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Experimental study of flat plate solar collector performance with twisted heat pipe

机译:用捻线热管平板太阳能收集器性能的实验研究

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In this work, a system of heat pipe is implemented to improve the performance of flat plate solar collector. The experiment rig consists of sun light simulator, flat plate, heat pipe (wickless), heat exchanger, and measurement instruments. The model is represented by twisting portion of the evaporator section and also inclined by an angle of 30° with a constant total length of 1140 mm. In this model the evaporator, adiabatic and condenser lengths are 780mm, 140mm and 230mm respectively. The omitted energies from sun light simulator are 200, 400, 600, 800 and 1000 W/m~2 which is close to the normal solar energy in Iraq. The working fluid for all models is water with fill charge ratio of 30% and the efficiency of the solar collector is investigated with three values of condenser inlet water temperatures, namely (12, 16 and 20°C). The experimental result showed an optimum volume flow rate of cooling water in condenser at which the efficiency of collector is a maximum. This optimum agree well with the ASHRA standard volume of flow rate for conventional tasting for flat plate solar collector. When the radiation incident increases the thermal resistance of thermosyphon is decreases, where the heat transfer from the evaporator to condenser increases. The experimental results showed the performance of solar collector with twisted evaporator greater than other types of evaporator as a ratio 13.5 %.
机译:在这项工作中,实施了一种热管系统以改善平板太阳能收集器的性能。实验钻机由Sun Light Simulator,平板,热管(无芯),换热器和测量仪器组成。该模型由蒸发器部分的扭转部分表示,并且也倾斜30°的角度,恒定的总长度为1140mm。在该模型中,蒸发器,绝热和冷凝器长度分别为780mm,140mm和230mm。 Sun Light Simulator的省略能量为200,400,600,800和1000W / m〜2,其近于伊拉克的普通太阳能。所有型号的工作流体是填充电荷比为30%的水,并研究了太阳能收集器的效率,用三个冷凝器入口水温,即(12,16和20°C)。实验结果显示了冷凝器中的冷却水的最佳体积流速,其中收集器的效率最大。这种最佳与ASHRA标准体积的流速相吻合,用于平板太阳能收集器的传统品尝。当辐射入射发生增加时,热循环的热阻减少,其中从蒸发器到冷凝器的热传递增加。实验结果表明,太阳能收集器的性能大于其他类型的蒸发器的扭曲蒸发器,其比例为13.5%。

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