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Design and modeling of a novel lab-on-chip

机译:新型片上实验室的设计与建模

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摘要

Increasing efforts are being directed towards lab on chips these days. A novel lab on chip has been designed and modeled in this study. The lab on chip includes 3 parts which are, a pool in which the fluid is placed, a micropump and finally a single microneedle. The whole chip was designed on a 1.5 cm*1 cm silicon wafer with a thickness of 150µ. The aim of this design was to reach suitable dimensions for the lab on chip in order to achieve the required velocity and pressure output. Also we needed to be sure about the performance of the micropump since its actuator was an initiated model. The actuator of the micropump was a PDMS (polydimethylsiloxane) layer covered with iron fillings. When the layer is exposed in a magnetic field, it will move upwards and with this displacement the pressure difference achieved under the layer will make the fluid flow in the direction desired. In this study the labonchip was modeled and analysed in OpenFoam with the dsmc solver to achieve suitable dimensions.
机译:如今,人们正加大力度致力于芯片实验室。在这项研究中,已经设计并建模了一种新型的芯片实验室。芯片实验室包括3个部分,分别是放置流体的池,微型泵,最后是单个微型针。整个芯片设计在1.5厘米×1厘米厚150µm的硅晶片上。该设计的目的是为芯片实验室达到合适的尺寸,以实现所需的速度和压力输出。另外,由于微型泵的执行器是一个初始模型,因此我们需要确定其性能。微型泵的致动器是覆盖有铁填充物的PDMS(聚二甲基硅氧烷)层。当该层暴露在磁场中时,它将向上移动,并且随着该位移,在该层下方获得的压差将使流体沿所需方向流动。在本研究中,使用dsmc求解器在OpenFoam中对labonchip进行了建模和分析,以实现合适的尺寸。

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