SPH modeling of natural convection around a heated horizontal cylinder: A comparison with experiments
An experimental and numerical smoothed particle hydrodynamics (SPH) analysis was performed for the convective flow arising from a horizontal, thin cylindrical heat source enclosed in a glycerin-filled, slender enclosure at low Rayleigh numbers ($1.18\leq {\rm Ra}\leq 242$). Both the experiments and...
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Zusammenfassung: | An experimental and numerical smoothed particle hydrodynamics (SPH) analysis
was performed for the convective flow arising from a horizontal, thin
cylindrical heat source enclosed in a glycerin-filled, slender enclosure at low
Rayleigh numbers ($1.18\leq {\rm Ra}\leq 242$). Both the experiments and the
SPH calculations were performed for positive ($0.1\leq\Delta T\leq 10$ K) and
negative ($-10\leq\Delta T\leq -0.1$ K) temperature differences between the
source and the surrounding fluid. In all cases a pair of steady,
counter-rotating vortices is formed, accompanied by a plume of vertically
ascending flow just above the source for $\Delta T>0$ and a vertically
descending flow just below the source for $\Delta T |
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DOI: | 10.48550/arxiv.2012.06055 |