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Bibliographic Details
Main Authors: Guo, Yingwen, He, Yinnian, Qiu, Wenlin, Zheng, Xiangcheng
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2506.22782
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Table of Contents:
  • This work analyzes the finite element approximation to a viscoelastic flow model, which generalizes the Navier-Stokes equation and Oldroyd's model by introducing the tempered power-law memory kernel. We prove regularity and long-time exponential decay of the solutions, as well as a long-time convolution-type Grönwall inequality to support numerical analysis. A Volterra-Stokes projection is developed and analyzed to facilitate the parabolic-type duality argument, leading to the long-time error estimates and exponential decay of velocity and pressure. A benchmark problem of planar four-to-one contraction flow is simulated to substantiate the generality of the proposed model in comparison with the Navier-Stokes equation and Oldroyd's model.