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首頁» 過刊瀏覽» 2021» Vol.6» Issue(4) 539-552???? DOI : 10.3969/j.issn.2096-1693.2021.04.037
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斷裂調(diào)整型致密砂巖氣藏成藏過程模擬與成藏模式
姜福杰,邵新荷,,李林濤,,龐雄奇,李敏,,陳曉智,,李龍龍,鄭定業(yè),,呼延鈺瑩
1 中國石油大學(xué)(北京)油氣資源與探測國家重點實驗室,,北京 102249 2 中國石油大學(xué)(北京)地球科學(xué)學(xué)院,北京 102249 3 中海油研究總院有限責(zé)任公司,,北京 100028 4 中國石化石油勘探開發(fā)研究院無錫石油地質(zhì)研究所,,江蘇無錫 214126 5 中國地質(zhì)科學(xué)院地球物理地球化學(xué)勘查研究所,,河北廊坊 065000
Accumulation process simulation and an accumulation model of a fault-adjusted tight sandstone gas reservoir
JIANG Fujie, SHAO Xinhe, LI Lintao , PANG Xiongqi, LI Min, CHEN Xiaozhi, LI Longlong, ZHENG Dingye, HUYAN Yuying
1 State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum-Beijing, Beijing 102249, China 2 College of Geosciences, China University of Petroleum-Beijing, Beijing 102249, China

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摘要? 基于對臨興地區(qū)致密氣層分布特征剖析,、儲層流體包裹體特征分析 以及盆地埋藏—熱演化史模擬等,,恢復(fù)了盆地邊緣斷裂調(diào)整型致密 砂巖氣的成藏過程并闡明了成藏模式。研究區(qū)天然氣充注成藏分兩 個階段,,在成藏早期由于斷裂和裂縫不發(fā)育,,天然氣以源內(nèi)充注為 主、近源充注為輔,;到成藏中后期,,伴隨紫金山巖漿侵入產(chǎn)生大量 斷層和裂縫,天然氣優(yōu)先沿斷層和裂縫充注到近源和遠(yuǎn)源儲層中,, 而對源內(nèi)儲層的貢獻相對較少,。總體而言,,斷裂調(diào)整型致密氣藏成 藏過程受斷層和裂縫控制作用明顯,,斷層起到“氣泵”的作用。
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關(guān)鍵詞 : 致密氣;充注過程,;成藏模式,;上古生界;臨興地區(qū)
Abstract
An apparent breakthrough has been made in tight gas exploration in the edge of Ordos Basin, although tight gas  exploration started late. The typical example of tight gas at the edge of the basin is the Upper Paleozoic tight gas in the Linxing  
area on the northeast edge of Ordos Basin. However, compared with the interior of the basin, the geological conditions at the  edge of the basin are complex, and the reservoir-forming processes and the mechanism of tight gas reservoir adjustment and  transformation by faults needs to be systematically revealed. Based on the analysis of tight gas reservoir distribution charac teristics, reservoir fluid inclusion characteristics, and basin burial-thermal evolution history simulation in the Linxing area, the  reservoir-forming process of fault-adjusted tight sandstone gas at the edge of the basin is now understood, and the reservoir-form ing model is clarified. The tight gas reservoirs show differential distribution characteristics in three sets of reservoir-forming  combinations. The number of in-source reservoir-forming combinations is the least, the number of near-source reservoir-forming   combinations is in the middle, and the number of far-source reservoir-forming combinations is the most. The thickness of near source gas reservoirs is the smallest, the thickness of inner source gas reservoirs is the middle, and the thickness of far source  gas reservoirs is the largest. Fluid inclusions mainly occur in microcracks in quartz grains, and a small amount occurs in calcite   cement and quartz overgrowths. The homogenization temperature of fluid inclusions ranges from 81.7 ℃ to 180 ℃, showing the  influence of the Zijinshan magma intrusion on the thermal evolution of source rocks. There are two stages of natural gas charging   and accumulation in the study area. In the early stage of gas accumulation, faults and fractures were not developed. The natural   gas was mainly charged into the in-source reservoirs, supplemented by the near-source reservoirs. In the middle and late stages   of hydrocarbon accumulation, a large number of faults and fractures were generated with the intrusion of the Zijinshan magma.   Natural gas was preferentially charged into the near-source and far-source reservoirs along the faults and fractures caused by   the intrusion of the magma, and the contribution to the in-source reservoirs was relatively tiny. Generally speaking, the tight   gas charging at the basin edge is obviously controlled by faults and fractures, with faults playing the “gas pump.” To explore   fault-adjusted tight sandstone gas reservoirs, we should attach great importance to studying faults and fractures.


Key words: tight sandstone gas; charging process; accumulation model; Upper Paleozoic; Linxing area
收稿日期: 2021-12-29 ????
PACS: ? ?
基金資助:國家重大科技專項(2016ZX05047001-006) 和國家自然科學(xué)基金項目(41872128) 聯(lián)合資助
通訊作者: [email protected]
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JIANG Fujie, SHAO Xinhe, LI Lintao, PANG Xiongqi, LI Min, CHEN Xiaozhi, LI Longlong, ZHENG Dingye, HUYAN Yuying. Accumulation process simulation and an accumulation model of a fault-adjusted tight sandstone gas reservoir. Petroleum Science Bulletin, 2021, 04: 539-552. doi: 10.3969/j.issn.2096-1693.2021.04.037
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