德国Ketzin项目碳封存光纤监测技术及其启示Carbon Sequestration Monitoring Technology of the Ketzin Project in Germany and Its Implications
周全超,焦建军,常立诚,殷裁云,李霞颖,刘桂臻,刘天翔
摘要(Abstract):
CO_2地质封存是一种有效减少温室气体排放的技术手段,但CO_2注入地下储层的过程可能引发相关地质灾害。因此,对地质封存过程进行监测,对于预测和防控地质灾害的发生具有重要意义。以德国KetzinCO_2地质封存试验项目为例,详细分析了光纤监测技术在本项目中的应用,阐述了CO_2注入过程中压力和温度变化的特征。作为全球首个CO_2地质封存试验点之一,Ketzin项目为地质封存监测提供了重要的实践经验和参考范例。
关键词(KeyWords): CO_2地质封存;光纤监测;温度与压力监测;CO_2相态
基金项目(Foundation): 华能集团总部科技项目(HNKJ22-H155)
作者(Author): 周全超,焦建军,常立诚,殷裁云,李霞颖,刘桂臻,刘天翔
参考文献(References):
- [1]李琦,李彦尊,许晓艺,等.海上CO2地质封存监测现状及建议[J].高校地质学报,2023,29(1):1-12.
- [2]李琦,刘桂臻,张建,等. CO2地质封存环境监测现状及建议[J].地球科学进展,2013,28(6):718-727.
- [3]许晓艺,李琦,谭永胜,等.日本苫小牧CO2海底地质封存监测技术分析及其启示[J].高校地质学报,2023,29(1):13-24.
- [4]陈博文,李琦,谭永胜,等.不同有效应力下泥岩盖层CO2突破压力演化特征的试验研究[J].岩土力学,2024,45(12):3681-3693.
- [5]李小春,小出仁,大隅多加志. CO2地中隔离技术及其岩石力学问题[J].岩石力学与工程学报,2003,36(6):989-994.
- [6]蒋向明.“双碳”背景下煤炭行业与地热产业双重发展机遇[J].中国煤炭地质,2022,34(S1):1-6.
- [7]LI Q,WEI Y ,LIU G ,et al. Combination of CO2 geological storage with deep saline water recovery in western China:insights from numerical analyses[J]. Appl Energy,2014,116:101-110.
- [8]WEI X,LI Q,Li X,et al. Uncertainty analysis of impact indicators for the integrity of combined caprock during CO2 geosequestration[J].Engineering Geology,2015,196:37-46.
- [9]廖家隆,孟运平,汤楷.徐沛煤田控煤构造特征及成因分析[J].中国煤炭地质,2012,24(2):1-5..
- [10]马纪元,程国强,李霞颖,等. CO2多层注入下盖层密闭性影响因素研究[J].岩土力学,2024,45(11):3447-3460.
- [11]刘天翔,朱鸿鹄,吴冰,等.埋入式应变感测光缆-冻土界面渐进破坏机制研究[J].岩土力学,2024,45(1):131-140.
- [12]SUN Y,LI Q,YANG D,et al. Investigation of the dynamic strain responses of sandstone using multichannel fiber-optic sensor arrays[J].Engineering Geology,2016,213:1-10.
- [13]刘杰,施斌,张丹,等.基于BOTDR的基坑变形分布式监测实验研究.岩土力学,2006,27(7):1224-1229.
- [14]SIDENKO E,TERTYSHNIKOV K,GUREVICH B,et al. DAS signature of reservoir pressure changes caused by a CO2 injection:Experience from the CO2CRC Otway Project[J]. International Journal of Greenhouse Gas Control,2022,119.
- [15]HARRIS K,WHITE D,SAMSON C. Imaging the Aquistore reservoir after 36 kilotonnes of CO2 injection using distributed acoustic sensing[J]. Geophysics,2017,82(6):81-96.
- [16]G??TZ J,L??TH S,HENNINGES J,et al. Vertical seismic profiling using a daisy-chained deployment of fibre-optic cables in four wells simultaneously–Case study at the Ketzin carbon dioxide storage site[J]. Geophysical Prospecting,2018,66(6):1201-1214.
- [17]DALEY T M,MILLER DE,DODDS K,et al. Field testing of modular borehole monitoring with simultaneous distributed acoustic sensing and geophone vertical seismic profiles at Citronelle, Alabama[J]. Geophysical Prospecting,2016,64(5):1318-1334.
- [18]WUESTEFELD A,WEINZIERL W. Design considerations for using Distributed Acoustic Sensing for cross-well seismics:A case study for CO2 storage[J]. Geophysical Prospecting,2020,68(6):1893-1905.
- [19]F??RSTER A,SCH??NER R,F??RSTER H-J,et al. Reservoir characterization of a CO2 storage aquifer:the Upper Triassic Stuttgart Formation in the Northeast German Basin[J]. Marine and Petroleum Geology,2010,27(10):2156-2172.
- [20]GIESE R,HENNINGES J,L??TH S,et al. Monitoring at the CO2SINK site:A concept integrating geophysics, geochemistry and microbiology[J]. Energy Procedia,2009,1(1):2251-2259.
- [21]MARTENS S,LIEBSCHER A,M??LLER F,et al. Progress report on the first european on-shore CO2 storage site at ketzin(Germany)—Second year of injection[J]. Energy Procedia,2011(4):3246-3253.
- [22]LIEBSCHER A,MARTENS S,MOLLER F,et al. On-shore CO2storage at the Ketzin pilot site in Germany[J]. Geological Storage of Carbon Dioxide(CO2),2013:278-300.
- [23]MOROZOVA D, WANDREY M, ALAWI M,et al. Monitoring of the microbial community composition in saline aquifers during CO2storage by fluorescence in situ hybridisation[J]. International Journal of Greenhouse Gas Control,2010,4(6):981-989.