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首頁(yè)» 過(guò)刊瀏覽» 2024» Vol.9» lssue(1) 103-116???? DOI : 10.3969/j.issn.2096-1693.2024.01.008
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礫巖致密油地質(zhì)工程一體化井距優(yōu)化—以瑪131 小井距立體開(kāi)發(fā)示范區(qū)為例
曹煒, 鮮成鋼, 吳寶成, 文恒, 于會(huì)永, 申潁浩, 余智超, 余凱
1 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 2 中國(guó)石油新疆油田公司工程技術(shù)研究院,,克拉瑪依 834000 3 中國(guó)石油長(zhǎng)慶油田公司油氣工藝研究院,,西安 710018 4 中海油研究總院有限責(zé)任公司,北京 100028 5 中國(guó)石油大學(xué)( 北京) 地球科學(xué)學(xué)院,,北京 102249 6 中國(guó)石油西南油氣田公司勘探開(kāi)發(fā)研究院,成都 610041
Integrated well spacing optimization for geological engineering of conglomerate tight oil
CAO Wei, XIAN Chenggang, WU Baocheng, WEN Heng, YU Huiyong, SHEN Yinghao, YU Zhichao, YU Kai
1 Unconventional Oil and Gas Science and Technology Institute, China University of Petroleum-Beijing, Beijing 102249, China 2 Research Institute of Engineering Technology, PetroChina Xinjiang Oilfield Company, Karamay 834000, China 3 Oil & Gas Technology Research Institute, PetroChina Changqing Oilfield Company, Xi’an 710018, China 4 CNOOC Research Institute Co. Ltd, Beijing 100028, China 5 College of Geosciences, China University of Petroleum-Beijing, Beijing 102249, China 6 Exploration and Development Research Institute, PetroChina Southwest Oil & Gas field Company, Chengdu 610041, China

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摘要? 瑪湖礫巖致密油藏的開(kāi)發(fā)存在著地層非均質(zhì)性強(qiáng),兩向應(yīng)力差大,天然裂縫不發(fā)育和物性差的問(wèn)題,,為了更經(jīng)濟(jì)有效的開(kāi)發(fā),,在瑪131 井區(qū)首次開(kāi)展了小井距立體開(kāi)發(fā)現(xiàn)場(chǎng)試驗(yàn),,試驗(yàn)區(qū)整體采收率較高但經(jīng)濟(jì)效益并未達(dá)到預(yù)期,急需開(kāi)展井距優(yōu)化工作,。本文采用地質(zhì)工程一體化的思路和方法,,建立了完整的立體井網(wǎng)井距優(yōu)化流程,同時(shí)結(jié)合壓裂參數(shù)和響應(yīng)特征提出了一種多井多段條件下快速擬合壓裂縫網(wǎng)模型的方法,,主要包括:開(kāi)展系統(tǒng)性油藏工程分析,,基于精細(xì)地質(zhì)和地質(zhì)力學(xué)模型采用非常規(guī)裂縫模型進(jìn)行復(fù)雜縫網(wǎng)模擬與擬合,,耦合油藏?cái)?shù)值模擬開(kāi)展生產(chǎn)歷史擬合,通過(guò)壓裂數(shù)模一體化模擬完成了示范區(qū)井距優(yōu)化并結(jié)合大范圍井距礦場(chǎng)試驗(yàn)進(jìn)行了驗(yàn)證,。研究結(jié)果表明,,解析縫長(zhǎng)和模擬縫長(zhǎng)結(jié)果可相互驗(yàn)證,百3 段水平井裂縫相對(duì)較長(zhǎng),,平均支撐半縫長(zhǎng)70.1 m,,平均水力裂縫高度24.6 m;百2 段水平井裂縫相對(duì)較短且存在穿層效應(yīng),,平均支撐半縫長(zhǎng)61.1 m,,平均水力裂縫高度28.3 m。在具備一定滲透性的地層條件下,,兩套開(kāi)發(fā)層系的井距均可適當(dāng)擴(kuò)大至200~300 m,,在確保較高采收率條件下提高單井產(chǎn)能和經(jīng)濟(jì)效益。本文優(yōu)化驗(yàn)證后的井距范圍可在同區(qū)塊同層位進(jìn)一步推廣,,所使用的立體井網(wǎng)井距優(yōu)化流程可以被其他非常規(guī)油氣藏類(lèi)型所借鑒,。
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關(guān)鍵詞 : 致密礫巖,立體井網(wǎng),地質(zhì)工程一體化,多級(jí)水力壓裂,井距優(yōu)化
Abstract

The development of tight oil reservoirs in the Mahu conglomerate formation poses formidable challenges, marked by pronounced reservoir heterogeneity, significant horizontal bidirectional stress difference, the absence of natural fractures, and poor reservoir physical properties. In pursuit of a more economically efficient development strategy, a field trial involving tight well spacing and stereoscopic development was initiated for the first time in the Ma131 well area. Despite achieving a relatively high overall recovery rate in the trial area, the economic benefits fell short of expectations, prompting an urgent need for well spacing optimization.This study adopts an integrated approach that combines geological and engineering principles to establish a comprehensive method and process for optimizing the well spacing of stereoscopic well networks. Additionally, a method for rapidly fitting the hydraulic fracture network model under conditions involving multiple wells and fracturing stages is proposed, combining fracturing parameters and treatment pressure response characteristics. The key steps involve a systematic reservoir engineering analysis, utilizing unconventional fracture models based on detailed geological and geomechanical models to simulate complex fracture networks and match the history treatment pressure. The process further includes coupled reservoir numerical simulation for historical production matching. Well spacing optimization in the Ma131 stereoscopic development demonstration area was achieved through an integrated simulation of hydraulic fracturing and production, with validation conducted through a large scale well spacing field trial.The research results show that the analytical fracture length and the simulated fracture length can be mutually verified. The fractures in horizontal wells of the Bai3 section are relatively long, with an average propped half fracture length of 70.1 m and an average hydraulic fracture height of 24.6 m. In the Bai2 section, horizontal well fractures are relatively short and exhibit layer-penetrating effects, with an average propped half fracture length of 61.1 m and an average hydraulic fracture height of 28.3 m. Under conditions of certain permeability in the formation, the well spacing for both development layers can be appropriately expanded to a range of 200~300 m, ensuring an increase in individual well productivity and economic benefits while maintaining a high recovery rate.The proposed optimized well spacing range can be extended to similar development layers within the same well area, based on the well spacing field trial validation results. And the well spacing optimization method and process proposed in this study, utilizing a stereoscopic well network, can serve as a valuable reference for other unconventional oil and gas reservoir types.

Key words: tight conglomerate; stereoscopic well pattern; geological engineering integration; multistage hydraulic fracture; well spacing optimization
收稿日期: 2024-02-29 ????
PACS: ? ?
基金資助:中國(guó)石油天然氣集團(tuán)有限公司—中國(guó)石油大學(xué)( 北京) 戰(zhàn)略合作科技專(zhuān)項(xiàng)(ZLZX2020-01) 資助
通訊作者: [email protected]
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曹煒, 鮮成鋼, 吳寶成, 文恒, 于會(huì)永, 申潁浩, 余智超, 余凱. 礫巖致密油地質(zhì)工程一體化井距優(yōu)化—以瑪131 小井距立體開(kāi)發(fā)示 范區(qū)為例. 石油科學(xué)通報(bào), 2024, 01: 103-116 CAO Wei, XIAN Chenggang, WU Baocheng, WEN Heng, YU Huiyong, SHEN Yinghao, YU Zhichao, YU Kai. Integrated well spacing optimization for geological engineering of conglomerate tight oil—A case of Ma131 tight spacing stereoscopic development demonstration area. Petroleum Science Bulletin, 2024, 01: 103-116.
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