Numerical Simulation of Dropwise Condensation of Steam over Hybrid Surfaces via New Non-Dimensional Heat Transfer Model

Fluids Pub Date : 2023-11-15 DOI:10.3390/fluids8110300
Giulio Croce, N. Suzzi
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Abstract

Dropwise condensation (DWC) of steam over hybrid hydrophobic–hydrophilic surfaces is numerically investigated via a phenomenological, Lagrangian model. The full non-dimensionalization of the heat transfer model, needed to determine the droplet growth, allows for generalization of computational results. Hybrid surfaces characterized by recursive geometries are implemented via the introduction of proper boundary conditions. The numerical size distribution of both the large and the small droplet populations, crucial for development of simplified, statistically sound models, is compared with empirical and theoretical correlations. Then, the validation with experimental data involving DWC over an hybrid surface is successfully conducted and the heat flux is enhanced under different operating conditions via hybrid geometry optimization.
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通过新型非维度传热模型对混合表面上蒸汽的滴式冷凝进行数值模拟
通过现象学拉格朗日模型对蒸汽在疏水-亲水混合表面上的液滴凝结(DWC)进行了数值研究。确定液滴增长所需的传热模型的完全无维度化使得计算结果具有通用性。通过引入适当的边界条件,实现了以递归几何形状为特征的混合表面。大液滴群和小液滴群的数值大小分布与经验和理论相关性进行了比较,这对开发简化、统计合理的模型至关重要。然后,利用混合表面上的 DWC 实验数据成功地进行了验证,并通过混合几何优化提高了不同工作条件下的热通量。
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