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李舰 张劲柏 李椿萱. 高压下液体微管道流动的摄动分析[J]. 力学学报, 2009, 41(3): 289-299. DOI: 10.6052/0459-1879-2009-3-2008-276
引用本文: 李舰 张劲柏 李椿萱. 高压下液体微管道流动的摄动分析[J]. 力学学报, 2009, 41(3): 289-299. DOI: 10.6052/0459-1879-2009-3-2008-276
Jian Li, Jinbai Zhang, Chun-Hian Lee. Perturbation analysis of liquid flows in micro-channels driven by high pressures[J]. Chinese Journal of Theoretical and Applied Mechanics, 2009, 41(3): 289-299. DOI: 10.6052/0459-1879-2009-3-2008-276
Citation: Jian Li, Jinbai Zhang, Chun-Hian Lee. Perturbation analysis of liquid flows in micro-channels driven by high pressures[J]. Chinese Journal of Theoretical and Applied Mechanics, 2009, 41(3): 289-299. DOI: 10.6052/0459-1879-2009-3-2008-276

高压下液体微管道流动的摄动分析

Perturbation analysis of liquid flows in micro-channels driven by high pressures

  • 摘要: 应用参数摄动法对可压缩N-S方程进行渐近展开,并取其零阶近似对高压下微管道液体流动特性进行了分析.对任意截面形状和面积的微管道,在等温流动假设下将其截面形状、滑移长度等对解的贡献转化为求解该截面的格林函数,并给出等截面圆形微管道流动的零阶近似解.以此分析可压缩性、黏性以及壁面滑移等因素对高压下液体微管道流动特性的影响,进一步揭示了高压驱动下液体微管道流动偏离经典Hagen-Poiseuille(HP)理论的原因.

     

    Abstract: An asymptotic expansion of compressible N-S equations werededuced via parametric expansion, and liquid flow characteristics under highdriven pressures in long micro-channels with arbitrary cross sections wereanalyzed by solving the zeroth order equations. The contributions due tocross section, length of the wall-slip, and other related factors were takeninto account by solving the Green's function over the cross section. A setof zeroth order solutions for circular cylinders of constant cross sectionwere presented, and the influences of the compressibility and viscosity ofthe liquids, and the slip length on the flow characteristics inmicro-channels under high pressure were studies.

     

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