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Mechanically-driven pulsating flow valve for heat and mass transfer enhancement

机译:机械驱动的脉动流量阀,用于提高传热和传质

摘要

There are various methods for increasing heat transfer rates between a fluid jet (or array of jets) and an impingement surface. In a current investigation of pulsed flow impingement heat transfer, a pulsed jet with variable duty cycle impinging upon a heat transfer surface is capable of enhancing heat transfer relative to the heat transfer rate for steady flows. This principle is the subject of an in-depth experimental study. In the future this work will be extended to include numerical simulations. Potential applications include electronics cooling and drying processes in the manufacturing industry. Initial results indicate more than 50% heat transfer enhancement associated with control of the duty cycle parameter with a mechanical valve for use in industrial systems which is currently under development. Further experiments into boundary layer instability, and high frequency pulsations are under way.
机译:存在增加流体射流(或射流阵列)和冲击表面之间的传热速率的多种方法。在对脉冲流冲击传热的当前研究中,具有可变占空比的脉冲射流撞击在传热表面上,能够相对于稳定流动的传热速率增强传热。该原理是深入实验研究的主题。将来,这项工作将扩展到包括数值模拟在内。潜在的应用包括制造业中的电子设备冷却和干燥过程。初步结果表明,与目前正在开发的工业系统中使用的机械阀控制占空比参数相关的传热增强超过50%。边界层不稳定性和高频脉动的进一步实验正在进行中。

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