Hou J S, Holmes M H, Lai W M, Mow V C
Department of Mechanical Engineering, Columbia University, New York, NY 10032.
J Biomech Eng. 1989 Feb;111(1):78-87. doi: 10.1115/1.3168343.
The objective of this study is to establish and verify the set of boundary conditions at the interface between a biphasic mixture (articular cartilage) and a Newtonian or non-Newtonian fluid (synovial fluid) such that a set of well-posed mathematical problems may be formulated to investigate joint lubrication problems. A "pseudo-no-slip" kinematic boundary condition is proposed based upon the principle that the conditions at the interface between mixtures or mixtures and fluids must reduce to those boundary conditions in single phase continuum mechanics. From this proposed kinematic boundary condition, and balances of mass, momentum and energy, the boundary conditions at the interface between a biphasic mixture and a Newtonian or non-Newtonian fluid are mathematically derived. Based upon these general results, the appropriate boundary conditions needed in modeling the cartilage-synovial fluid-cartilage lubrication problem are deduced. For two simple cases where a Newtonian viscous fluid is forced to flow (with imposed Couette or Poiseuille flow conditions) over a porous-permeable biphasic material of relatively low permeability, the well known empirical Taylor slip condition may be derived using matched asymptotic analysis of the boundary layer at the interface.
本研究的目的是建立并验证双相混合物(关节软骨)与牛顿流体或非牛顿流体(滑液)之间界面处的边界条件集,以便能够制定一组适定的数学问题来研究关节润滑问题。基于混合物之间或混合物与流体之间界面处的条件必须简化为单相连续介质力学中的那些边界条件这一原理,提出了一种“伪无滑移”运动学边界条件。从这个提出的运动学边界条件以及质量、动量和能量平衡出发,通过数学推导得出双相混合物与牛顿流体或非牛顿流体之间界面处的边界条件。基于这些一般结果,推导出了模拟软骨 - 滑液 - 软骨润滑问题所需的适当边界条件。对于两种简单情况,即牛顿粘性流体在相对低渗透率的多孔渗透双相材料上强制流动(施加库埃特流或泊肃叶流条件),可以使用界面处边界层的匹配渐近分析得出著名的经验泰勒滑移条件。