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首頁(yè)» 過刊瀏覽» 2024» Vol.9» lssue(3) 383-393???? DOI : 10.3969/ j.issn.2096-1693.2024.03.028
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基于伍德合金多級(jí)壓力注入實(shí)驗(yàn)的致密砂巖儲(chǔ)層孔縫充注序列研究
劉冀蓬, 蕭漢敏, 姜振學(xué), 唐相路, 徐明帥
1 中國(guó)石油大學(xué)( 北京) 油氣資源與工程全國(guó)重點(diǎn)實(shí)驗(yàn)室,,北京 102249 2 中國(guó)石油大學(xué)( 北京) 非常規(guī)油氣科學(xué)技術(shù)研究院,,北京 102249 3 中國(guó)石油勘探開發(fā)研究院,,北京 100083
Study of pore-fracture filling sequences in tight reservoirs based on multi-stage pressure injection experiments with Wood’s alloy
LIU Jipeng, XIAO Hanmin, JIANG Zhenxue, TANG Xianglu, XU Mingshuai
1 State Key Laboratory of Petroleum Resources and Engineering, China University of Petroleum-Beijing, Beijing 102249, China 2 Unconventional Petroleum Research Institute, China University of Petroleum-Beijing, Beijing 102249, China 3 Research Institute of Exploration and Development, PetroChina, Beijing 100083, China

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摘要? 松遼盆地北部白堊系泉頭組扶余致密砂巖儲(chǔ)層發(fā)育微納米級(jí)孔隙,、微裂縫,且孔縫結(jié)構(gòu)復(fù)雜,,導(dǎo)致成藏期致密油氣在不同類型儲(chǔ)集空間中的充注順序不清,增加了致密油氣的勘探開發(fā)難度,。本文針對(duì)致密砂巖儲(chǔ)層中不同充注壓力條件下致密油的充注特征開展定量研究,,結(jié)合大視域拼接掃描電鏡與礦物面掃技術(shù),提出了一種基于孔隙-微裂縫組合的致密油充注規(guī)律微觀評(píng)價(jià)方法,。研究表明,,區(qū)內(nèi)泉頭組扶余致密砂巖儲(chǔ)層主要發(fā)育3種孔縫組合類型:粒間孔-黏土礦物收縮縫、粒間孔-脆性礦物粒間縫及黏土礦物晶間孔-收縮縫組合,。通過將具有高溫流變性質(zhì)的伍德合金在不同壓力下注入巖心,,可以觀察到合金在不同孔縫組合類型中的注入隨注入壓力提升而表現(xiàn)出有序性,粒間孔,、縫的充注優(yōu)先級(jí)明顯高于黏土礦物相關(guān)孔縫,,伍德合金的注入效率呈明顯的先快速增大后緩慢增大最終趨于穩(wěn)定的拋物線形態(tài)。依據(jù)伍德合金與原油的性質(zhì)特征,,將注入壓力進(jìn)行了等效轉(zhuǎn)化,,還原了地層條件下致密油的微觀充注過程,據(jù)此建立了致密儲(chǔ)層孔縫序列充注模式,。在高源儲(chǔ)壓差條件下,,致密油能夠充注至納米級(jí)的黏土礦物晶間孔-收縮縫中,隨源儲(chǔ)壓差降低,,致密油逐漸難以充注至納米級(jí)孔縫中,。當(dāng)源儲(chǔ)壓差降至最低時(shí),,致密油僅能通過滲吸的方式通過寬大的孔間連通喉道進(jìn)入微米級(jí)粒間孔及連通性較好的鑄模孔中,。本研究將流體注入與可視化技術(shù)相結(jié)合進(jìn)行致密儲(chǔ)層的儲(chǔ)集空間多尺度評(píng)價(jià),,為致密儲(chǔ)層微觀甜點(diǎn)評(píng)價(jià)及高效開發(fā)提供參考。
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關(guān)鍵詞 : 孔縫組合,伍德合金,多級(jí)壓力注入,充注序列,致密儲(chǔ)層
Abstract

The development of micro-nano-scale pores and microfractures in the Fuyu tight sandstone reservoirs of the Cretaceous Quantou Formation in the northern part of the Songliao Basin, as well as the complex structure of the pores and fractures, leads to the unclear sequence of tight oil and gas filling in different types of reservoir spaces during the formation period, which increases the difficulty of exploration and development of tight oil and gas. In this paper, a quantitative study is conducted on the filling characteristics of tight oil under different filling pressures in tight sandstone reservoirs, and a microscopic evaluation method of tight oil filling patterns based on pore-microfracture combinations is proposed by combining large field-of-view splicing swept electron microscopy and mineral surface scanning technology. The study shows that the Fuyu tight sandstone reservoirs of the Quantou Formation in the area can be classified into three main types of pore-fracture combinations: intergranular pore-clay mineral shrink fractures, intergranular pore-brittle mineral intergranular fractures and clay mineral intergranular pore-shrink fractures combinations. By injecting Wood’s alloy with high-temperature rheological properties into the core at different pressures, it can be observed that the injection of the Wood’s alloy in the different pore-fracture combinations shows orderliness with the increase of injection pressure, and the filling priority of the intergranular pores and fractures is obviously higher than that of the clay mineral-related pores and fractures, and the injection efficiency of Wood’s alloy shows an obvious parabolic pattern of rapid increase first, followed by a slow increase that tends to be stable eventually. Based on the properties of Wood’s alloy and crude oil, the injection pressure was equivalently transformed to simulate the microscopic filling process of tight oil under stratigraphic conditions, and accordingly the pore and fracture sequence filling model of a tight reservoir was established. Under the condition of high source storage pressure difference, the tight oil can be filled into the nanoscale intergranular pore-shrink fractures of clay minerals, and with the decrease of source storage pressure difference, the tight oil is gradually difficult to be filled into the nanoscale pore and fractures. When the source storage pressure difference is reduced to the lowest, the tight oil can only enter the micron-sized intergranular pores and the well-connected mould pores through the wide intergranular connecting throat by means of osmosis. This study combines the fluid injection and visualization techniques for the multi-scale evaluation of reservoir space in tight reservoirs, which is of great significance for the evaluation of microscopic sweet spots and efficient development of tight reservoirs.


Key words: pore-fracture combination; Wood’s alloy; multi-stage pressure injection; filling sequence; tight reservoir
收稿日期: 2024-06-28 ????
PACS: ? ?
基金資助:國(guó)家自然科學(xué)基金(42272137)、中國(guó)石油天然氣股份有限公司“十四五”科技專項(xiàng)(2021DJ2201) 聯(lián)合資助
通訊作者: [email protected]
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劉冀蓬, 蕭漢敏, 姜振學(xué), 唐相路, 徐明帥. 基于伍德合金多級(jí)壓力注入實(shí)驗(yàn)的致密砂巖儲(chǔ)層孔縫充注序列研究. 石油科學(xué)通報(bào), 2024, 03: 383-393 LIU Jipeng, XIAO Hanmin, JIANG Zhenxue, TANG Xianglu, XU Mingshuai. Study of pore-fracture filling sequences in tight reservoirs based on multi-stage pressure injection experiments with Wood’s alloy. Petroleum Science Bulletin, 2024, 03: 383-393.
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