Loutherback Kevin, Puchalla Jason, Austin Robert H, Sturm James C
Princeton Institute for Science and Technology of Materials, Princeton, New Jersey, USA.
Phys Rev Lett. 2009 Jan 30;102(4):045301. doi: 10.1103/PhysRevLett.102.045301. Epub 2009 Jan 26.
We present a deterministic, nonthermal ratchet where the trajectory of particles in a certain size range is not reversible when the sign of the pressure gradient is reversed at a low Reynolds number. This effect is produced by employing triangular rather than the conventional circular posts in an array that selectively displaces particles transported through the array. The ratchet irreversibly moves particles of a certain size range in a direction orthogonal to an oscillating flow, with no net displacement of the fluid itself. The underlying mechanism of this ratchet is shown to be connected to irreversible particle-post interactions and the asymmetric fluid velocity distribution through the gap between the triangular posts. Diffusion plays no role in this ratchet, and hence the device parameters presented here can be scaled up to high rates of flow, of clear importance in separation technologies.
我们展示了一种确定性的非热棘轮,在低雷诺数下,当压力梯度的符号反转时,特定尺寸范围内粒子的轨迹是不可逆的。这种效应是通过在阵列中使用三角形而非传统的圆形柱体产生的,这些柱体选择性地推动通过阵列传输的粒子。该棘轮使特定尺寸范围内的粒子在与振荡流正交的方向上不可逆地移动,而流体本身没有净位移。结果表明,这种棘轮的潜在机制与不可逆的粒子-柱体相互作用以及通过三角形柱体之间间隙的不对称流体速度分布有关。扩散在这种棘轮中不起作用,因此这里给出的设备参数可以扩大到高流速,这在分离技术中显然很重要。