R. J. Goldstein, H. D. Chiang
An electrochemical technique is used to study local mass transfer coefficients on surfaces of inclined enclosures over the range 1.1 ·10 4 < RaH < 1.4·1010 for a nominal Schmidt number of 2280. Scaling with gcosh instead of g in the Rayleigh number correlates the data well at low angles of inclination; however, as either the aspect ratio or the angle of inclination increase, the longitudinal density stratification causes the data to deviate from a power law scaling.
@article{906f8846-d91f-49a8-a973-0c63bf2f7691,
title={Local mass transfer measurements in an i},
author={R. J. Goldstein and H. D. Chiang},
year={2026},
language={en}
}TY - JOUR TI - Local mass transfer measurements in an i AU - R. J. Goldstein AU - H. D. Chiang PY - 2026 LA - en ER -
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