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A comparison and assessment of the modelling and simulation of the sandstone matrix acidizing process: A critical methodology study

机译:砂岩基质酸化过程建模与模拟的比较与仿真:临界方法研究

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Sandstone matrix acidizing is a well stimulation technique to enhance the productivity of a reservoir formation. Numerous models had been developed in the past years for mud acid sandstone stimulation but little research was done for HBF4acidizing. HBF4is positively reported to be effective in sandstone acidizing due to its retardation effect, which delays the hydrolysis of HF. This has greatly enhanced penetration depth of the acid into the sandstone matrix. However, this effect is limited over a certain range of temperature. With the current knowledge, there is a lack of understanding on the effective working temperature window of HBF4acidizing. Therefore, it is crucial that numerical studies can be adopted to carry out detail investigation to characterize the temperature effect on HBF4acidizing. The aim of this study is to review the numerical and models that have been developed on matrix acidizing process. Thus, a comparison and assessment of the modelling and simulation approaches done on mud acid stimulation process through literatures was done to select the most feasible model to be implemented to model HBF4stimulation process. A detailed pros and cons evaluation is conducted on all the models developed in the past years. Considering all aspects of the models developed, the four-parameter model is the best and most representative model to simulate the sandstone acidizing process. Hence, this paper has critically reviewed the modelling methodology and selected a practical software to perform HBF4acidizing simulation. This manuscript has also spotlighted on the possible research expansion for future investigation. It is recommended to perform a comprehensive analysis to determine the optimum temperature, acid concentration and injection rate before the operation of acid stimulation.
机译:砂岩基质酸化是一种良好的刺激技术,以提高储层形成的生产率。过去几年已经开发了许多模型,用于泥酸砂岩刺激,但对HBF4寄生化进行了很少的研究。由于其延迟效应,HBF4IS呈积极据报道,砂岩酸化是有效的,这延迟了HF的水解。这具有极大地增强了酸进入砂岩基质的渗透深度。然而,这种效果在一定的温度范围内限制。通过目前的知识,对HBF4寄生的有效工作温度窗口缺乏了解。因此,至关重要的是,可以采用数值研究进行细节调查,以表征HBF4寄生的温度效应。本研究的目的是审查已在基质酸化过程中开发的数值和模型。因此,通过文献对泥酸刺激过程进行的建模和模拟方法进行了比较和评估,以选择要实施的最可行模型以模拟HBF4及其刺激过程。对过去几年开发的所有模型进行了详细的优点和缺点评估。考虑到所开发的模型的所有方面,四参数模型是模拟砂岩酸化过程的最佳和最代表性的模型。因此,本文批评了建模方法,并选择了一种执行HBF4Acidizing模拟的实用软件。此稿件还阐明了可能的研究扩展以供将来调查。建议进行综合分析以确定酸刺激手术前的最佳温度,酸浓度和注射率。

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