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Experimental Superheating and Cavitation of Water and Solutions at Spinodal-Like Negative Pressures

机译:纺丝镜状阴压下水和溶液的实验过热和空化

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The superheated liquids are metastable with respect to their vapour, what means they can exist under arid conditions whatever the temperature: capillary liquid residing in arid soils (desert shrubs, Mars sub-surface, ...), solutions in the deep Earth crust, or water involved in rapid disequilibrium events (terrestrial or submarine geysers). The superheating state changes the solvent properties of liquids, and so modifies phase transitions (solid-liquid, liquid-vapor) P-T-X conditions. The synthetic fluid inclusion (SFI) enables to fabricate micro-volumes of handmade liquid dispersed inside quartz, which readily superheat. Volumes of SFI are intermediate between macro-systems, in which superheating is restricted to around -30-35 MPa with very short lifetime, and nanosystems, wherein confinement effects predominate and in which the host size is similar to the one of the critical nucleus of vapour phase (huge nucleation barrier). This volume-to-metastability relationship is still to be defined quantitatively, and we are targeting to combine ther-mometric classical measurements with spectrometric characterizations, enabling to establish the threshold between micro- and nano-systems precisely. Meanwhile, the experiments performed so far illustrate the diversity of contexts and situations that could be modelled by superheating issues.
机译:无论温度如何:温度:毛细血管液体(沙漠灌木,火星亚表面,......),深海地壳中的毛细血管液体中的毛细血管液(沙漠灌木,火星亚表面,......),毛细管留在干旱条件下,它们都可以存在于干旱条件下的含量。或涉及快速不平衡事件(陆地或潜艇间歇泉)的水。过热状态改变液体的溶剂性质,并因此改变相转变(固液,液 - 蒸气)P-T-X条件。合成液体包裹物(SFI)能够制造分散在石英中分散的微量的手工液体,其易于过热。 SFI的体积是宏观系统之间的中间体,其中过热限制在约-30-35MPa内,具有非常短的寿命和纳米系统,其中限制效果占主导地位,其中宿主尺寸类似于临界核之一气相(巨大的成核屏障)。该体积到常量性关系仍然是定量地定义的,并且我们旨在将与光谱特性的核心经典测量组合,使得能够精确地建立微型和纳米系统之间的阈值。同时,到目前为止所进行的实验说明了可以通过过热问题建模的上下文和情况的多样性。

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