论文标题

使用界面跟踪方法的成核沸腾模拟

Nucleate Boiling Simulation using Interface Tracking Method

论文作者

Li, Mengnan, Moortgat, Joachim, Bolotnov, Igor A.

论文摘要

3D多相计算流体动力学(M-CFD)模型和物理知识的数据驱动模型的开发和验证需要高质量和高分辨率的数据。考虑到在原型条件下获取相应的实验数据的困难,可以使用基于接口跟踪方法(ITM)模型进行两相沸腾的模拟,可用于以一致且相对经济的方式生成高分辨率的数值数据。在一个名为Phasta的基于ITM的多相求解器之一中开发了沸腾模型,以研究核沸腾现象。通过此ITM沸腾模型研究了在相邻成核位点形成的气泡之间的相互作用。本文介绍了具有多个成核位点的成核池沸腾模拟,并研究了位点距离,相邻的气泡大小和接触角效应。提出的沸腾模型可以对3D非结构化计算网格进行沸腾模拟。这些仿真结果提高了我们对成核沸腾现象的物理机制的理解,并为M-CFD验证和高级沸腾模型开发提供了高分辨率的数值数据。

The development and validation of 3D multiphase computational fluid dynamics (M-CFD) models and physics-informed data-driven modeling require data of high-quality and high-resolution. Considering the difficulties in acquiring the corresponding experimental data in prototypical conditions, two-phase boiling simulations by Interface Tracking Method (ITM) based models can be used to generate high-resolution numerical data in a consistent and relatively economical manner. A boiling model is developed in one of the ITM-based multiphase-flow solvers, named PHASTA, to investigate the nucleate boiling phenomenon. The interaction between bubbles forming at adjacent nucleation sites is investigated with this ITM boiling model. Nucleate pool boiling simulations with multiple nucleation sites are presented in this paper and influences of site distance, neighboring bubble size and contact angle effect are investigated. The presented boiling model can conduct boiling simulation on 3D unstructured computational meshes. These simulation results improve our understanding of the physical mechanisms of the nucleate boiling phenomenon and provide high-resolution numerical data for M-CFD validation and advanced boiling model development.

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