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首页> 外文期刊>E3S Web of Conferences >Experimental study of water cooling effect on heat transfer to increase output power of 180 watt peak photovoltaic module
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Experimental study of water cooling effect on heat transfer to increase output power of 180 watt peak photovoltaic module

机译:水冷对换热增加180瓦峰值光伏组件输出功率的实验研究

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摘要

Photovoltaic (PV) modules require solar radiation to generate electricity. This study aims to determine the effect of water cooling PV modules on heat transfer, output power, and electrical efficiency of PV modules. The experiments carried out in this study were to vary the heights of flooded water (with and without cooling water replacement control) and cooling water flow. Variations in the height of flooded water are 0,5 cm, 1 cm, 2 cm, and 4 cm. While the flow rate variations are 2 L/min, 4 L/min, and 8 L/min. The flooded water replacement control will be active when the PV surface temperature reached 45°C. When the temperature dropped to 35°C, the cooler is disabled to let more photon to reach PV surface. The results showed that the lowest heat transfer occurred in the variation of 4 cm flooded water height without water replacement control, i.e. 28.53 Watt, with an average PV surface temperature of 32.92°C. The highest average electric efficiency occurred in the variation of 0,5 cm flooded water height with water replacement control, i.e. 13.12%. The use of cooling water replacement control is better due to being able to skip more photons reach PV surface with low PV temperature.
机译:光伏(PV)模块需要太阳辐射才能发电。本研究旨在确定水冷式光伏组件对光伏组件的传热,输出功率和电效率的影响。在这项研究中进行的实验是改变注满水的高度(有无冷却水更换控制装置)和冷却水流量。洪水高度的变化为0.5厘米,1厘米,2厘米和4厘米。流速变化为2 L / min,4 L / min和8 L / min。当光伏表面温度达到45°C时,注水更换控件将激活。当温度降至35°C时,禁用冷却器,以使更多的光子到达PV表面。结果表明,在不进行补水控制的情况下,在4 cm的淹水高度变化中,最低的传热发生在28.53瓦特,平均PV表面温度为32.92°C。平均水效率最高的是在水置换控制下0.5 cm的淹水高度变化中,即13.12%。由于能够跳过更多的光子并以较低的PV温度到达PV表面,因此使用冷却水替换控制效果更好。

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