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Dynamics of cryogen deposition relative to heat extraction rate during cryogen spray cooling

机译:冷冻剂喷涂冷却过程中冷冻剂沉积的动态

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Goal is to investigate how delivery nozzle design influences the cooling rate of cryogen spray as used in skin laser treatments. Cryogen was sprayed through nozzles that consist of metal tubes with either a narrow or wide diameter and two different lengths. Fast-flashlamp photography showed that the wide nozzles, in particular the long wide one, produced a cryogen jet (very small spray cone angle) rather than a spray (cone angles of about 15 degrees or higher) and appeared to atomize the cryogen less finely than the narrow nozzles. We measured the cooling rate by spraying some cryogen on an epoxy-block with thermocouples embedded. The heat extraction rate of the wide nozzles was higher than that of the narrow nozzles. The results suggest that finely atomized droplets produced by the narrow nozzles do not have enough kinetic energy to break through a layer of liquid cryogen accumulated on the object, which may act as a thermal barrier and, thus, slow down heat extraction. Presumably, larger droplets or non- broken jets ensure a more violent impact on this layer and therefore ensure an enhanced thermal contact. The margin of error for the heat extraction estimate is analyzed when using the epoxy-block. We introduce a complementary method for estimating heat extraction rate of cryogen sprays.
机译:目标是调查传送喷嘴设计如何影响皮肤激光治疗中使用的低温喷雾的冷却速率。通过由金属管组成的喷嘴喷洒冷冻剂,其具有窄或宽直径和两个不同的长度。 Fast-Flashlamp Photography显示宽幅喷嘴,特别是长宽的喷嘴,产生了低温射流(非常小的喷雾锥角)而不是喷雾(锥角约为15度或更高),并且似乎更细化了冷冻剂比狭窄的喷嘴。通过嵌入热电偶在环氧树区上喷洒一些冷冻剂,我们测量了冷却速率。宽喷嘴的热提取率高于窄喷嘴的热量提取率。结果表明,由窄喷嘴产生的精细雾化液滴没有足够的动能,以突破积聚在物体上的液体冷冻剂,这可以充当热屏障,从而减慢热辐射。据推测,较大的液滴或非破碎的喷气机可确保对该层的更剧烈的影响,因此确保增强的热接触。使用环氧树区块时,分析了热提取估计的误差幅度。我们介绍一种互补方法,用于估算低温喷雾的热提取率。

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