Dynamic analysis approach to evaluate in-situ combustion performance for heavy oil production

Jia Yao, Yiming Song
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引用次数: 3

Abstract

In China, in-situ combustion has been widely used in heavy oil reservoirs due to its advantages, such as less thermal loss along the well bore, wider applicability range, higher displacement efficiency and so on. In order to operate the in-situ combustion successfully, it is necessary to fully require adequate production performance information. According to the principle and characteristics of in-situ combustion, dynamic analysis of in-situ combustion has been used to analyze the changes of some parameters, and corresponding rules on changes of these parameters have been achieved. Combining these drawn rules from previous results, such as reservoir pressure, produced gas compositions and combustion front position, with the developing requirements of the oil field, it is feasible to make necessary adjustments to enhance heavy oil recovery and increase profitability. Dynamic analysis on Gao 3-6-18 oil block, the main part of in-situ combustion pilot test reservoir in Liaohe Oilfield, was utilized to illustrate the feasibility of this dynamic analysis approach on evaluation of in-situ combustion performance for heavy oil production.
稠油开采现场燃烧性能评价的动态分析方法
原位燃烧法具有沿井热损失小、适用范围广、驱油效率高等优点,在国内稠油油藏中得到了广泛应用。为了成功地进行原位燃烧,有必要充分获取足够的生产性能信息。根据原地燃烧的原理和特点,利用原地燃烧的动态分析方法对一些参数的变化进行了分析,得出了这些参数的变化规律。结合以往研究结果得出的储层压力、产气成分、燃烧前缘位置等规律,结合油田开发要求,进行必要的调整,提高稠油采收率,提高盈利能力是可行的。通过对辽河油田原位燃烧先导试验储层主体高3-6-18油块的动态分析,说明了采用动态分析方法评价稠油原位燃烧性能的可行性。
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