首页> 外文会议>ASME international conference on nanochannels, microchannels and minichannels >ENHANCEMENT OF MASS AND HEAT TRANSFER USING HERRINGBONE-INSPIRED MICROSTRUCTURES FOR APPLICATION IN MICROFLUIDIC REDOX FLOW CELLS
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ENHANCEMENT OF MASS AND HEAT TRANSFER USING HERRINGBONE-INSPIRED MICROSTRUCTURES FOR APPLICATION IN MICROFLUIDIC REDOX FLOW CELLS

机译:人字形启发的微结构增强传质和传热,用于微流控氧化还原流细胞

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Enhancing advection is of uttermost importance in many laminar microfluidic devices in order to thin boundary layers which limit both mass and heat transfer. We address this challenge by integrating herringbone-inspired flow promoters in channels for microfluidics. Due to the small dimensions of microchannels, microfluidic devices typically experience a purely laminar flow regime and are thus limited by diffusion. By augmenting diffusion limited transport to the wall of species and heat with advective transport mechanisms, the performance per unit area of microfluidic devices can be significantly improved. In the present contribution, we demonstrate that herringbone microstructures are a very promising class of flow promoters to passively increase both mass transfer in chemical reactions as well as heat transfer within the same device. This combined use of the same passive flow promoter micro-structure is for example attractive for on-chip microfluidic redox flow cells for microprocessor power delivery with integrated cooling by using the same electrolyte as an energy carrier and as a coolant.
机译:在许多层流微流体装置中,为了减小限制质量和热传递的边界层,增强对流至关重要。我们通过在微流体通道中整合人字形流动促进剂来应对这一挑战。由于微通道的尺寸小,微流体装置通常会经历纯粹的层流状态,因此受到扩散的限制。通过使用对流传输机制增加扩散限制到物种壁的传输和热量,微流体装置的单位面积性能可以得到显着改善。在目前的贡献中,我们证明了人字形微结构是一类非常有前途的流动促进剂,可以被动地增加化学反应中的传质以及同一装置内的传热。相同的被动流动促进剂微结构的这种结合使用例如对于片上微流体氧化还原流动池是有吸引力的,该片上微流体氧化还原流动池通过使用相同的电解质作为能量载体和冷却剂而具有集成冷却的微处理器功率传递。

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