NASA NTRS · 19900056260
Computation of convective flow with gravity modulation in rectangular cavities
Abstract
In this work, a computational study is presented for the investigation of gravity modulation (g-jitter) effects in thermally driven cavity flows at terrestrial and microgravity environments. The two-dimensional, time-dependent Navier-Stokes equations are numerically integrated by a time-split method using direct matrix solvers. Computations at terrestrial gravity are utilized to assess the effects of adiabatic side-wall boundary conditions as well as the full nonlinearity of the governing equations on the sinusoidally forced Benard problem studied by Gresho and Sani. The low-g calculations focus on the establishment of critical frequency ranges and consider the effects of modulation direction and randomness. The applicability of linear analysis in the excitable frequency range at low g is also discussed.
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Biringen, S., Danabasoglu, G.. 1990-07-01. Computation of convective flow with gravity modulation in rectangular cavities. https://ntrs.nasa.gov/citations/19900056260
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