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Validation of Interface Capturing and Tracking techniques with different surface tension treatments against a Taylor bubble benchmark problem

机译:针对泰勒气泡基准问题验证了采用不同表面张力处理的界面捕获和跟踪技术

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摘要

The validation and verification of models and numerical methods for interfacial two-phase flow simulation is still a challenge and standards have not yet been established. Mostly comparing with analytical solutions, many validation studies so far have considered simple or simplified two-phase flow scenarios. While this is mandatory for method development, complementary, validation against more complex test-cases is essential, in order to prove the method's final scope of capabilities. However, one reason for the absence of such two-phase flow benchmark studies is the lack of freely accessible, detailed and high-quality experimental data. The Priority Program SPP 1506 Transport Processes at Fluidic Interfaces by the German Research Foundation DFG proposes a benchmark problem for validation of interfacial two-phase flow solvers by means of specifically designed experiments for Taylor Bubble Flow. The benchmark experiments aim at providing detailed and local data as a basis for validation. This contribution demonstrates its use by assessing and approving the reliability and accuracy of the solvers used by several research groups within the priority program. Special emphasis is set upon different approaches to surface tension calculation both for interface capturing and interface tracking methods. Data and material of the presented benchmark can be freely downloaded from the website of SPP 1506 (http://www.dfg-spp1506.de/taylor-bubble).
机译:界面两相流动模拟的模型和数值方法的验证和验证仍然是一个挑战,尚未建立标准。迄今为止,多数验证研究大多与分析解决方案进行了比较,已考虑了简单或简化的两相流方案。尽管这对于方法开发是必不可少的,但为了证明该方法的最终功能范围,必须对更复杂的测试用例进行验证是必要的。但是,缺乏此类两阶段流量基准研究的原因之一是缺乏免费获取的,详细的高质量实验数据。由德国研究基金会DFG制定的优先项目SPP 1506流体界面处的运输过程通过专门设计的泰勒气泡流实验提出了验证界面两相流求解器的基准问题。基准实验旨在提供详细的本地数据作为验证的基础。该评估通过评估和批准优先计划中多个研究小组使用的求解器的可靠性和准确性来证明其用途。针对界面捕获和界面跟踪方法的表面张力计算的不同方法特别强调。可以从SPP 1506的网站(http://www.dfg-spp1506.de/taylor-bubble)免费下载所提供基准的数据和材料。

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