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Single-Sided Digital Microfluidic (SDMF) Devices for Effective Coolant Delivery and Enhanced Two-Phase Cooling

机译:单侧数字微流体(SDMF)器件,可有效输送冷却液并增强两相冷却

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Digital microfluidics (DMF) driven by electrowetting-on-dielectric (EWOD) has recently been attracting great attention as an effective liquid-handling platform for on-chip cooling. It enables rapid transportation of coolant liquid sandwiched between two parallel plates and drop-wise thermal rejection from a target heating source without additional mechanical components such as pumps, microchannels, and capillary wicks. However, a typical sandwiched configuration in DMF devices only allows sensible heat transfer, which seriously limits heat rejection capability, particularly for high-heat-flux thermal dissipation. In this paper, we present a single-sided digital microfluidic (SDMF) device that enables not only effective liquid handling on a single-sided surface, but also two-phase heat transfer to enhance thermal rejection performance. Several droplet manipulation functions required for two-phase cooling were demonstrated, including continuous droplet injection, rapid transportation as fast as 7.5 cm/s, and immobilization on the target hot spot where heat flux is locally concentrated. Using the SDMF platform, we experimentally demonstrated high-heat-flux cooling on the hydrophilic-coated hot spot. Coolant droplets were continuously transported to the target hot spot which was mitigated below 40 K of the superheat. The effective heat transfer coefficient was stably maintained even at a high heat flux regime over ~130 W/cm 2 , which will allow us to develop a reliable thermal management module. Our SDMF technology offers an effective on-chip cooling approach, particularly for high-heat-flux thermal management based on two-phase heat transfer.
机译:作为电介质片上冷却的有效液体处理平台,由电介质上电润湿(EWOD)驱动的数字微流控(DMF)最近引起了广泛的关注。它能够快速输送夹在两个平行板之间的冷却液,并从目标热源滴下热量,而无需其他机械组件,例如泵,微通道和毛细管芯。但是,DMF设备中的典型夹心配置仅允许显热传递,这严重限制了散热能力,尤其是对于高热通量散热而言。在本文中,我们提出了一种单面数字微流体(SDMF)设备,该设备不仅能够在单面表面上进行有效的液体处理,而且还能够进行两相传热,以提高散热性能。证明了两相冷却所需的几种液滴操纵功能,包括连续液滴喷射,高达7.5 cm / s的快速输送以及固定在目标热斑上(热流局部集中)。使用SDMF平台,我们实验证明了在亲水涂层热点上的高热通量冷却。冷却剂液滴连续传输到目标热点,该目标热点在过热度低于40 K时得到缓解。即使在〜130 W / cm 2的高热通量条件下,有效传热系数也得以稳定保持,这将使我们能够开发出可靠的热管理模块。我们的SDMF技术提供了一种有效的片上冷却方法,特别是针对基于两相传热的高热通量热管理。

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