首页> 外文期刊>Multidiscipline modeling in materials and structures >THERMAL ANALYSIS OF A CONTINUOUS FLOW POLYMERASE CHAIN REACTION MICRODEVICE USING ANALYTICAL FINITE ELEMENT SIMULATION
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THERMAL ANALYSIS OF A CONTINUOUS FLOW POLYMERASE CHAIN REACTION MICRODEVICE USING ANALYTICAL FINITE ELEMENT SIMULATION

机译:连续流动聚合酶链反应微装置的热分析的有限元模拟

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A simplified general purpose analytical finite element model has been developed to analyze the thermal performance of a continuous flow polymerase chain reaction (CPCR) microdevice. The corresponding governing differential equations along with the appropriate boundary conditions have been solved using a self-developed code in Matlab®. Results obtained from the finite element simulations have been validated with available published results and also showed good agreement with those obtained from commercial FEA package, ANSYS®. The present methodology has an added advantage due to its flexibility where the unit cell of the finite element model can be arranged into different orientation for analyses of different CPCR microdevice configuration. In microchannel heat sinks, the results obtained agree well with the published result which demonstrates the flexibility and robustness of present methodology to be used for various applications.
机译:已经开发了简化的通用分析有限元模型来分析连续流聚合酶链反应(CPCR)微型设备的热性能。使用Matlab®自行开发的代码已解决了相应的控制微分方程以及适当的边界条件。从有限元模拟获得的结果已得到可用的公开结果的验证,并且与从商业有限元分析软件包ANSYS®获得的结果也显示出良好的一致性。本方法由于其灵活性而具有附加的优点,其中可以将有限元模型的晶胞布置成不同的取向,以分析不同的CPCR微器件结构。在微通道散热器中,获得的结果与已发表的结果非常吻合,该结果证明了可用于各种应用的本方法的灵活性和耐用性。

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