论文标题
超弹性振荡速导系统
A hyperelastic oscillatory Couette system
论文作者
论文摘要
我们报告了涉及两个流体层之间的粘膜固体材料层的问题(半)分析解决方案,进而将两个长的平面壁限制在两个经历振荡运动的长平面壁。通过波和边界层理论,基于流体粘度和固体弹性,将最终的系统动力学合理化。这允许对弹性流动力耦合进行物理解释,并有可能连接到从滑膜关节力学到弹性测定法的一系列广泛的生物物理现象和应用。此外,获得的溶液被证明是严格的基准测试,用于测试不可压缩的流体 - 混音固体和多相数字求解器,我们突出了我们重点介绍具有挑战性的参数集。最后,我们提供了一个交互式的在线沙箱来建立物理直觉,并开源我们的代码库。
We report (semi-)analytical solutions of a problem involving a visco-hyperelastic solid material layer sandwiched between two fluid layers, in turn confined by two long planar walls that undergo oscillatory motion. The resulting system dynamics are rationalized, based on fluid viscosity and solid elasticity, via wave and boundary-layer theory. This allows for physical interpretation of elasto-hydrodynamic coupling, potentially connecting to a broad set of biophysical phenomena and applications, from synovial joint mechanics to elastometry. Further, obtained solutions are demonstrated to be rigorous benchmarks for testing coupled incompressible fluid--hyperelastic solid and multiphase numerical solvers, towards which we highlight challenging parameter sets. Finally, we provide an interactive, online sandbox to build physical intuition, and open-source our code-base.