Physics – Fluid Dynamics
Scientific paper
Nov 2003
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2003aps..dfd.ab006g&link_type=abstract
American Physical Society, Division of Fluid Dynamics 56th Annual Meeting, November 23-25, 2003, East Rutherford, New Jersey, ME
Physics
Fluid Dynamics
Scientific paper
Turbulence is proposed as the driving force behind the formation of the universe in a hot big bang model of quantum gravitational dynamics at Planck scales. Space, time, energy, and entropy of the expanding universe are produced by inertial-vortex Planck-Kerr forces matching gravity. Planck particle pairs permitted by the uncertainty principle emerge from the vacuum as extreme Schwarzschild black holes that form spinning extreme Kerr black holes. Prograde particle accretions to minimum-radius stable orbits release up to 42% of the rest mass energy to create an expanding, rotating, turbulent Planck gas with 10^6 Reynolds number after cooling to the (GUT) strong force freeze out temperature 10^28 K = 10-4 T_P. Inflation occurs and stretches the Corrsin-Obukhov temperature spectrum to length scales larger than the 3x10-25 m scale of causal connection ct, where c is the light speed and t the time. These fossil-temperature-turbulence patterns trigger patterns in the nucleosynthesis of the light elements that trigger the formation of gravitational plasma structures at 10^12 to 10^13 seconds. Patterns found in cosmic microwave background temperature anomalies by Bershadskii and Sreenivasan 2002 precisely match Kolmogorovian patterns for high Reynolds number turbulent mixing.
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