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A basic model of unconventional gas microscale flow based on the lattice Boltzmann method 被引量:1

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摘要 A new method for selecting dimensionless relaxation time in the lattice Boltzmann model was proposed based on similarity criterion and gas true physical parameters.At the same time,the dimensionless relaxation time was modified by considering the influence of the boundary Knudsen layer.On this basis,the second-order slip boundary condition of the wall was considered,and the key parameters in the corresponding combined bounce-back/specular-reflection boundary condition were deduced to build a new model of unconventional gas microscale flow simulation based on the lattice Boltzmann method suitable for high temperatures and high pressures.The simulation results of methane gas flow driven by body force in infinite micro-channels and flow driven by inlet-outlet pressure differential in long straight channels were compared with the numerical and analytical solutions in the literature to verify the accuracy of the model,and the dimensionless relaxation time modification was formally optimized.The results show that the new model can effectively characterize the slippage effect,compression effect,gas density and the effect of boundary Knudsen layer in the micro-scale flow of unconventional natural gas.The new model can achieve a more comprehensive characterization of the real gas flow conditions and can be used as a basic model for the simulation of unconventional gas flow on the micro-nano scale.
出处 《Petroleum Exploration and Development》 CSCD 2021年第1期179-189,共11页 石油勘探与开发(英文版)
基金 Supported by National Natural Science Foundation of China(Key Program)(51534006) National Natural Science Foundation of China(51874251)。
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  • 1华保钦,林锡祥,杨小梅.天然气二次运移和聚集研究[J].天然气地球科学,1994,5(4):1-37. 被引量:9
  • 2王勇杰,王昌杰,高家碧.低渗透多孔介质中气体滑脱行为研究[J].石油学报,1995,16(3):101-105. 被引量:50
  • 3何雅玲,王勇,李庆.格子Boltzmann方法的理论及应用[M].北京:科学出版社,2008. 被引量:11
  • 4Sondergeld C H, Ambrose R J, Rai C S, et al. Micro-structural studies of gas shales JR]. SPE 131771, 2010. 被引量:1
  • 5Roy S, Raju R, Cbuang H F, et al. Modeling gas flow through microchanncls and nanoporcs[J]. Journal of Applied Physics, 2003, 93(8): 4870-4879. 被引量:1
  • 6Guo Zhaoli, Zhao T S, Shi Yong. Physical symmetry, spatial accuracy, and relaxation time of the lattice Boltzmann equation for microgas flows[J]. Journal of Applied Physics, 2006, 99: 074903-1-074903-8. 被引量:1
  • 7Sofonea V, Sekerka R F. Boundary conditions for the upwind finite difference Lattice Boltzmann model: Evidence of slip velocity in micro-channel flow[J]. Journal of Computational Physics, 2005, 207(2): 639-629. 被引量:1
  • 8Lee T, Lin C L. A characteristic Galerkin method for discret Boltzmann equation[J]. Journal of Computational Physics, 2001,171(1): 336-356. 被引量:1
  • 9Zhang Yonghao, Qin Rongshan, Emerson D R. Lattice Boltzmann simulation of rarefied gas flows in microchannels[J]. Physical Review E, 2005, 71(4): 47702. 被引量:1
  • 10Arkilic E B, Schmidt M A, Breuer K S. Gaseous slip flow in long microclaannels[J]. Journal of Microelectromeehanieal System, 1997, 6(2): 167-178. 被引量:1

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