封闭条件下致密砂岩低温开裂行为建模

IF 3.3 2区 工程技术 Q3 ENERGY & FUELS Geomechanics for Energy and the Environment Pub Date : 2024-03-26 DOI:10.1016/j.gete.2024.100557
Lei Wang , Xinchuang Yan , Bo Gou , Songcai Han , Minsu Cha , Jingchun Zhang
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引用次数: 0

摘要

致密砂岩油气藏的商业开发离不开刺激。鉴于液氮(LN)的无水特性,使用液氮进行低温压裂是一种很有前途的清洁技术,可以有效地刺激储层岩石。我们开发了一种完全耦合的热机械(TM)模型,该模型结合了基于应变的损伤理论,用于模拟致密砂岩中的液氮低温裂缝。特别是,在 TM 耦合过程中,抗压和抗拉强度、杨氏模量、热膨胀系数和电导率被指定为损伤变量的动态函数。然后,系统地研究了二维异质致密砂岩板内钻孔中多条裂缝的产生、扩展和停止。研究发现,低温裂缝有长有短。根据实验结果,多条长裂缝从钻孔沿最大水平应力方向径向延伸。在所研究的参数范围内,裂缝形态(包括数量、长度和覆盖范围)易受原位应力、杨氏模量和热导率变化的影响,但对传热系数和砂岩密度的变化相对不敏感。这些结果加深了我们对致密砂岩低温冲击的理解,为设计低温处理作业提供了理论参考。
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Modeling of cryogenic cracking behavior of tight sandstone under confinement

Stimulation is a must for commercial development of tight sandstone hydrocarbon reservoirs. Cryogenic fracturing using liquid nitrogen (LN) is a promising clean technique for efficiently stimulating reservoir rocks given its waterless nature. We developed a fully coupled thermo-mechanical (TM) model that incorporates strain-based damage theory for simulating LN cryogenic cracking in tight sandstone. Particularly, the compressive and tensile strengths, Young’s modulus, and thermal expansion coefficients and conductivity are designated as dynamic functions of the damage variable during the TM coupling process. Then the initiation, propagation, and cessation of multiple cracks from a borehole within a 2D heterogeneous tight sandstone plate were systematically scrutinized. Cryogenic cracks are found to emerge in short and long forms. In accordance with experiments, multiple long cracks emanate radially from the borehole along the maximum horizontal stress direction. In the investigated parameter ranges, the fracture morphology, including numbers, lengths, and coverage, is susceptible to changes in in-situ stress, Young's modulus, and thermal conductivity, but relatively insensitive to the variations of heat transfer coefficient and sandstone density. These results deepen our understanding of cryogenic shock on tight sandstone and provide a theoretical reference for designing cryogenic treatment operations.

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来源期刊
Geomechanics for Energy and the Environment
Geomechanics for Energy and the Environment Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
5.90
自引率
11.80%
发文量
87
期刊介绍: The aim of the Journal is to publish research results of the highest quality and of lasting importance on the subject of geomechanics, with the focus on applications to geological energy production and storage, and the interaction of soils and rocks with the natural and engineered environment. Special attention is given to concepts and developments of new energy geotechnologies that comprise intrinsic mechanisms protecting the environment against a potential engineering induced damage, hence warranting sustainable usage of energy resources. The scope of the journal is broad, including fundamental concepts in geomechanics and mechanics of porous media, the experiments and analysis of novel phenomena and applications. Of special interest are issues resulting from coupling of particular physics, chemistry and biology of external forcings, as well as of pore fluid/gas and minerals to the solid mechanics of the medium skeleton and pore fluid mechanics. The multi-scale and inter-scale interactions between the phenomena and the behavior representations are also of particular interest. Contributions to general theoretical approach to these issues, but of potential reference to geomechanics in its context of energy and the environment are also most welcome.
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