Experimental and numerical investigation of thermal radiator performances as a source of heat energy in design of dryer simulation

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Abstract

The purposes of this research was to investigate the temperature performance of tube and fins car radiator experimentally and numerically. The experiment research was carried out on a simulation design consists of a reservoir water tank, a heater, pump to circulate hot water to the radiator and a cooling fan. The hot water mass flow rate is 0.486 kg/s, and the cooling air velocity of the fan is 1 m/s. The heat transfer rate and the effectiveness of radiator were investigated. The results showed that the exhaust heat transfer rate from the radiator tended to increase over time, with an average heat transfer rate of 3974.3 Watt. The maximum heat transfer rate was 4680 Watt obtained at 6 minutes. The effectiveness of the radiator (ϵ) over time tends to increase with an average of ϵ = 0.3 and the maximum effectiveness value was obtained at 12 minutes i.e. 0.35. The numerical research conducted using CFD method. The geometry and meshing created using ANSYS Workbench and the post processing using Fluent. The simulation result showed the similarity with the experimental research. The temperatures of air-side radiator are about 45°C.

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APA

Wiryanta, I. K. E. H., & Adiaksa, I. M. A. (2018). Experimental and numerical investigation of thermal radiator performances as a source of heat energy in design of dryer simulation. In Journal of Physics: Conference Series (Vol. 953). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/953/1/012060

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