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Development trend of marine shale gas reservoir evaluation and a suitable comprehensive evaluation system

机译:海洋页岩气水库评价的发展趋势及合适的综合评价体系

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At present, shale gas exploration and development in China is faced with some problems, such as the imperfect evaluation system of reservoir effectiveness and the limitations of reservoir evaluation system on efficient development of shale gas. In order to improve the content and the standard of reservoir evaluation, this paper analyzed the shortcomings and challenges in the static evaluation of shale gas reservoirs on the basis of existing reservoir evaluation, and established a method for evaluating shale gas reservoir effectiveness and a scheme for classifying pore systems. Then, the dynamic evaluation parameters after shale fracturing and their effects on drainage and production measures were discussed. In addition, the potential evaluation parameters of “automatic mitigating water blocking” were studied, and a comprehensive reservoir evaluation system of “static–dynamic” combination was established. And the following research results were obtained. First, new challenges to the shale gas reservoir evaluation are emerged as the lack of in-depth study on “reservoir effectiveness, dynamic evaluation parameter system after fracturing and drainage and production measures after fracturing”, which leads to the serious lag of existing shale gas reservoir evaluation system behind production. Second, the evaluation of reservoir effectiveness is mainly presented as the evaluation on the lower limit of effective porosity, and is embodied in the influence of clay bound water and unconnected pores on the development of shale gas. Third, the development of shale gas reservoir evaluation follows the trend of refining the static reservoir evaluation parameters, defining the potential evaluation indexes of “automatic mitigating water blocking” and establishing the reservoir comprehensive evaluation system of “static–dynamic” combination. Fourth, a post-frac dynamic evaluation system is determined for the potential evaluation indexes of “automatic mitigating water blocking” (e.g., wettability, water imbibition retention capacity, water imbibition expansion mode, expansion rate, and water imbibition cracking capacity). Fifth, a reservoir evaluation idea is put forward that “static evaluation of shale gas reservoir is the foundation and postfrac dynamic evaluation is the complement”, and a comprehensive reservoir evaluation system is established of “static–dynamic” combination suitable for the evaluation of marine shale gas reservoirs in China.
机译:目前,中国的页岩气体勘探和发展面临着一些问题,如储层效力的不完美评估体系以及水库评价体系上的局部储层评价体系的有效发展。为了提高储层评价的内容和标准,本文分析了在现有水库评估的基础上对页岩气藏静态评价的缺点和挑战,并建立了评估页岩气藏有效性和计划的方法分类孔系统。然后,讨论了页岩压裂后的动态评估参数及其对排水和生产措施的影响。此外,研究了“自动减轻水阻滞”的潜在评价参数,并建立了“静动态”组合的综合储层评估体系。并获得以下研究结果。首先,出现了对页岩气水库评估的新挑战是对“水库效果,动态评估参数系统在压裂和压裂后的储层效力和生产措施”中缺乏深入研究,这导致现有页岩气的严重滞后水库评价体系生产背后。其次,储层效率的评估主要呈现为对有效孔隙率下限的评价,体现在粘土结合水和未连接孔对页岩气的发展中的影响。第三,页岩气藏评价的发展遵循静态储层评价参数的趋势,定义“自动减轻水阻滞”的潜在评价指标,建立“静态动态”组合的储层综合评价体系。第四,确定了差FRAC动态评估系统,用于“自动减轻水阻滞”(例如,润湿性,水吸收保留容量,水吸入膨胀模式,膨胀率和水吸收裂解能力)。第五,提出了一个水库评估理念,提出“页岩气藏的静态评估是基础,后期动态评估是补充”,建立了适合评估海洋的“静动态”组合的综合水库评估体系中国页岩气水库。

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