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Dynamic analysis on edge of sand detachment of natural gas hydrate reservoir

Author

Listed:
  • Hao, Yongmao
  • Liang, Jikai
  • Zhan, Shiyuan
  • Fan, Mingwu
  • Wang, Jiandong
  • Li, Shuxia
  • Yang, Fan
  • Yang, Shiwei
  • Wang, Chuanming

Abstract

Dynamic change of edge of sand detachment (ESD) is still unclear during the depressurization mining of gas hydrate reservoirs. Considering multi-physics such as the depose of NGH and its impact on the change of formation temperature and conductivity, a novel numerical method is provided which could be utilized to simulate and analyze the behavior of the edge of sand detachment (ESD). The simulation results show that the expansion of ESD has mainly consists of three phases, which has a tendency to be fast first, then slow, and finally tend to the ESD limit (ESDL). In our basic model referring to Shenhu field, the ESD rapidly reached around 44 m from day 0–360 days, then the increase rate slowed from 360 days to 720 days, and finally stabilized at 58 m (ESDL) after 720 days. In addition, the expansive rate of ESD and the ESD limit (ESDL) have great effect on the sand productions. The sand production rate increases rapidly and then reach peak in a rushed stage of ESD expansion, then decrease significantly and tend to be zero when ESD expands to the ESDL in NGH reservoirs. Based on the prioritization analysis of influencing factors, for a NGH reservoir with lower hydrate saturation, higher absolute permeability, higher initial reservoir temperature, lower bottom hole pressure, ESD expands much more fast and the ESDL is much larger. Our work could shed light on the dynamic behavior of ESD for the development of NGH reservoirs, and the finding of ESDL is helpful to determine the safe development area and facilitates adjustment on the sand controlling arrangements.

Suggested Citation

  • Hao, Yongmao & Liang, Jikai & Zhan, Shiyuan & Fan, Mingwu & Wang, Jiandong & Li, Shuxia & Yang, Fan & Yang, Shiwei & Wang, Chuanming, 2022. "Dynamic analysis on edge of sand detachment of natural gas hydrate reservoir," Energy, Elsevier, vol. 238(PB).
  • Handle: RePEc:eee:energy:v:238:y:2022:i:pb:s036054422102034x
    DOI: 10.1016/j.energy.2021.121786
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    References listed on IDEAS

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    1. Liu, Yongge & Hou, Jian & Zhao, Haifeng & Liu, Xiaoyu & Xia, Zhizeng, 2018. "A method to recover natural gas hydrates with geothermal energy conveyed by CO2," Energy, Elsevier, vol. 144(C), pages 265-278.
    2. Kou, Xuan & Li, Xiao-Sen & Wang, Yi & Zhang, Yu & Chen, Zhao-Yang, 2020. "Distribution and reformation characteristics of gas hydrate during hydrate dissociation by thermal stimulation and depressurization methods," Applied Energy, Elsevier, vol. 277(C).
    3. Yu, Lu & Zhang, Liang & Zhang, Rui & Ren, Shaoran, 2018. "Assessment of natural gas production from hydrate-bearing sediments with unconsolidated argillaceous siltstones via a controlled sandout method," Energy, Elsevier, vol. 160(C), pages 654-667.
    4. Karasu, Seçkin & Altan, Aytaç & Bekiros, Stelios & Ahmad, Wasim, 2020. "A new forecasting model with wrapper-based feature selection approach using multi-objective optimization technique for chaotic crude oil time series," Energy, Elsevier, vol. 212(C).
    5. Chen, Lin & Feng, Yongchang & Kogawa, Takuma & Okajima, Junnosuke & Komiya, Atsuki & Maruyama, Shigenao, 2018. "Construction and simulation of reservoir scale layered model for production and utilization of methane hydrate: The case of Nankai Trough Japan," Energy, Elsevier, vol. 143(C), pages 128-140.
    6. Nair, Vishnu Chandrasekharan & Prasad, Siddhant Kumar & Kumar, Rajnish & Sangwai, Jitendra S., 2018. "Energy recovery from simulated clayey gas hydrate reservoir using depressurization by constant rate gas release, thermal stimulation and their combinations," Applied Energy, Elsevier, vol. 225(C), pages 755-768.
    7. Yu, Tao & Guan, Guoqing & Abudula, Abuliti, 2019. "Production performance and numerical investigation of the 2017 offshore methane hydrate production test in the Nankai Trough of Japan," Applied Energy, Elsevier, vol. 251(C), pages 1-1.
    8. Li, Xiao-Sen & Xu, Chun-Gang & Zhang, Yu & Ruan, Xu-Ke & Li, Gang & Wang, Yi, 2016. "Investigation into gas production from natural gas hydrate: A review," Applied Energy, Elsevier, vol. 172(C), pages 286-322.
    9. Chong, Zheng Rong & Yang, She Hern Bryan & Babu, Ponnivalavan & Linga, Praveen & Li, Xiao-Sen, 2016. "Review of natural gas hydrates as an energy resource: Prospects and challenges," Applied Energy, Elsevier, vol. 162(C), pages 1633-1652.
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