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Dimensionless correlations of frost properties on a cold cylinder surface
Authors:Jung-Soo Kim  Dong-Keun Yang  Kwan-Soo Lee
Affiliation:1. Heat and Mass Transfer Technological Center, Universitat Politècnica de Catalunya, Carrer de Colom 11, 08222 Terrassa, Barcelona, Spain;2. Termo Fluids, S.L., Av. Jacquard 97 1-E, 08222 Terrassa, Barcelona, Spain;3. Instituto de Ingeniería Mecánica y de Producción Industrial (IIMPI), Universidad de la República (UdelaR), 11300 Montevideo, Uruguay;1. Faculty of Mechanical Engineering, University of Campinas (UNICAMP), CP 6066, CEP 13081-970 Campinas, SP, Brazil;2. Centro Nacional de Investigación y Desarrollo Tecnológico, CENIDET-TNM-SEP Prol, Av. Palmira S/N. Col. Palmira, Cuernavaca, Morelos CP 62490, Mexico
Abstract:We propose dimensionless correlations for frost properties on a cold cylinder surface. Frosting experiments were performed while changing various frosting parameters such as the air temperature, cold cylinder surface temperature, air velocity, and absolute humidity. The experimental data showed that a uniform frost layer grew around the circumference of the cylinder at a high air velocity. Dimensionless correlations for the thickness, density, and surface temperature of the frost layer, and for the heat transfer coefficient were obtained as functions of the Reynolds number, Fourier number, absolute humidity, and dimensionless temperature. The applicable ranges of these correlations are Reynolds number of 700–3000 (air velocities of 0.5–2.0 m/s), Fourier number of 56.8–295.7 (operating time of 0–100 min), absolute humidity of 0.00280–0.00568 kg/kga, air temperatures of 3–9 °C, and cold cylinder surface temperatures of ?32 to ?20 °C. The proposed correlations agreed with the experimental data within an error of 15%.
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