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February 16, 2026Advances in Aerodynamics0 citationsOpen Access

A unified gas-kinetic framework from Boltzmann to Navier-Stokes scales

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ZGZhaoli GuoKXKun XuYZYajun Zhu

Key Points

  • To develop a unified framework that connects kinetic and hydrodynamic models of gas flows.
  • Proposed a gas-kinetic framework classifying molecules by collision histories.
  • The framework bridges molecular kinetics and continuum fluid dynamics.
  • Described connections between the Boltzmann and Navier-Stokes equations.
  • Established a self-consistent framework for multiscale gas flows.
  • Showed practical advantages for modeling various gas flow regimes.

Abstract

Abstract Neither molecular kinetics nor continuum fluid dynamics alone is adequate to describe multiscale gas flows across different regimes. Bridging these regimes within a single self-consistent framework has long been a central challenge in fluid mechanics. We propose a unified gas kinetic framework that classifies molecules by their collision histories over an observation timescale. This formulation recovers the Boltzmann and Navier–Stokes equations as limiting cases, providing a transparent connection between kinetic and hydrodynamic descriptions. Beyond practical advantages for multiscale modeling, this framework offers a new perspective on Hilbert’s sixth problem by linking microscopic dynamics to continuum mechanics through a tunable observational scale.

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Cite This Study

Guo et al. (2026) studied this question.

synapsesocial.com/papers/69926552eb1f82dc367a133ehttps://doi.org/10.1186/s42774-025-00252-1
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