.
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二元混合热气化学井中试及工业应用成果及源油岩储层过程数学模型的建立
本文的目的是总结以硝酸铵为基础的二元混合物热气化学处理方法(TGCT)提高油田流入的经验。对成熟油田边际井进行了十多年的二元混合物注入工业试验,结果表明,该方法的产油量长期增加。TGCT在鞑靼斯坦油田的积极应用经验强烈表明,TGCT在包括Bazhenov组储层在内的岩石基质中有机物含量高的地层的应用前景,因为这些技术还只是经过了实战考验。考虑到TGCT过程的多相和多组分性质、储层结构的化学反应和转化,开发了描述TGCT过程的数学方法,可以在宏观尺度上响应每个油田的特征,利用渗流方法识别储层基质结构的微观特征和变化。严格按照既定的工艺规程和水动力参数控制,充分评估井底区现状,对特定井进行中试。
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