Reservoir Engineering

Qrthogonal Numerical Simulation Study of the Reservoir Deformation Damage Induced by the Thermal Injection Decomposition of Natural Gas Hydrate

  • Zhai Cheng ,
  • Wu Di ,
  • Qin Dongdong
Expand
  • 1. Shanxi Institute of Technology, Yangquan, Shanxi 045000, China;
    2. The Provincial and Municipal Key Laboratory Cultivation Base of Shanxi Province for Ecological Rehabilitation of Mining Areas and Solid Waste Resource Utilization, Shanxi Institute of Technology, Yangquan, Shanxi 045000, China;
    3. Liaoning Technical University, Fuxin, Liaoning 123000, China

Received date: 2022-10-24

  Revised date: 2024-01-20

  Online published: 2024-07-26

Abstract

In response to the problem that the damage mechanism and influencing factors of the reservoir destabilization caused by the thermal decomposition of natural gas hydrate are not clear, the coupled heat-fluid-solid model of the hydrate deposition layer and the elastic-plasticity intrinsic model of the solid skeleton of the reservoir under the action of such coupled model have been established in consideration of the formation heat transfer, pore fluid seepage and deformation damage of solid skeleton due to the thermal decomposition of hydrate. Based on the secondary development of the USDFLD subroutine of ABAQUS software, the orthogonal numerical simulation experiments were carried out to analyze the sensitivity of the thermal injection temperature difference, the absolute permeability of the hydrate deposition layer, and the effective principal stress difference to the influence of the deformation damage of near-well reservoir in the the hydrate deposition layer and the influence mechanism. The results show that the sensitivity to the influence of the deformation damage of near-well reservoir is in descending order of the effective principal stress difference, absolute permeability, and thermal injection temperature difference; the deterioration of the mechanical properties of the near-well reservoir and the decrease of the effective stress caused by the thermal decomposition of hydrate are the main reasons for the deformation damage; the larger the effective principal stress difference is, the larger the maximum value of the equivalent plastic strain is, and the location of the most severe deformation damage in the near-well reservoir is always located in the direction of the minimum horizontal geostress in the borehole under the influence of the the non-uniformity of the horizontal geostress. This study provides a reference for the natural gas hydrate extraction with the thermal stimulation method and drilling operations of hydrate-bearing formations.

Cite this article

Zhai Cheng , Wu Di , Qin Dongdong . Qrthogonal Numerical Simulation Study of the Reservoir Deformation Damage Induced by the Thermal Injection Decomposition of Natural Gas Hydrate[J]. Special Oil & Gas Reservoirs, 2024 , 31(2) : 112 -119 . DOI: 10.3969/j.issn.1006-6535.2024.02.013

References

[1] 张旭辉,鲁晓兵,刘乐乐.天然气水合物开采方法研究进展[J].地球物理学进展,2014,29(2):858-869.
ZHANG Xuhui,LU Xiaobing,LIU Lele.Research progress in development methods of natural gas hydrate[J].Progress in Geophysics,2014,29(2):858-869.
[2] 郑明明,王晓宇,周珂锐,等.深水油气固井水合物储层物性响应与高压气水反侵研究[J].煤田地质与勘探,2021,49(3):118-127.
ZHENG Mingming,WANG Xiaoyu,ZHOU Kerui,et al.Hydrate reservoir physical properties response and high-pressure gas-water reverse penetration during deepwater oil and gas cementing[J].Coal Geology & Exploration,2021,49(3):118-127.
[3] 宫智武,张亮,程海清,等.海底天然气水合物分解对海洋钻井安全的影响[J].石油钻探技术,2015,43(4):19-24.
GONG Zhiwu,ZHANG Liang,CHENG Haiqing,et al.The influence of subsea natural gas hydrate dissociation on the safety of offshore drilling[J].Petroleum Drilling Techniques,2015,43(4):19-24.
[4] LI Xinpo,HE Siming.Progress in stability analysis of submarine slopes considering dissociation of gas hydrates[J].Environmental Earth Sciences,2012,66(3):741-747.
[5] NIAN T K,SONG X L,ZHAO W,et al.Submarine slope failure due to overpressure fluid associated with gas hydrate dissociation[J].Environmental Geotechnics,2022,9(2):108-123.
[6] 唐常锐,徐秀刚,孙秉才,等.天然气水合物分解诱发海底滑坡影响因素分析及致灾风险评价[J].海洋地质前沿,2021,37(5):14-21.
TANG Changrui,XU Xiugang,SUN Bingcai,et al.Influence factors and risk assessment for seabed land-slides induced by natural gas hydrate decomposition[J].Marine Geology Frontiers,2021,37(5):14-21.
[7] 唐瑞玲,孙忠军,张富贵.天然气水合物勘查技术及环境效应研究进展[J].岩性油气藏,2011,23(4):20-34.
TANG Ruiling,SUN Zhongjun,ZHANG Fugui.Research progress in exploration technologies and environmental effects for gas hydrates[J].Lithologic Reservoirs,2011,23(4):20-34.
[8] 翁焕新,许赟溢,楼竹山,等.天然气水合物的稳定性及其环境效应[J].浙江大学学报(理学版),2006,33(5):588-594.
WENG Huanxin,XU Yunyi,LOU Zhushan,et al.Stability of natural gas hydrate and its environmental effect[J].Journal of Zhejiang University(Science Edition),2006,33(5):588-594.
[9] DANGAYACH S,SINGH D N,KUMAR P,et al.Thermal instability of gas hydrate bearing sediments:some issues[J].Marine and Petroleum Geology,2015,67:653-662.
[10] 谭富荣,耿庆明,刘世明,等.天然气水合含油气系统研究现状与展望[J].特种油气藏,2021,28(1):1-9.
TAN Furong,GENG Qingming,LIU Shiming,et al.Research status and prospect of natural gas hydrate petroleum system[J].Special Oil & Gas Reservoirs,2021,28(1):1-9.
[11] FREIJ-AYOUB R,TAN C,CLENNELLl B et al.A wellbore stability model for hydrate bearing sediments[J].Journal of Petroleum Science and Engineering,2007,57:209-220.
[12] KIMOTO S,OKA F,FUSHITA T,et al.A chemo-thermo-mechanically coupled numerical simulation of the deformation the subsurface ground deformation due to methane hydrate dissociation[J].Computers and Geotechnics,2007,34(4):216-228.
[13] KIMOTO S,OKA F,FUSHITA T.A chemo-thermo-mechanically coupled analysis of ground deformation induced by gas hydrate dissociation[J].International Journal of Mechanical Sciences,2010,52(2):365-376.
[14] ZHANG Xuhui,LU Xiaobing,LI Qingping,et al.Thermally induced evolution of phase transformations in gas hydrate sediment[J].Science China:Physics,Mechanics & Astronomy,2010,53(8):1530-1535.
[15] 张旭辉,鲁晓兵,李清平,等.水合物地层中考虑相变的轴对称热传导问题[J].地学前缘,2012,19(2):1-7.
ZHANG Xuhui,LU Xiaobing,LI Qingping,et al.Axial symmetrical thermal conduction of gas hydrate-bearing sediments related to phase transformations[J].Earth Science Frontiers,2012,19(2):1-7.
[16] 张旭辉,鲁晓兵.天然气水合物热分解引起多场响应的特征时间分析[J].力学与实践,2022,44(5):1105-1110.
ZHANG Xuhui,LU Xiaobing.The characteristic times of multi-field during gas hydrate thermal induced dissociation in stratum[J].Mechanics in Engineering,2022,44(5):1105-1110.
[17] 刘乐乐,鲁晓兵,张旭辉.天然气水合物分解区演化数值分析[J].石油学报,2014,35(5):941-951.
LIU Lele,LU Xiaobing,ZHANG Xuhui.Numerical analysis on evolution of natural gas hydrate decomposition region in hydrate-bearing sediment[J].Acta Petrolei Sinica,2014,35(5):941-951.
[18] 吴二林,魏厚振,颜荣涛,等.含天然气水合物沉积物分解过程的有限元模拟[J].岩土力学,2012,33(9):2811-2821.
WU Erlin,WEI Houzhen,YAN Rongtao,et al.FEM-based simulation of decomposition process of gas hydrate-bearing sediments[J].Rock and Soil Mechanics,2012,33(9):2811-2821.
[19] 李令东,程远方,梅伟,等.温度影响天然气水合物地层井壁稳定的有限元模拟[J].天然气工业,2012,32(8):74-78.
LI Lingdong,CHENG Yuanfang,MEI Wei,et al.Finite element simulation of temperature impact on wellbore stability of gas-hydrate-bearing sediments[J].Natural Gas Industry,2012,32(8):74-78.
[20] 孙可明,王婷婷,翟诚,等.天然气水合物加热分解储层变形破坏规律研究[J].特种油气藏,2017,24(5):91-96.
SUN Keming,WANG Tingting,ZHAI Cheng,et al.Patterns of reservoir deformation due to thermal decomposition of natural gas hydrates[J].Special Oil & Gas Reservoirs,2017,24(5):91-96.
[21] 孙可明,王婷婷,翟诚,等.不同饱和度天然气水合物加热分解界面变化规律[J].特种油气藏,2018,25(5):129-134.
SUN Keming,WANG Tingting,ZHAI Cheng,et al.Heating decomposition interface of natural gas hydrate with different saturations[J].Special Oil & Gas Reservoirs,2018,25(5):129-134.
[22] 翟诚,孙可明,辛利伟,等.天然气水合物注热开采近井储层变形破坏的数值模拟研究[J].地质力学学报,2017,23(6):821-828.
ZHAI Cheng,SUN Keming,XIN Liwei,et al.Numerical simulation research of deformation and fracture of the formation near the wellbore during the heat injection exploitation of natural gas hydrates[J].Journal of Geomechanics,2017,23(6):821-828.
[23] 朱渊,陈国明,张若昕.钻井液温度影响下天然气水合物井壁稳定性安全评估[J].安全与环境学报,2018,18(6):2130-2135.
ZHU Yuan,CHEN Guoming,ZHANG Ruoxin.Safety evaluation on the wellbore stability of the gas hydrate due to the temperature of drilling fluid[J].Journal of Safety and Environment,2018,18(6):2130-2135.
[24] 冯永昌,陈林,岡岛淳之介,等.天然气水合物藏裂缝注热的数值模拟研究[J].工程热物理学报,2021,42(3):663-667.
FENG Yongchang,CHEN Lin,OKAJIMA Junnosuke,et al.Numerical simulation study of heat injection into fractures in natural gas hydrate reservoirs[J].Journal of Engineering Thermophysics,2021,42(3):663-667.
[25] 李庆超,王威,王义顷,等.水合物储层钻井水合物分解及井眼坍塌分析[J].石油机械,2021,49(6):43-50.
LI Qingchao,WANG Wei,WANG Yiqing,et al.Hydrate dissociation and wellbore collapse analysis in hydrate reservoir drilling[J].China Petroleum Machinery,2021,49(6):43-50.
[26] KIM H C,BISHNOI P R,HEIDEMANN R A,et al.Kinetics of methane hydrate decomposition[J].Chemical Engineer Science,1987,42(7):1645-1653.
[27] YUN T S,SANTAMARINA J C,RUPPEL C.Mechanical properties of sand,silt,and clay containing tetrahydrofuran hydrate[J].Journal of Geophysical Research,2007,112(B04106):1-13.
[28] RUTQVIST J,MORIDIS G J,GROVER T,et al.Geomechanical response of permafrost-associated hydrate deposits to depressurization-induced gas production[J].Journal of Petroleum Science and Engineering,2009,67:1-12.
[29] 万义钊,吴能友,胡高伟,等.南海神狐海域天然气水合物降压开采过程中储层的稳定性[J].天然气工业,2018,38(4):117-128.
WAN Yizhao,WU Nengyou,HU Gaowei,et al.Reservoir stability in the process of natural gas hydrate production by depressurization in the Shenhu Area of the South China Sea[J].Natural Gas Industry,2018,38(4):117-128.
Outlines

/