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3D fluid simulation

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Using the Frontier supercomputer at the Department of Energy's Oak Ridge National Laboratory, researchers from the Georgia Institute of Technology have performed the largest direct numerical ...
The irregular, swirling motion of fluids we call turbulence can be found everywhere, from stirring in a teacup to currents in the planetary atmosphere. This phenomenon is governed by the Navier-Stokes ...
Scientists didn’t understand why independently oscillating microscopic particles suddenly begin moving in perfect sync when grouped together. Researchers showed that fluid-driven hydrodynamic ...
Fluid dynamics is the study of the motion of liquids, gases and plasmas. Flow is dependent on the intrinsic properties of the matter itself, such as compressibility, viscosity and density. Example ...
Transcapillary flow, which is important for tissue homeostasis, is influenced by the hydrostatic and colloid osmotic pressures of capillaries and interstitium. The interstitial fluid pressure (IFP) of ...
Abstract: With the accelerating global urbanization process, urban transportation systems are facing multiple challenges, including surging traffic flow, environmental protection, and road safety. To ...
This project provides a comprehensive flow simulation pipeline for modeling, reconstructing, and visualizing three-dimensional vascular structures and associated hemodynamic fields. It leverages ...