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超臨界 CO2 壓裂誘導(dǎo)裂縫機(jī)理研究綜述
周大偉,張廣清
中國(guó)石油大學(xué)(北京)石油工程學(xué)院,北京 102249
A review of mechanisms of induced fractures in SC-CO2 fracturing
ZHOU Dawei, ZHANG Guangqing
College of Petroleum Engineering, China University of Petroleum-Beijing, Beijing 102249, China

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摘要? 超臨界二氧化碳(SC-CO2)壓裂改造非常規(guī)儲(chǔ)層具有提高油氣產(chǎn)量,、儲(chǔ)層無(wú)污染,、節(jié)約水資源,、埋存CO2 等優(yōu)點(diǎn),受到了工業(yè)界和學(xué)術(shù)界的廣泛關(guān)注。本文綜述了目前室內(nèi)SC-CO2 壓裂實(shí)驗(yàn)方法、裂縫起裂擴(kuò)展特征與 機(jī)理,,以及存在的問(wèn)題并給出建議。SC-CO2 與巖石的“熱(T)—流(H)—力(M)—化(C)”多場(chǎng)耦合作用機(jī)理為誘 導(dǎo)應(yīng)力和弱化斷裂性質(zhì)兩方面,。誘導(dǎo)應(yīng)力方面包括:SC-CO2 低黏度和高擴(kuò)散性導(dǎo)致的孔隙壓力場(chǎng)和熱應(yīng)力場(chǎng),, 共同降低有效應(yīng)力并誘發(fā)天然裂縫的剪切破壞(TH-M);SC-CO2 相變釋放的能量以沖擊載荷和熱應(yīng)力的形式促 進(jìn)裂縫動(dòng)態(tài)擴(kuò)展(TH-M),。弱化斷裂性質(zhì)方面包括:零表面張力的SC-CO2 可進(jìn)入微裂紋尖端,,降低裂縫擴(kuò)展所 需的縫內(nèi)凈壓力(H-M);SC-CO2 吸附在微裂紋表面,,降低裂縫失穩(wěn)擴(kuò)展所需的臨界應(yīng)力(C-M),。因此,SC-CO2 壓裂易于形成以I-II混合型破壞為主的多裂縫,,適合改造裂縫性致密儲(chǔ)層,。未來(lái)應(yīng)積極開(kāi)展SC-CO2 三維裂縫擴(kuò) 展實(shí)驗(yàn)?zāi)M,,進(jìn)行裂縫特征重構(gòu)和定量評(píng)價(jià),,利用理論模型和數(shù)值模擬研究方法,實(shí)現(xiàn)研究尺度的升級(jí),,加快 SC-CO2 壓裂工業(yè)應(yīng)用進(jìn)程,。
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關(guān)鍵詞 : SC-CO2 壓裂,;裂縫形成機(jī)理;實(shí)驗(yàn)研究,;THMC耦合,;非常規(guī)油氣
Abstract
In unconventional reservoir stimulation, Supercritical (SC) CO2 fracturing can not only increase oil/gas production, minimize formation damage and conserve water resources, but also promote CO2 geological storage, which draws broad attention in both industry and academia. This work reviewed the current studies with respect to experimental techniques, characteristics and mechanisms of fracture initiation and propagation, and related existing problems and suggestions in SC-CO2 fracturing. The mechanisms of coupled thermo-hydro-mechanical-chemical (THMC) processes between SC-CO2 and rockare induced stress and weakened fracture toughness. The induced stress includes the thermal stress and pore pressure field induced by the low viscosity and high diffusionof SC-CO2, which can lower the effective stress and even create shear failure (TH-M effects). Thedynamic load and thermal stress created by the SC-CO2 phase change can enhance micro-fracture initiation and propagation (TH-M effects). The weakened fracture toughness includes SC-CO2 of zero surface tension, tending to penetrate into the micro-cracks to lower fracture net pressure for crack growth (H-M effects). CO2 adsorption can lower the surface energy of rock and this in turn reduces the critical stress for crack growth (C-M effects). Therefore, SC-CO2 fracturing tends to create multiple fractures characterized by I-II type failure, which can be applied for stimulation of fracturedtight reservoirs. So, in the future, it will be necessary to conduct SC-CO2 fracturing experiments, to be used to reconstruct and evaluate the induced 3D fractures. The research scale is upgraded
with the theoretical and numerical models to accelerate the process of SC-CO2 fracturing in the field.

 

Key words: SC-CO2 fracturing; fracture mechanism; experimental study; THMC coupling; unconventional reservoirs
收稿日期: 2020-06-30 ????
PACS: ? ?
基金資助:國(guó)家杰出青年科學(xué)基金(51925405)、國(guó)家自然科學(xué)基金面上項(xiàng)目(51774299) 和國(guó)家科技重大專(zhuān)項(xiàng)(2016ZX05046-04, 2016ZX05050,
2017ZX05069) 聯(lián)合資助
通訊作者: [email protected]
引用本文: ??
ZHOU Dawei, ZHANG Guangqing. A review of mechanisms of induced fractures in SC-CO2 fracturing. Petroleum Science Bulletin, 2020, 02: 239-253.
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