High-Energy Fluidics is the application of fluid dynamic principles to explain astrophysical anomalies that involve sudden releases of energy. These phenomena are interpreted as shockwaves, cavitations, or viscous friction within the Physical Sea medium.
GRBs are interpreted as shockwaves caused by rapid Sea Cavitation during the collapse of massive stars.
The extreme density of a collapsing star causes the surrounding Physical Sea to "cavitate" (implode and explode), releasing massive amounts of energy as a transverse shockwave.
FRBs are interpreted as localized "Space-Quakes"—elastic snaps in the thinned vacuum lattice of the Sea.
Where is the local elastic constant of the Physical Sea medium. A sudden release of built-up tension in the "thinned" lattice produces a sharp, high-intensity radio pulse.
The solar corona's extreme temperature is explained by Viscous Friction between a star's magnetic field and the Physical Sea medium.
Where is the viscosity of the Sea. As a star's magnetic fields whip through the energy-dense medium, the resulting friction generates intense heat, far exceeding the temperature of the star's surface.