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Bernoulli’s Equation is one of the cornerstones of fluid dynamics, helping us understand how fluids behave when they move ...
The Stokes-Einstein equation is a fundamental relation in physics that describes the diffusion of spherical particles through a fluid with low Reynolds number. It relates the diffusion coefficient (D) ...
The Navier-Stokes equations represent a cornerstone of fluid dynamics, providing a mathematical framework to describe the motion of viscous fluids. These nonlinear partial differential equations ...
Physicist Richard Feynman predicted that the explanation must be hidden in fundamental equations of fluid dynamics, called the Navier-Stokes equations. But these equations are very difficult to ...
Computational Fluid Dynamics. Our research efforts in Computational Fluid Dynamics (CFD) include high performance computing for compressible and incompressible flows, development of finite volume ...
For more than 250 years, mathematicians have wondered if the Euler equations might sometimes fail to describe a fluid’s flow. Now there’s a breakthrough.
Tackle the fluid dynamics scenarios that are ubiquitous in engineering, such as computational fluid dynamics in pharmaceuticals. Incorporate efficiency into complex CFD/CHT problem ... sprinklers, etc ...