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Heat transfer enhancement in chilldown process with electrospun nanofiber coating

机译:电纺纳米纤维涂层冷却过程中的传热增强

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摘要

In this study, a method to enhance boiling heat transfer in cryogenic fluids by using nanofiber coating was proposed and validated. For this method, a nanofiber coating of polyvinyl alcohol (PVA) was fabricated on the surface of a copper plate via electrospinning, which is a technique that uses a high-voltage electric field. A chilldown experiment conducted with the copper plate and liquid nitrogen revealed that the nanofiber coating had the potential to reduce the chilldown time drastically. It was observed that the heat flux through the nanofiber-coated plate increased immediately after the chilldown period began, and it exceeded that of the plate without coating for the entire test duration. Consequently, the chilldown (boiling) curve did not have a minimum heat flux point, which is generally seen in pool boiling process. The critical heat flux was twice as large as that of the conventional method with a bare copper plate. Overall, the chilldown curve of the nanofiber-coated plate was distinct from a conventional boiling curve with a bare plate.
机译:在该研究中,提出了一种通过使用纳米纤维涂层来增强低温流体中沸腾热传递的方法。对于该方法,通过静电纺丝在铜板的表面上制造纳米纤维涂层(PVA),这是一种使用高压电场的技术。用铜板和液氮进行的寒冷试验显示,纳米纤维涂层具有巨大地减少寒冷的时间。观察到通过纳米纤维涂层的热通量在冷却时段开始后立即增加,并且在整个测试持续时间内超过板的涂层而超过板。因此,寒冷(沸腾)曲线没有最小的热通量点,这通常在池沸腾过程中看到。临界热通量是裸铜板的常规方法的两倍。总的来说,纳米纤维涂层板的寒冷曲线与具有裸板的常规沸腾曲线不同。

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