• Advanced CFD and measurement technology for the study of multiphase flow in a media with complex structures
    編號:490 訪問權限:僅限參會人 更新:2022-05-23 14:55:42 瀏覽:406次 特邀報告

    報告開始:2022年05月27日 12:15 (Asia/Shanghai)

    報告時間:15min

    所在會議:[S2] Environmental Science and Engineering [S2-2] Theme 3 & 4

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    摘要
    In this presentation, an overview of the development of the Computational Multiphase Fluid Dynamics (CMFD) and measurement technology for the multiphase fluid flow in a complex geometry will be presented. With the application of the Euerlian Eulerian method, population balance model, closure models for interfacial force, Algebraic interfacial area density model (AIAD), a Generalized TwO-Phase flow concept (GENTOP) was developed which is able to simulate a multiscale multiphase flow which contains large free surface structure between liquid and vapor, small dispersed bubbles and droplets simultaneously. Simulation and modeling requires also verification and validation from experiment data. Here, two non-invasive technologies (Gamma ray CT, ultra fast X_ray CT) which are able to capture cross-sectional phase distribution will be introduced. The developed numerical methods and experimental technologies have high potential to be applied in the research of the multiphase flow in a media with complex structures like rock or soil.
    關鍵字
    報告人
    Wei DING
    Helmholtz Center, Germany

    Wei Ding received his Ph.D. Degree in process engineering at University Duisburg Essen, 2012, Germany. From 2011 he is a research fellow/associate in TU Dresen and later Helmholtz Zentrum Dresden Rossendorf (HZDR). Currently, he corresponds to a group in the research field of thermal-hydraulics in HZDR. As a principal investigator (PI), he was involved in projects funded by the Federal Ministry of Education and Research (BMBF), the Federal Ministry of Economic Affairs and Energy (BMWi), and so on. His research interests include thermal hydraulics, computational multiphase fluid dynamics, flow pattern transition, wall boiling wetting, critical heat flux, bubble dynamics, wetting, etc

    Markus Schubert
    Helmholtz Center, Germany

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