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首頁» 過刊瀏覽» 2023» Vol.8» Issue(5) 637-648???? DOI : 10.3969/j.issn.2096-1693.2023.05.060
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基于MCMC的頁巖氣藏壓裂縫網(wǎng)不確定性反演法
賈品, 封皓然, 王蘇冉, 王志凱, 牛烺昱, 程林松.
1 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 2 中國石油大學(xué)( 北京) 石油工程學(xué)院,,北京 102249 3 中海油研究總院有限責(zé)任公司,,北京 100028
Uncertainty inversion method of fracture network in shale gas reservoir based on MCMC
JIA Pin, FENG Haoran, WANG Suran, WANG Zhikai, NIU Langyu, CHENG Linsong.
1 State Key Laboratory of Oil and Gas Resources and Exploration, China University of Petroleum-Beijing, Beijing 102249, China 2 School of Petroleum Engineering, China University of Petroleum-Beijing, Beijing 102249, China 3 CNOOC Research Institute Co., Ltd., Beijing 100028, China

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摘要? 水平井體積壓裂是實現(xiàn)頁巖氣經(jīng)濟開發(fā)的有效手段,。水力壓裂能夠形成三維立體復(fù)雜裂縫網(wǎng)絡(luò),,改善頁巖氣藏滲流環(huán)境,,但由于頁巖氣藏基礎(chǔ)參數(shù)的不確定性,,尤其是復(fù)雜的孔滲條件,、地層溫壓系統(tǒng)及非線性滲流機理給頁巖氣壓裂縫網(wǎng)反演帶來了極大的不確定性,,導(dǎo)致準確評估頁巖氣藏壓裂效果困難,。本文首先構(gòu)建了聯(lián)合直線分析法和圖版擬合法的縫網(wǎng)參數(shù)確定性反演方法,然后討論了縫網(wǎng)反演所需基礎(chǔ)參數(shù)的不確定性,,以此提出一種基于馬爾可夫—蒙特卡洛方法(MCMC)的頁巖氣藏壓裂縫網(wǎng)不確定反演方法,,通過隨機生成基礎(chǔ)參數(shù)樣本集,利用確定性方法解釋不同樣本集下的縫網(wǎng)關(guān)鍵參數(shù),,給出其多組合性及概率分布,。最后,結(jié)合我國西南地區(qū)某頁巖氣區(qū)塊一口體積壓裂水平井的生產(chǎn)動態(tài),,明確了壓裂縫網(wǎng)四個關(guān)鍵參數(shù)的不確定性排序,,并反演出了關(guān)鍵參數(shù)值及P10、P50,、P90 的概率結(jié)果,,評價了由于基礎(chǔ)參數(shù)的不確定性對壓裂縫網(wǎng)參數(shù)解釋結(jié)果的影響程度,對頁巖氣藏壓裂效果評價及合理開發(fā)對策制定提供了較全面的實際指導(dǎo),。
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關(guān)鍵詞 : 頁巖氣藏,直線分析法,圖版擬合,馬爾可夫—蒙特卡洛方法,不確定性反演
Abstract

Horizontal well combined with volume fracturing technics is an effective means to achieve the economic development of shale gas. Hydraulic fracturing can form a three-dimensional complex fracture network and improve the flow environment of shale gas reservoirs. However, due to the complexity of shale gas reservoir’s basic characteristics, especially the porosity-permeability conditions, formation temperature-pressure system and nonlinear flow mechanism in porous media make the inversion of shale gas pressure fracture network more uncertain, which makes it difficult to accurately evaluate the fracturing effect of shale gas reservoirs. Firstly, based on the dimensionless production solution of shale gas under constant-pressure production conditions, this paper obtained the local solutions of linear flow and boundary control flow in shale gas production process, introduces the mass balance pseudo-time and normalized pseudo-pressure to construct a deterministic inversion method of shale gas fracture network parameters combining the linear analysis method and the chart fitting method, and analysed the uncertainty of basic parameters required for fracture network inversion. The quantitative characterization formulas of uncertain parameters, which include reservoir parameters such as shale porosity and shale permeability et al, the characterization parameters of shale gas nonlinear flow and adsorption-desorption mechanism and the basic parameters required for inversion, were given respectively in this paper. Moreover, a fracture network uncertain inversion method of shale gas reservoir based on Markov Chain Monte Carlo method (MCMC) was proposed. MCMC sampling method was used to obtain the probability distribution of reservoir parameters, adsorption-desorption and flow parameters, and basic parameters of fracture network. By combining linear flow analysis method and chart fitting method, typical flow stages were identified and fitted to obtain the probability distribution of each inversion parameter. By randomly generating the sample set of basic parameters, the key parameters of fracture network under different sample sets were interpreted by deterministic method, and the key fracture network parameters such as artificial fracture length, conductivity, permeability and fracture width of reconstruction area and their probability distribution were quickly obtained. Finally, by analyzing the production performance of a volume fracturing horizontal well in a shale gas block in Southwest China, the uncertainty ranking of the four key parameters of the fracturing network was clarified, and the key parameter values and the probability results of P10, P50 and P90 were given. The uncertainty of artificial fracture half-length and artificial fracture conductivity was strong, the uncertainty of permeability in the reconstruction area was ordinary, and the uncertainty of width in the reconstruction area was weak. The research results provide a more comprehensive practical guidance for the evaluation of shale gas reservoir fracturing effect and the formulation of reasonable development strategy.


Key words: shale gas reservoir; straight line analysis method; type curve method; Markov Chain Monte Carlo method; uncertainty inversion
收稿日期: 2023-10-31 ????
PACS: ? ?
基金資助:國家自然科學(xué)基金青年基金“致密儲層‘壓裂成藏’油水賦存狀態(tài)變化機理及滲流數(shù)學(xué)模型研究(No. 51004307)”資助
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賈品, 封皓然, 王蘇冉, 王志凱, 牛烺昱, 程林松. 基于MCMC的頁巖氣藏壓裂縫網(wǎng)不確定性反演法. 石油科學(xué)通報, 2023, 05: 637-648 JIA Pin, FENG Haoran, WANG Suran, WANG Zhikai, NIU Langyu, CHENG Linsong. Uncertainty inversion method of fracture network in shale gas reservoir based on MCMC. Petroleum Science Bulletin, 2023, 05: 637-648.
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