Verkhnechonskoye油田技术地下水的进一步勘探:新的研究方法和成果

E. O. Tenyakov, E. A. Saveliev, M. A. Danilova
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引用次数: 0

摘要

本研究的目的是完善Verkhnechonsk油田技术地下水(俄罗斯东西伯利亚)的地质模型,按工业类别重新评估地下水储量,并形成地质过滤模型。本文讨论了进行实地研究和案头研究时使用的主要方法。介绍了在时间和人员有限的条件下,在大作业场地进行大规模中试过滤工作的组织经验。这项工作是基于2019- 2020年进行的长期状态观测、现场实验和过滤工作的结果。它使用了一个关于水井取水和取油设施的地质数据库的资料,包括一套钻孔研究资料,以及根据档案资料和已出版资料得来的关于该油田地质和水文地质结构的资料。使用Visual ModFlow Flex软件创建地理过滤模型。在进行和解释工作后,对不同于先前采用的自然水文地质模型进行了论证。由此证明了中上寒武统Verkholensky-Ilginsky杂岩与中下寒武统Litvintsevsky杂岩两个含水杂岩的关系。Visual ModFlow Flex中的工作产生了一个地理过滤模型,该模型与实际数据相关联,可以识别不可穿透的屏障,并预测硫化氢的地理迁移。这是该油田的地下水储量首次按行业b类全面纳入国家资产负债表。对该油田的三个场点进行了重新评估,调整了井负荷,以优化取水口的运行。研究结果表明,地质过滤模型在复杂地质构造地区的应用是合理的,可以长期用于开发模式的监测和调整。大型油田的组织工作经验对类似油田的储量再评价也有借鉴意义。
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Further exploration of the Verkhnechonskoye field of technical groundwater: new research methods and results
The purpose of the research is to refine a geological model of the Verkhnechonsk field of technical groundwater (Eastern Siberia, Russia), reassess groundwater reserves by the industrial category and form a geofiltration model. The article deals with the main approaches used in conducting of field and desk researches. It also introduces the organization experience of large-scale pilot filtration work under time- and personnel-limited conditions at a large operating field. The work is based on the results of long-term regime observations, field experimental and filtration works carried out in 2019- 2020. It uses the information of a geological database on the water and oil intake facility of wells, including a complex of borehole studies, as well as the data on the geological and hydrogeological structure of the field according to archival and published sources. Visual ModFlow Flex software was used to create a geofiltration model. Having conducted and interpreted the works, the justification of a natural hydrogeological model different from the one adopted earlier was performed. Thus, the relationship of two water-bearing complexes – the Verkholensky-Ilginsky complex of the Upper-Middle Cambrian age and the Litvintsevsky complex of the Lower-Middle Cambrian age was proved. The works in the Visual ModFlow Flex resulted in the creation of a geofiltration model, which correlates well with the actual data, allows to identify impenetrable barriers, as well as predicts the geomigration of hydrogen sulfide. It is the first time that the underground water reserves of the field were included in the State balance sheet in full-scale according to the industrial category B. The reassessment was performed for three sites of the field, well loads were adjusted for optimal operation of water intakes. The obtained results of the conducted research imply that the use of geofiltration model is reasonable in the fields of complex geological structure and this model can be used on a permanent basis for monitoring and adjusting of the development mode. The organization experience of works at a large operating oil field can also be useful under the reserve reassessment at analogous fields.
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