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首頁» 過刊瀏覽» 2025» Vol.10» lssue(1) 87-106???? DOI : 10.3969/j.issn.2096-1693.2025.02.004
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變載荷壓裂特征研究進展及展望
孫偉, 張廣清
1 中國石油大學(xué)( 北京) 石油工程學(xué)院,,北京 102249 2 中國石油大學(xué)( 北京) 油氣資源與工程全國重點實驗室,北京 102249
Progress and prospects of variable load fracturing characteristics
SUN Wei, ZHANG Guangqing
1 School of Petroleum Engineering, China University of Petroleum-Beijing, Beijing 102249, China 2 State Key Laboratory of Petroleum Resources and Engineering, China University of Petroleum-Beijing, Beijing 102249, China

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摘要? 水力壓裂是非常規(guī)能源開采的重要手段。然而,,傳統(tǒng)水力壓裂面臨諸多挑戰(zhàn),,如過高的破裂壓力、潛在的斷層滑移風(fēng)險以及酸化壓裂液對環(huán)境的污染等,。如何在降低誘發(fā)自然災(zāi)害風(fēng)險的前提下,,實現(xiàn)高效的儲層改造是關(guān)鍵科學(xué)問題,這迫切需要探索新的壓裂方式以應(yīng)對這些挑戰(zhàn),。近年來,,變載荷壓裂作為一種通過物理或化學(xué)手段引起作用于地層巖石上的載荷(如壓力、流體,、溫度以及高能氣體等)周期性或隨機變化的壓裂施工形式,,逐漸引起人們的廣泛關(guān)注。變載荷壓裂強調(diào)壓裂過程中,,流體,、溫度、高能氣體等因素與巖石這種多孔介質(zhì)之間的多場耦合作用,,這區(qū)別于金屬的機械疲勞破壞,,其概念范圍更加廣泛。本文系統(tǒng)梳理了變載荷壓裂實驗的最新進展,,從研究對象,、影響因素,、研究內(nèi)容及分析方法進行了全面總結(jié)。將變載荷壓裂作用形式劃分為6種:循環(huán)載荷,、遞增載荷,、階梯載荷、脈沖載荷,、沖擊載荷和組合載荷,。重點關(guān)注變載荷對巖石破裂前后的具體影響,并歸納總結(jié)了4 個變載荷壓裂特征:降低巖石破裂壓力,、降低巖石破裂能量,、改變巖石滲透率以及產(chǎn)生復(fù)雜裂縫形態(tài)。進一步從巖石疲勞斷裂,、應(yīng)力腐蝕,、爆燃壓裂裂縫擴展等方面探討了變載荷壓裂相關(guān)作用機制。最后,,著重對變載荷壓裂特征研究做了未來展望,,認(rèn)為要明確巖石結(jié)構(gòu)特征對增滲效果及復(fù)雜裂縫形態(tài)的影響。緊跟深層/超深層開發(fā)研究趨勢,,考慮復(fù)雜極端條件下變載荷壓裂適用性和新變化,,以拓寬變載荷壓裂研究發(fā)展空間。從多場,、多尺度,、多時度的角度綜合分析變載荷壓裂作用特征及內(nèi)在機理。本文旨在為變載荷壓裂提供基礎(chǔ)性認(rèn)知,,并為未來研究發(fā)展提供思路和方向,。
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關(guān)鍵詞 : 變載荷壓裂,破裂壓力,破裂能量,滲透率,裂縫形態(tài)
Abstract

Hydraulic fracturing plays a crucial role in the development of unconventional energy resources. However, traditional hydraulic fracturing faces many challenges, such as excessive breakdown pressure, potential geological risk of fault slip, and pol- lution of the environment by acid fracturing fluids, etc. How to achieve efficient reservoir reformation on the premise of reducing the risk of inducing natural disasters is a key scientific topic, and the new fracturing methods were needed urgently to deal with these challenges. Recently, variable-load fracturing, as a form of fracturing operation that applies periodic or random variable loads (such as pressure, fluid, temperature, and high-energy gas, etc.) acting on formation rocks through physical or chemical means, has gradually attracted widespread attention. Variable-load fracturing emphasizes the multi-field coupling effect between factors such as fluid, temperature, high-energy gas, etc. and the porous medium of rocks during the fracturing process, which is fundamentally different from the mechanical fatigue failure of metals and has a broader conceptual scope. This paper systematically reviews the latest advancements in variable-load fracturing experiments and comprehensively summarizes the findings from four key perspectives: research subjects, influencing factors, research contents, and analytical methods. The variable-load actions are categorized into six primary types: cyclic load, increasing load, stepped load, pulse load, impact load, and combined load. Particular attention is given to the specific effects of variable-load on rocks both before and after fracture, summarizing four characteristics of variable-load fracturing: reduction in rock fracture pressure, decrease in rock fracture energy, alteration in rock permeability, and generation of complex fracture patterns. Furthermore, this paper delves into the underlying mechanisms of variable- load fracturing, examining aspects such as rock fatigue fracture, stress corrosion, and fracture propagation in deflagration fracturing. Finally, the future research directions on variable-load fracturing characteristics were emphasized. It is believed that the influence of rock structure characteristics on the permeability enhancement effect and complex fracture morphology should be clarified. Keeping up with the research trends in deep/ultra-deep reservoir development, the applicability and potential changes of variable-load fracturing under complex and extreme conditions should be considered thoroughly to broaden the research and development space for variable-load fracturing. The action characteristics and internal mechanisms of variable-load fracturing should be comprehensively analyzed from the perspectives of multiple fields, multiple scales, and multiple time periods. This paper aims to provide a comprehensive basic understanding of variable-load fracturing and offers ideas and directions for future research and development. 

Key words: variable load fracturing; breakdown pressure; failure energy; permeability; fracture geometry
收稿日期: 2025-02-26 ????
PACS: ? ?
基金資助:國家杰出青年科學(xué)基金(51925405) 和國家自然科學(xué)基金重點項目(52434001) 聯(lián)合資助
通訊作者: [email protected]
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孫偉, 張廣清. 變載荷壓裂特征研究進展及展望. 石油科學(xué)通報, 2025, 10(01): 87-106 SUN Wei, ZHANG Guangqing. Progress and prospects of variable load fracturing characteristics. Petroleum Science Bulletin, 2025, 10(01): 87-106.
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