3rd International Conference on Science & Engineering in Mathematics, Chemistry and Physics 2015 | |
Comparison of solar panel cooling system by using dc brushless fan and dc water | |
数学;化学;物理学 | |
Irwan, Y.M.^1 ; Leow, W.Z.^1 ; Irwanto, M.^1 ; Fareq, M.^1 ; Hassan, S.I.S.^1 ; Safwati, I.^2 ; Amelia, A.R.^1 | |
Centre of Excellence for Renewable Energy, School of Electrical System Engineering, University Malaysia Perlis, (UniMAP), Malaysia^1 | |
Institute of Engineering Mathematics, University Malaysia Perlis, (UniMAP), Malaysia^2 | |
关键词: Higher efficiency; Non-renewable energy; Output voltages; Payback periods; PIC microcontrollers; Renewable energies; Solar cooling systems; Solar photovoltaic power; | |
Others : https://iopscience.iop.org/article/10.1088/1742-6596/622/1/012001/pdf DOI : 10.1088/1742-6596/622/1/012001 |
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来源: IOP | |
【 摘 要 】
The purpose of this article is to discuss comparison of solar panel cooling system by using DC brushless fan and DC water pump. Solar photovoltaic (PV) power generation is an interesting technique to reduce non-renewable energy consumption and as a renewable energy. The temperature of PV modules increases when it absorbs solar radiation, causing a decrease in efficiency. A solar cooling system is design, construct and experimentally researched within this work. To make an effort to cool the PV module, Direct Current (DC) brushless fan and DC water pump with inlet/outlet manifold are designed for constant air movement and water flow circulation at the back side and front side of PV module representatively. Temperature sensors were installed on the PV module to detect temperature of PV. PIC microcontroller was used to control the DC brushless fan and water pump for switch ON or OFF depend on the temperature of PV module automatically. The performance with and without cooling system are shown in this experiment. The PV module with DC water pump cooling system increase 3.52%, 36.27%, 38.98%in term of output voltage, output current, output power respectively. It decrease 6.36 °C compare than to PV module without DC water pump cooling system. While DC brushless fan cooling system increase 3.47%, 29.55%, 32.23%in term of output voltage, output current, and output power respectively. It decrease 6.1 °C compare than to PV module without DC brushless fan cooling system. The efficiency of PV module with cooling system was increasing compared to PV module without cooling system; this is because the ambient temperature dropped significantly. The higher efficiency of PV cell, the payback period of the system can be shorted and the lifespan of PV module can also be longer.
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