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Fluidics-the link between micro and nano sciences and technologies

机译:流体学-微米与纳米科学与技术之间的联系

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Microfluidics is a collection of processes for moving bulk fluid mass or controlling the paths of selected embedded particles, cells or molecules, in flows. Length scale matching between the flow and the device is the key for efficient momentum and energy transfers of the desired fluid motions. MEMS enable us to handle minute amounts of fluid in the nano or pico liter range. With properly designed microfluidic devices, molecules can be directly manipulated by the flow patterns inside the device, which provides a pathway to exploit the nano world. Obviously, understanding of the molecular effects on flows becomes a crucial issue. In traditional fluid dynamics, the flow length scale is much larger than the molecular length scale. Continuum is the most common hypothesis for flow researches. In the case of microano engineering system, we are in the transition regime between continuum and molecule dominated conditions. This feature brings us the challenges when exploring the science and developing the technology in microano fluidics.
机译:微流控技术是用于移动大量流体或控制流中选定的嵌入式粒子,细胞或分子的路径的过程的集合。流量与设备之间的长度比例匹配是实现所需流体运动的有效动量和能量传递的关键。 MEMS使我们能够处理纳升或皮升范围内的微量流体。使用适当设计的微流控设备,可以通过设备内部的流动模式直接操纵分子,这为开发纳米世界提供了途径。显然,了解分子对流动的影响已成为至关重要的问题。在传统的流体动力学中,流动长度尺度远大于分子长度尺度。连续体是流动研究最常见的假设。在微/纳米工程系统的情况下,我们处于连续体和分子主导条件之间的过渡状态。此功能给我们探索微/纳米流体学领域的科学和开发技术时带来了挑战。

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