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首頁(yè)» 過(guò)刊瀏覽» 2017» Vol. 2» Issue (4) 478-489???? DOI : 10.3969/j.issn.2096-1693.2017.04.044
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致密地層井壁失穩(wěn)的孔隙彈性動(dòng)力學(xué)機(jī)理研究
滕學(xué)清1, 2, 3,,陳勉1, 2,金衍1, 2,,盧運(yùn)虎1, 2*,,夏陽(yáng)1, 2
1 中國(guó)石油大學(xué)(北京)石油工程學(xué)院,,北京 102249 2 油氣資源與探測(cè)國(guó)家重點(diǎn)實(shí)驗(yàn)室,北京 102249 3 中國(guó)石油塔里木油田公司,,庫(kù)爾勒 841000
Poroelastic dynamics mechanisms of wellbore instability in tight formations
TENG Xueqing1,2,3, CHEN Mian1,2, JIN Yan1,2, LU Yunhu1,2, XIA Yang1,2
1 School of Petroleum Engineering, China University of Petroleum-Beijing, Beijing 102249, China 2 State Key Laboratory of Petroleum Resources and Prospecting, Beijing 102249, China 3 PetroChina Tarim Oilfield Company, Kuerle 841000, China

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摘要? 傳統(tǒng)井壁失穩(wěn)力學(xué)機(jī)制研究主要采用彈塑性靜力學(xué)和孔隙彈性模型,,忽略了井眼鉆開(kāi)瞬間引起的孔隙彈性動(dòng)力學(xué)效應(yīng),,無(wú)法解釋超低滲透地層井壁圍巖破壞的本質(zhì)。本文基于Biot多孔介質(zhì)彈性動(dòng)力學(xué)理論,,建立了多孔彈性地層各向異性應(yīng)力場(chǎng)中井壁瞬時(shí)失穩(wěn)力學(xué)模型,,借助傅里葉變換將二維非均勻地應(yīng)力場(chǎng)控制方程組分解為兩個(gè)一維問(wèn)題,分析了數(shù)值求解的收斂條件,,模擬了井壁瞬時(shí)破壞動(dòng)態(tài)演化過(guò)程及多孔彈性無(wú)因次參數(shù)對(duì)瞬時(shí)破壞的影響,。研究表明,新模型計(jì)算出的井周孔隙壓力場(chǎng),、有效應(yīng)力場(chǎng)及切向與徑向的有效應(yīng)力差比經(jīng)典孔隙彈性力學(xué)解大,,在最小地應(yīng)力方位井壁圍巖易發(fā)生剪切破壞且破壞區(qū)域隨時(shí)間增大,巖石孔隙流體飽和度對(duì)井壁瞬時(shí)失穩(wěn)影響最大,,飽和流體越多,,井壁圍巖失穩(wěn)風(fēng)險(xiǎn)越高。本文所建立的孔隙彈性動(dòng)力學(xué)模型為井壁失穩(wěn)機(jī)理分析,、井筒液柱壓力設(shè)計(jì)提供了科學(xué)基礎(chǔ),,并對(duì)超低滲透致密儲(chǔ)層井壁失穩(wěn)控制具有重要的工程意義。
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關(guān)鍵詞 : 多孔彈性, 動(dòng)力學(xué), 井壁失穩(wěn), 致密地層
Abstract

  At present, the elastoplastic statistical and poroelastic models are often used to explain the mechanism of wellbore instability.  The effect of poroelastic dynamics induced by the wellbore excavation in tight formations in the early times is ignored. In this paper the transient model of wellbore instability in a porous formation with an anisotropic stress field was established. A Fourier transform technique was employed to decompose the governing equation for the 2D heterogeneous stress field into two one-dimensional problems. Meanwhile, the numerical convergence criteria were analyzed, and the effect of poroelastic dimensionless parameters on the transient failure was also included in the modelling process. The results show that: the pore pressure field, effective stress field, tangential stress field and radial stress field near the wellbore calculated by the new model are larger than those calculated by the traditional poroelastic model. Furthermore, shear failure is more likely to occur along the direction of minimum in-situ stress and the failure area increases with time. The fluid saturation in the porous media has the greatest influence on the transient wellbore instability. The wellbore tends be more likely to have higher instability with a higher fluid saturation. The new model established in this paper provides a new method for the wellbore instability mechanism analysis of tight formations and the evaluation of wellbore hydrostatic pressure. Also, it is significant for the management of wellbore stability in tight formations with an extra low permeability.

Key words: poroelastic dynamics wellbore instability tight formation
收稿日期: 2017-05-19 ????
PACS: ? ?
基金資助:國(guó)家自然科學(xué)基金面上項(xiàng)目(51774305)、國(guó)家自然科學(xué)基金重大項(xiàng)目(51490651)和國(guó)家杰出青年科學(xué)基金項(xiàng)目(51325402)聯(lián)合資助
通訊作者: 盧運(yùn)虎,,[email protected]
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滕學(xué)清,,陳勉,金衍,,盧運(yùn)虎,,夏陽(yáng). 致密地層井壁失穩(wěn)的孔隙彈性動(dòng)力學(xué)機(jī)理研究[J]. 石油科學(xué)通報(bào), 2017, 2(4): 478-489. TENG Xueqing, CHEN Mian, JIN Yan, LU Yunhu, XIA Yang. Poroelastic dynamics mechanisms of wellbore instability in tight formations. Petroleum Science Bulletin, 2017, 2(4): 478-489.
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