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Momentum and energy transfer during phase change of water under high hydrostatic pressure.

机译:在高静水压力下水的相变过程中的动量和能量传递。

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摘要

This work is aimed at investigating phase change processes of water under high pressure by help of an in situ visualization technique. High Pressure Digital Particle Image Velocimetry and Thermography (HP-DPIV and HP-DPIT) techniques are applied to a phase change process for the first time and temperature-convective fields are analysed. Peculiar local flow characteristics are observed, such as stagnation or extensional flow regions, for different processes. Pressure-induced thawing process demonstrates inhomogeneities in temperature field, whereas pressure-assisted thawing has almost a homogeneous temperature distribution. Moreover, one of the ice types which has a higher density than that of water (Ice III) is distinguished with an opposite direction of motion of the solid body, regarding Ice I, and it demonstrates different flow characteristics. Additionally, the processes are represented with conservation balance for mass, energy and momentum to render a global interpretation and to analyse process mechanisms..
机译:这项工作旨在借助原位可视化技术研究高压下水的相变过程。高压数字粒子图像测速和热成像技术(HP-DPIV和HP-DPIT)首次应用于相变过程,并对温度对流场进行了分析。对于不同的过程,观察到特殊的局部流动特性,例如停滞或延伸流动区域。压力诱导的解冻过程在温度场中表现出不均匀性,而压力辅助的解冻几乎具有均匀的温度分布。此外,就冰I而言,密度比水高的一种冰类型(冰III)以与固体相反的运动方向来区分,并表现出不同的流动特性。此外,过程以质量,能量和动量的守恒平衡来表示,以进行全局解释并分析过程机制。

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