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PRESSURE-DRIVEN WATER FLOWS IN TRAPEZOIDAL SILICON MICROCHANNELS

机译:梯形硅微通道中的压力驱动水流

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Experiments were conducted to investigate flow characteristics of water through trapezoidal silicon microchannels with a hydraulic diameter ranging from 51 to 169μm. In the experiments, the flow rate and pressure drop across the microchannels were measured at steady states. The experimental results were compared with the predictions from the conventional laminar flow theory. A significant difference between the experimental data and the theoretical predictions was found. Experimental results indicate that pressure gradient and flow friction in microchannels are higher than those given by the conventional laminar flow theory. The measured higher pressure gradient and flow friction maybe be due to the effect of surface roughness of the microchannels. A roughness-viscosity model is proposed to interpret the experimental data.
机译:进行实验以研究水通过水力直径为51至169μm的梯形硅微通道的流动特性。在实验中,在稳态下测量了穿过微通道的流速和压降。将实验结果与常规层流理论的预测结果进行了比较。发现实验数据与理论预测之间存在显着差异。实验结果表明,微通道中的压力梯度和流动摩擦高于常规层流理论给出的压力梯度和流动摩擦。测得的较高压力梯度和流动摩擦可能是由于微通道表面粗糙度的影响。提出了粗糙度-粘度模型来解释实验数据。

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