Onuki Akira
Department of Physics, Kyoto University, Kyoto 606-8502, Japan.
Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Mar;75(3 Pt 2):036304. doi: 10.1103/PhysRevE.75.036304. Epub 2007 Mar 9.
We present a dynamic van der Waals theory starting with entropy and energy functional with gradient contributions. The resultant hydrodynamic equations contain the stress arising from the density gradient. It provides a general scheme of two-phase hydrodynamics involving the gas-liquid transition in nonuniform temperature. Some complex hydrodynamic processes with evaporation and condensation are examined numerically. They are (i) adiabatically induced spinodal decomposition, (ii) piston effect with a bubble in liquid, (iii) temperature and velocity profiles around a droplet in heat flow, (iv) efficient latent heat transport at small liquid densities (the mechanism of heat pipes), (v) boiling in gravity with continuous bubble formation and rising, and (vi) spreading and evaporation of liquid on a heated boundary wall.
我们提出了一种动态范德瓦尔斯理论,该理论从具有梯度贡献的熵和能量泛函出发。由此产生的流体动力学方程包含了由密度梯度引起的应力。它提供了一个涉及非均匀温度下气液转变的两相流体动力学的通用方案。对一些具有蒸发和冷凝的复杂流体动力学过程进行了数值研究。它们是:(i)绝热诱导的旋节线分解,(ii)液体中气泡的活塞效应,(iii)热流中液滴周围的温度和速度分布,(iv)小液体密度下的高效潜热传输(热管机制),(v)重力作用下的沸腾,伴有连续气泡形成和上升,以及(vi)液体在加热边界壁上的铺展和蒸发。