GSTDTAP  > 资源环境科学
DOI10.1029/2019WR025195
Pore-Scale Investigation of Methane Hydrate Dissociation Using the Lattice Boltzmann Method
Zhang, Liming1; Zhang, Chuangde1; Zhang, Kai1; Zhang, Lei2; Yao, Jun2; Sun, Hai2; Yang, Yongfei2
2019-11-05
发表期刊WATER RESOURCES RESEARCH
ISSN0043-1397
EISSN1944-7973
出版年2019
文章类型Article;Early Access
语种英语
国家Peoples R China
英文摘要

Fundamental understanding of pore-scale methane hydrate dissociation in porous media is important to evaluate submarine slope stability and potential utilization of methane resources. In this paper, a general pore-scale framework based on the lattice Boltzmann (LB) method is established for reactive transport coupled with nonisothermal multiple physicochemical processes in porous media. The framework combines the gas hydrate dissociation kinetic model, the single-phase flow LB model, the mass transport LB model, and the conjugate heat transfer LB model. The pore-scale framework is validated by several benchmark problems and then employed to investigate the endothermic dissociation process of methane hydrate with pore-filling and grain-coating habits in porous media. The methane hydrate endothermic dissociation behavior coupled with nonlinear nonisothermal multiple physicochemical processes involving intrinsic dissociation dynamics, gas flow, mass transport, phase change heat transfer, and conjugate heat transfer is well captured by the framework. The phase change of methane hydrate dissociation and pore structure evolution for different pore habits of hydrate are well depicted, and some insights about the dissociation front advancement and temperature distributions are also obtained. In addition, the effects of temperature field, inlet temperature, and inlet pressure on methane hydrate dissociation are investigated. The pore-scale methane hydrate dissociation helps to advance our understanding of permeability-saturation variation relation for continuum models.


英文关键词methane hydrate lattice Boltzmann method dissociation pore scale permeability variation
领域资源环境
收录类别SCI-E
WOS记录号WOS:000494353500001
WOS关键词DISSOLUTION-INDUCED CHANGES ; POROUS-MEDIA ; BEARING SEDIMENTS ; RELATIVE PERMEABILITY ; HYDRAULIC PERMEABILITY ; FLOW ; SIMULATION ; TRANSPORT ; FLUID ; DEPRESSURIZATION
WOS类目Environmental Sciences ; Limnology ; Water Resources
WOS研究方向Environmental Sciences & Ecology ; Marine & Freshwater Biology ; Water Resources
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/188254
专题资源环境科学
作者单位1.China Univ Petr East China, Sch Petr Engn, Qingdao, Shandong, Peoples R China;
2.China Univ Petr East China, Minist Educ, Key Lab Unconvent Oil & Gas Dev, Qingdao, Shandong, Peoples R China
推荐引用方式
GB/T 7714
Zhang, Liming,Zhang, Chuangde,Zhang, Kai,et al. Pore-Scale Investigation of Methane Hydrate Dissociation Using the Lattice Boltzmann Method[J]. WATER RESOURCES RESEARCH,2019.
APA Zhang, Liming.,Zhang, Chuangde.,Zhang, Kai.,Zhang, Lei.,Yao, Jun.,...&Yang, Yongfei.(2019).Pore-Scale Investigation of Methane Hydrate Dissociation Using the Lattice Boltzmann Method.WATER RESOURCES RESEARCH.
MLA Zhang, Liming,et al."Pore-Scale Investigation of Methane Hydrate Dissociation Using the Lattice Boltzmann Method".WATER RESOURCES RESEARCH (2019).
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