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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Investigation of droplet evaporation on heterogeneous surfaces using a three-dimensional thermal multiphase lattice Boltzmann model
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Investigation of droplet evaporation on heterogeneous surfaces using a three-dimensional thermal multiphase lattice Boltzmann model

机译:使用三维热多相晶格Boltzmann模型对异质表面滴湿的研究

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HighlightsA three-dimensional thermal multiphase lattice Boltzmann model was established.The stick-slip-jump behavior of droplet evaporation on patterned surfaces was investigated.The dynamic behaviors on ring-patterned and stripe-patterned surfaces were compared.AbstractIn this paper, a three-dimensional thermal multiphase lattice Boltzmann (LB) model is established to simulate droplet evaporation on heterogeneous surfaces, which employs an improved three-dimensional pseudopotential multiphase LB model and a finite-difference scheme to simulate the fluid flow and the temperature field, respectively. First, the thermal multiphase LB model is numerically validated with theD2law. Subsequently, the model is applied to simulate droplet evaporation on chemically ring-patterned surfaces. The stick-slip-jump behavior of evaporating droplets on chemically ring-patterned surfaces confirms the pinning-depinning mechanism proposed based on two-dimensional analyses. Furthermore, the dynamics of droplet evaporation on chemically stripe-patterned surfaces is investigated. Numerical results show that the droplet evaporates in a stick-slip-jump fashion in the direction perpendicular to the stripes. It is observed that the lifetime of the slip state on chemically stripe-patterned surfaces is significantly reduced in comparison with that on chemically ring-patterned surfaces, which is found to arise from the influence of the contact line on the hydrophobic stripes. In addition, it is shown that in the direction parallel to the stripes the droplet evaporates in the constant contact angle (CCA) mode. The contact radius in the parallel direction gradually decreases with time, but increases when a jump occurs in the perpendicular direction, owing to the rapid retraction of the droplet in the perpendicular direction during the jump.]]>
机译:<![cdata [ 亮点 建立了三维热量多相晶格Boltzmann模型。 粘滑跳跃行为研究了图案化表面上的液滴蒸发。 比较环形和条纹图案化表面上的动态行为。 抽象 在本文中,建立了一种三维热多相晶格Boltzmann(LB)模型来模拟异构表面上的液滴蒸发,其采用改进的三维假软盘势多相LB模型和用于模拟的有限差分方案流体流动分别和温度场。首先,热多相LB模型用 d 2 法律。随后,应用该模型以在化学环形表面上模拟液滴蒸发。在化学环形表面上蒸发液滴的粘滑跳跃行为确认了基于二维分析所提出的钉扎式机制。此外,研究了化学条纹图案化表面上的液滴蒸发的动态。数值结果表明,液滴在垂直于条纹的方向上以粘滑跳跃方式蒸发。观察到,与化学环状图案化表面上的相比之下,在化学条纹图案化表面上的寿命显着降低,这被发现从疏水条纹上的接触线的影响产生。另外,示出在平行于条纹的方向上,液滴以恒定接触角(CCA)模式蒸发。平行方向上的接触半径随时间逐渐减小,但是当垂直方向上发生跳跃时,由于液滴在跳转期间的垂直方向上的快速缩回时增加。 ]]>

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