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A STABILIZATION STRATEGY OF MULTI-RESOLUTION MULTIPHASE MPS METHOD

  • Yubao Zhong
  • , Sijun Li
  • , Ronghua Chen
  • , Kailun Guo
  • , Wenxi Tian
  • Xi'an Jiaotong University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

2 Scopus citations

Abstract

CFD simulations of multiphase behavior are essential in the safety analysis of nuclear reactors. As a particle method, the MPS method inherently possesses the capability of capturing interfaces or free surfaces. The PArticle method for Nuclear reactor thermal hyDraulic Analysis (PANDA) is a software platform based on particle methods, aiming to provide a safety analysis of key thermal-hydraulic phenomenon in nuclear reactors. The integrated PANDA-BD adopts the specially designed Multiphase MPS method (MMPS method), and shows great ability in difficult multiphase simulation. However, due to the semi-implicit algorithm and the uniformity of particle size, MMPS incurs a relatively high computational cost. To improve the efficiency, some multi-resolution techniques have been developed for the MPS method. Another challenge with the MPS method could be the stabilizing issue. A seriously bias particle distribution could lead to the failure of the simulation. Most of the current rearrangement methods assume a uniform particle size, and are therefore not suitable under a multi-resolution scheme. In this study, the concept of local compressed ratio (LCR) is proposed to measure the uniformity of the particle distribution under multi-resolution. An optimized particle-shifting technique based on the novel interface recognition and LCR is developed. A series of regularization tests are performed, showing the regularization ability under both single and multiple resolution cases. Simulations of Rayleigh-Taylor Instability are presented, the novel interface detection is tested and shows good accuracy, the robustness and efficiency of the proposed method for multiphase simulation is proven.

Original languageEnglish
Title of host publicationComputational Fluid Dynamics (CFD) and Applications
PublisherAmerican Society of Mechanical Engineers (ASME)
ISBN (Electronic)9780791888278
DOIs
StatePublished - 2024
Event2024 31st International Conference on Nuclear Engineering, ICONE 2024 - Prague, Czech Republic
Duration: 4 Aug 20248 Aug 2024

Publication series

NameProceedings of 2024 31st International Conference on Nuclear Engineering, ICONE 2024
Volume7

Conference

Conference2024 31st International Conference on Nuclear Engineering, ICONE 2024
Country/TerritoryCzech Republic
CityPrague
Period4/08/248/08/24

Keywords

  • MPS method
  • Multi-resolution
  • Particle shifting

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