Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
4992797 | International Communications in Heat and Mass Transfer | 2017 | 8 Pages |
Abstract
The aim of this paper is to propose the PV roof solar collector (PV-RSC) to investigate the natural convection heat transfer and estimated the convective heat transfer coefficient in the channel. The experimental set-up was composed of a PV panel on the upper layer and the lower layer is aluminum plate of the channel. The inclination angle and air gap of channel were fixed at 30° and 15 cm, respectively. The channel width is 0.7 m, and length is 1.2 m. The data analysis were confirmed the effect of radiative exchange influent to natural convection within the channel. On the basis of the experimental results, an empirical formula is found; the Nu as a function of Ras sin30, that is Nus = 0.3282 (Ras sin30)0.2249. The correlation obtained to range 3 Ã 108 < Ras sin30 < 7 Ã 108. A comparison between PV-RSC and normal PV panel, it was confirmed that the PV-RSC could be generated electric power than that normal PV panel by about 30 W; and also the percentage of power generation increase was rising about 25% throughout the day.
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Fluid Flow and Transfer Processes
Authors
Sahachai Phiraphat, Ratthasak Prommas, Withaya Puangsombut,