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负压引发的冰核形成。

Ice nucleation triggered by negative pressure.

作者信息

Marcolli Claudia

机构信息

Institute for Atmospheric and Climate Science, ETH Zurich, Zurich, Switzerland.

出版信息

Sci Rep. 2017 Nov 30;7(1):16634. doi: 10.1038/s41598-017-16787-3.

Abstract

Homogeneous ice nucleation needs supercooling of more than 35 K to become effective. When pressure is applied to water, the melting and the freezing points both decrease. Conversely, melting and freezing temperatures increase under negative pressure, i.e. when water is stretched. This study presents an extrapolation of homogeneous ice nucleation temperatures from positive to negative pressures as a basis for further exploration of ice nucleation under negative pressure. It predicts that increasing negative pressure at temperatures below about 262 K eventually results in homogeneous ice nucleation while at warmer temperature homogeneous cavitation, i. e. bubble nucleation, dominates. Negative pressure occurs locally and briefly when water is stretched due to mechanical shock, sonic waves, or fragmentation. The occurrence of such transient negative pressure should suffice to trigger homogeneous ice nucleation at large supercooling in the absence of ice-nucleating surfaces. In addition, negative pressure can act together with ice-inducing surfaces to enhance their intrinsic ice nucleation efficiency. Dynamic ice nucleation can be used to improve properties and uniformity of frozen products by applying ultrasonic fields and might also be relevant for the freezing of large drops in rainclouds.

摘要

均匀冰核化需要超过35 K的过冷度才能生效。当对水施加压力时,熔点和冰点都会降低。相反,在负压下,即当水被拉伸时,熔点和冰点会升高。本研究提出了从正压到负压的均匀冰核化温度的外推,作为进一步探索负压下冰核化的基础。研究预测,在低于约262 K的温度下增加负压最终会导致均匀冰核化,而在较高温度下,均匀空化,即气泡核化,占主导地位。当水由于机械冲击、声波或破碎而被拉伸时,会局部且短暂地出现负压。这种瞬态负压的出现应该足以在没有冰核表面的情况下,在大过冷度下触发均匀冰核化。此外,负压可以与诱导冰的表面共同作用,提高其固有冰核化效率。通过施加超声场,动态冰核化可用于改善冷冻产品的性能和均匀性,并且可能也与雨云中大水滴的冻结有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e134/5709365/1b837397e389/41598_2017_16787_Fig1_HTML.jpg

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