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煤炭地下氣化腔體穩(wěn)定性研究
董京楠, 何愛國, 劉奕衫, 郭文彬, 熊浩宇, 喬磊, 張應(yīng)斌
1 中國石油集團工程技術(shù)研究院有限公司,,北京 102206 2 中國石油國家卓越工程師學(xué)院,,北京 100096 3 內(nèi)蒙古自治區(qū)高校礦產(chǎn)資源安全開采與綜合利用工程中心,,呼倫貝爾 021008 4 浙江中科依泰斯卡巖石工程研發(fā)有限公司,杭州 311122
Study of stability of underground coal gasification caverns
DONG Jingnan, HE Aiguo, LIU Yishan, GUO Wenbin, XIONG Haoyu, QIAO Lei, ZHANG Yingbin
1 CNPC Engineering Technology R&D Company Limited, Beijing 102206, China 2 National Elite Institute of Engineering, CNPC, Beijing 100096, China 3 Engineering Research Center for the Safe Exploitation and Comprehensive Utilization of Mineral Resources at Universities of Inner Mongolia Autonomous Region, Hulunbeir 021008, China 4 HydroChina-ITASCA R&D Center, Hangzhou 311122, China

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摘要? 煤炭地下氣化過程中氣化爐腔體的穩(wěn)定性是保障氣化爐安全穩(wěn)定生產(chǎn)的重要條件,。本文基于吐哈—三塘湖盆地沙爾湖凹陷煤層的地層物性,、尺寸,、熱力學(xué)參數(shù)及巖石力學(xué)等參數(shù),,通過離散元方法建立地質(zhì)—腔體模型,研究了不同形態(tài)腔體在不同壓力情況下的蠕變穩(wěn)定性,,得到腔體塑性區(qū)分布規(guī)律,,通過對腔體進行長期蠕變行為計算,得到了可能的地表沉降情況,。結(jié)論表明,,蠕變過程中塑性區(qū)趨向于分布于腔體內(nèi)壁,整體來說以剪切破壞為主,,在腔體壁面外1 m范圍內(nèi)并未出現(xiàn)大面積向外擴展的情況,;在地下1000 m處形成特征半徑5 m的腔體,由腔體蠕變本身對地表所帶來的沉降比較有限,,地表沉降的主要來源是地層自身性質(zhì),。本研究對地下煤炭氣化運行及廢棄過程中的腔體穩(wěn)定性評價具有指導(dǎo)意義。
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關(guān)鍵詞 : 煤炭地下氣化,腔體穩(wěn)定性,地表沉降
Abstract

The stability of the cavern in the process of underground coal gasification is an important issue for ensuring gasification production. Based on the formation physical properties, dimensions, thermodynamic parameters and rock mechanics parameters of the coal formation in the Shaerhu Sag of the Tuha-Santanghu Basin, the geological-cavity model is established by the discrete element method, and the different pressures of different cavities are studied. Under the conditions of creep, the distribution of the plastic zone of the cavity is obtained, and the subsidence of the ground surface is obtained by calculating the long-term creep behavior of the cavity. The conclusion shows that the plastic zone tends to be distributed on the inner wall of the cavity, and on the whole it is dominated by shear failure. There is no large-scale outward expansion within 1 m of the cavity wall. As for a cavity with a radius of 5 mat 1000 m underground, the subsidence to the surface caused by the cavity creep itself is relatively limited, and the main source of surface subsidence is the creep of the coal formation itself. This research provides guidance for the evaluation of the stability of the cavity during the operation and abandonment of underground coal gasification.


Key words: underground coal gasification; cavern stability; surface subsidence
收稿日期: 2024-08-30 ????
PACS: ? ?
基金資助:中國石油集團有限公司課題(JT 2019E-25,、2020D-5008-08,、2021DJ5402) 聯(lián)合資助
通訊作者: [email protected]
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董京楠, 何愛國, 劉奕衫, 郭文彬, 熊浩宇, 喬磊, 張應(yīng)斌. 煤炭地下氣化腔體穩(wěn)定性研究. 石油科學(xué)通報, 2024, 04: 690-698 DONG Jingnan, HE Aiguo, LIU Yishan, GUO Wenbin, XIONG Haoyu, QIAO Lei, ZHANG Yingbin. Study of stability of underground coal gasification caverns. Petroleum Science Bulletin, 2023, 05: 690-698.
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