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首頁» 過刊瀏覽» 2016» Vol. 1» Issue (3) 363-375???? DOI : 10.3969/j.issn.2096-1693.2016.03.031
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注采壓差對雙水平井SAGD開發(fā)的影響
劉昊,程林松,熊浩,,黃世軍,,余恒,蘭翔,,黃瀟
1 中國石油大學(xué)石油工程教育部重點實驗室,中國石油大學(xué)(北京),北京 102249 2 西南石油大學(xué),,成都 610500
The effects of injector-producer pressure difference on dual-well SAGD recovery
LIU Hao, CHENG Linsong, XIONG Hao, HUANG Shijun, YU Heng, LAN Xiang, HUANG Xiao
1 MOE Key Laboratory of Petroleum Engineering, China University of Petroleum-Beijing, Beijing 102249, China 2 Petroleum Institute, Southwest Petroleum University, Chengdu 610500, China

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摘要? 針對具有一定厚度的、整裝的特稠油油藏,,蒸汽輔助重力泄油(SAGD)相比于其他熱采方法,,開發(fā)效果更好。目前研究認(rèn)為SAGD主要通過重力機理開采稠油而忽略了注采壓差對SAGD開發(fā)的影響,,導(dǎo)致礦場預(yù)測誤差較大,。本文針對這個問題,對SAGD生產(chǎn)過程中的注采壓差進行了詳細(xì)研究,,基于加拿大Mackay River和Dover區(qū)塊地質(zhì)參數(shù),,建立地質(zhì)模型,研究了注采壓差對采油速度,、SAGD開發(fā)穩(wěn)產(chǎn)時間,、蒸汽腔上升階段及蒸汽腔橫向擴展階段的影響。結(jié)果表明:注采壓差在SAGD開發(fā)過程中起重要作用,,隨著注采壓差的增大,,采油速度呈現(xiàn)先快速增加后增速變緩的趨勢;在蒸汽腔上升初期,,腔體呈扇形,,一段時間后呈近似六邊形;蒸汽腔到達油層頂部并不一定出現(xiàn)最大泄油速度,,最大泄油速度一般在蒸汽腔到達油層頂部一段時間之后出現(xiàn),;注采壓差影響著蒸汽腔上升擴展角的變化,而擴展角決定著蒸汽腔上升時的波及范圍,;注采壓差在蒸汽腔上升階段起著重要作用,,而在其橫向擴展階段作用開始減弱。因此在現(xiàn)場實踐中,,SAGD生產(chǎn)前期可以適當(dāng)?shù)奶岣咦⒉蓧翰?,而在蒸汽腔橫向擴展階段適當(dāng)?shù)臏p少注采壓差,這樣可以降低發(fā)生汽竄的概率,,從而達到最優(yōu)經(jīng)濟效益,。
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關(guān)鍵詞 : 稠油,; SAGD,; 注采壓差; 蒸汽腔擴展角
Abstract

  Steam-Assisted Gravity Drainage (SAGD) provides many advantages compared to alternate thermal recovery methods for bitumen, especially for thick and intact reservoirs. Nowadays, most researchers believe that the gravity mechanism is the main driver in SAGD recovery, ignoring the injector-producer pressure difference, which makes the field prediction deviates from reality. To study this problem, this paper makes further investigation into the injector-producer pressure difference. Based on the geological parameters from the Mackay River and Dover reservoirs in Canada, a numerical geological model is established. Meanwhile, the effects of pressure difference on oil production rate, stable production time, rising steam chamber and steam chamber expansion were studied in depth. The results indicate that the pressure difference has a great impact on SAGD recovery and with increasing pressure difference, the oil production rate also increases, but the increasing trend is reduced. At the beginning of the rising steam chamber stage, the steam chamber is fan-shaped, and sometime later, the fan-shaped chamber becomes a hexagon chamber. The steam chamber reaching the cap-rock does not mean it will show the greatest oil production rate. Pressure difference plays an important role on the steam chamber expansion angle, and the expansion angle has a great influence on the steam spreading range. The pressure difference has a significant impact on the steam rising stage, but at the steam expansion stage, its impact declines, so in the field, at the beginning of the SAGD recovery, it is better for us to increase the pressure difference and in the steam expansion stage, we can decrease the pressure difference to some degree, to avoid steam breakthrough and to improve economic returns.

Key words: bitumen ; SAGD ; injector-producer pressure difference ; steam chamber expansion angle
收稿日期: 2016-08-19 ????
PACS: ? ?
基金資助:國家重大科技專項“油砂SAGD開發(fā)地質(zhì)油藏評價及方案優(yōu)化技術(shù)”(2016ZX05031-003-005)和“超稠油水平井蒸汽驅(qū)技術(shù)政策及溶劑改善超稠油汽驅(qū)效果技術(shù)研究”(2016ZX05012-005-004)聯(lián)合資助
通訊作者: [email protected], [email protected]
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劉昊,,程林松,,熊浩,黃世軍,,余恒,,蘭翔,黃瀟. 注采壓差對雙水平井SAGD開發(fā)的影響[J]. 石油科學(xué)通報, 2016, 1(3): 363-375.
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