Calculation of the shielding at microwave impact on oil reservoirs

A. R. Agaev, A. Gilmanov, A. P. Shevelyov
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Abstract

Currently, there is a problem of depletion of easily produce oil. In order to maintain hydrocarbon production rates, hard-to-recover reserves are being brought into development, a significant part of which are extra-heavy oil, the production of which takes a relatively small share in the global oilfield due to the complexity of the process. The methods existing at the moment do not allow extracting heavy and extra-heavy oil from reservoirs with a sufficient degree of efficiency. The use of such a method as microwave impact has not been widely used in the oilfield, because modeling is necessary to determine the optimal parameters of the impact. It is difficult with the number of problems associated with the complexity of the method. This article deals with the modeling of the process of microwave impact to improve the efficiency of the oil production process. The article is devoted to modeling the process of ultra-high-frequency wave impact on the oil reservoir, considering the physical and chemical parameters of fluids in the reservoir, such as thermal conductivity, dielectric permeability of oil and water (considering its salinity) in the reservoir. In the framework of the method using microwave impact for the first time determined the amount of shielding by the pipe material of this impact and determined the optimal parameters of the radiation source and the parameters of well pipe structures for effective impact on oil reservoirs. The aim of the work is to determine the optimal parameters of the source of microwaves to achieve cost-effective values of oil recovery factor. In this work the physical and mathematical model of microwave impact on the reservoir, based on the laws of electrodynamics and the density of volumetric heat generation in this equation is applied. The dependence of the magnitude of screening of microwave radiation by the production well pipe on its thickness and the dependence of the magnitude of screening of radiation by the production well pipe on the thickness of the perforation slot in this pipe and the dependence of the radius of penetration of electromagnetic waves into the formation on the absorption factor of electromagnetic radiation in the formation are obtained. The paper establishes the existence of a minimum radius of penetration of microwave radiation into the formation to achieve cost-effective values of oil recovery factor over 30%, which is 57 m, and also determined the absorption factor of microwave radiation in the formation, which allows to achieve the specified value of the radius of penetration of microwave radiation into the formation.
计算微波影响油藏时的屏蔽情况
目前,易产石油存在枯竭问题。为了保持碳氢化合物的生产率,正在开发难以回收的储量,其中很大一部分是特重油,由于开采过程复杂,其产量在全球油田中所占的份额相对较小。目前现有的方法无法以足够高的效率从油藏中提取重油和特重油。微波冲击这种方法尚未在油田中广泛使用,因为必须通过建模才能确定冲击的最佳参数。由于该方法的复杂性,要解决很多问题是很困难的。本文讨论了微波冲击过程的建模问题,以提高石油生产过程的效率。考虑到油藏中流体的物理和化学参数,如热导率、油和水(考虑其盐度)的介电渗透率等,文章致力于建立超高频波冲击油藏过程的模型。在使用微波冲击方法的框架内,首次确定了管道材料对这种冲击的屏蔽量,并确定了辐射源的最佳参数和井管结构参数,以便对油藏进行有效冲击。这项工作的目的是确定微波源的最佳参数,以实现具有成本效益的采油因子值。在这项工作中,应用了微波对储油层影响的物理和数学模型,该模型以电动力学定律和该方程中的体积发热密度为基础。得出了生产井管对微波辐射的屏蔽程度与生产井管厚度的关系,生产井管对辐射的屏蔽程度与生产井管射孔槽厚度的关系,以及电磁波穿透地层的半径与地层对电磁辐射的吸收系数的关系。论文确定了微波辐射进入地层的最小穿透半径,以实现采油系数超过 30% 的成本效益值,该半径为 57 米,还确定了地层中的微波辐射吸收系数,该吸收系数可使微波辐射进入地层的穿透半径达到规定值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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