Effect of water cooling on photovoltaic performance / [electronic resource].

By: Contributor(s): Language: English Summary language: Arabic Description: p.257-268Other title:
  • تأثير التبريد بالمياه على اداء الخلايا الكهروضوئية [Added title page title]
Uniform titles:
  • Misr journal of agricultural engineering, 2016 v.33 (1) [electronic resource].
Subject(s): Online resources: In: Misr Journal of Agricultural Engineering 2016.v.33(1)Summary: The efficiency of photovoltaic (PV) panels decreases as the panels' temperature increases. It is affected by various environmental parameters like temperature, dust. air velocity, and humidity. Main(v temperature is the critical factor to obtain maximum efficiency. One way of improving the efficiency ofPV system is to maintain a low operating temperature by cooling it down during its operation period. This paper experimentally presents a forced-water spraying and cooling technique with variable flow rate ofwater on PV modules surface to improve the panels efficiency and enhance the net power saving. The results showed an initial high performance ratio and indicated that, the decreasing rate in the panel surface temperature has a direct proportional relation with PV efficiency. It was observed that, operating the cooling system for one day results a decrease in solar cells temperature by 9.07 °C. and an increase in the solar cell output power by 1.73 Volt give an increasing in power gain and efficiency by 9.27%, 0.71 % respectively
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Includes references.

The efficiency of photovoltaic (PV) panels decreases as the panels' temperature increases. It is affected by various environmental parameters like temperature, dust. air velocity, and humidity. Main(v temperature is the critical factor to obtain maximum efficiency. One way of improving the efficiency ofPV system is to maintain a low operating temperature by cooling it down during its operation period. This paper experimentally presents a forced-water spraying and cooling technique with variable flow rate ofwater on PV modules surface to improve the panels efficiency and enhance the net power saving. The results showed an initial high performance ratio and indicated that, the decreasing rate in the panel surface temperature has a direct proportional relation with PV efficiency. It was observed that, operating the cooling system for one day results a decrease in solar cells temperature by 9.07 °C. and an increase in the solar cell output power by 1.73 Volt give an increasing in power gain and efficiency by 9.27%, 0.71 % respectively

Summary in Arabic.

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