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首页> 外文期刊>International Journal of Heat and Mass Transfer >Chaos in nucleate boiling―nonlinear analysis and modelling
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Chaos in nucleate boiling―nonlinear analysis and modelling

机译:核沸腾中的混沌-非线性分析与建模

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摘要

The artificial surfaces are applied to study the pool boiling features, including the surface temperature fluctuation and nucleation sites interaction. The nonlinear analysis of temperature fluctuation has been carried out. Under the single nucleation site the low dimensional deterministic chaos has been observed. It has been found that the thermal interaction between two nucleation sites decreases and the hydrodynamic interaction increases the frequency of bubble departure. It has been also found out that hydrodynamic interaction makes that the process of bubbles departure becomes more predictable. To explain the mechanism of deterministic chaos appearance the simple model of heat transfer under the nucleation sites has been presented. The obtained results of simulations show that the nonlinearity introduced to heat transfer as a result of changing in time the heat flux absorbed by bubbles leads to chaotic changes of heating surface temperature at nucleation site. The model has been used to analyse the behavior of thermal interaction between nucleation sites with chaotically departing bubbles. The results obtained from simulation explain experimental results.
机译:人工表面被用于研究池沸腾特征,包括表面温度波动和成核位点的相互作用。已经对温度波动进行了非线性分析。在单个成核位点下,已经观察到低维确定性混乱。已经发现,两个成核位置之间的热相互作用降低,并且流体动力学相互作用增加了气泡离开的频率。还已经发现,流体动力相互作用使得气泡离开的过程变得更加可预测。为了解释确定性混沌出现的机理,提出了在成核位置下传热的简单模型。仿真结果表明,随着时间的变化,气泡吸收的热通量随时间的变化而引入热传递的非线性会导致成核部位加热表面温度的混沌变化。该模型已用于分析成核位点之间具有混沌离去气泡的热相互作用行为。从仿真获得的结果解释了实验结果。

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