LATENT REFERENCES / TAG2
Navier–Stokes Equations
Original title: ナビエ–ストークス方程式
This reference note belongs to Tag2 in Latent References, an archive curated by Keigo Yoshida. Its archive region is Chaos theory · Lorenz equations. The note preserves its source text and links so that readers can trace the material behind the 3D map.
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The Navier–Stokes equations are partial differential equations describing fluid motion. Derived by Henri Navier and George Gabriel Stokes, they play a fundamental role in fluid mechanics. They describe a fluid's velocity field while accounting for viscosity, density, pressure, and other factors.
ナビエ・ストークス方程式は、流体の運動を記述する偏微分方程式です。アンリ・ナビエとジョージ・ガブリエル・ストークスによって導かれ、流体力学で基礎的な役割を果たしています。この方程式は、流体の粘性や密度、圧力などを考慮し、流体の速度場を記述します。
Source updated 2025-04-28 · Snapshot 2026-10-08
Source links and calculated neighbors
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