Analysis of Dynamical Heat Conductivity of the Reservoir and Fluid Evacuation Zone on the Gas Condensate Well Flow Rate

J Pub Date : 2020-03-14 DOI:10.3390/j3010011
Kouadio Fabrice Anzian, M. Fyk, A. Bassam, M. Abbood, Haval Mohammed Abdullatif, Yevhen Shapchenko
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Abstract

This study shows that the thermal conductivity of the rock borehole adjacent to the wells varies depending on the operation of the well. This is due to the fact that the actual temperature and temperature difference affect the humidity and other thermal properties of the rocks, which in turn affect the heat transfer coefficient across the section between the moving gas and the rocks. The static temperature field of primitive geothermal gradients acquires changes in a dynamic form. Theoretical consideration of changes in the thermal conductivity of rocks near the face and the wells is proposed to improve the prediction of gas condensate wells production. The result is achieved by introducing the specified equations of the thermal energy balance in the radial filtration and lifting of well products, which contain the coefficients of heat exchange and throttling. The refinement bias estimation of the 10%–15% level of gas condensate well extraction is shown using proposed methodological approach to relatively well-known (traditional in the field development practice) methods for estimating the extraction of a “medium well” from a particular oil and gas field evaluation. The results of this work demonstrate important scientific, applied, educational and methodological significance of using the methodology presented by the authors.
储层动态导热系数及流体抽放区对凝析气井流量的影响分析
这项研究表明,与油井相邻的岩石钻孔的热导率随着油井的运行而变化。这是因为实际温度和温差会影响岩石的湿度和其他热特性,进而影响移动气体和岩石之间截面的传热系数。原始地热梯度的静态温度场以动态的形式获得变化,提出了从理论上考虑工作面附近岩石和井的热导率变化,以改进凝析气井产量的预测。结果是通过引入特定的井产品径向过滤和提升过程中的热能平衡方程来实现的,该方程包含热交换系数和节流系数。凝析气井开采10%-15%水平的精细化偏差估计是使用所提出的方法论方法对相对知名的(传统的油田开发实践)方法进行的,该方法用于估计特定油气田评估中的“中井”开采量。这项工作的结果表明,使用作者提出的方法论具有重要的科学、应用、教育和方法学意义。
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