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EXPERIMENTAL STUDY OF THE INFLUENCE OF LIGHT INTENSITY ON SOLAR ORC POWER GENERATION SYSTEM

机译:光照强度对太阳能发电系统影响的实验研究

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A low temperature (<393K) solar Organic Rankine Cycle (ORC) power generation experimental facility was designed and built. The heat pipe evacuated tubular collector was selected as the solar collector. A scroll expander was used as the expander and the working fluid was R600a. The influence of light intensity variation on system performance has been studied. The results indicate that the system efficiency and thermoelectric efficiency of the experimental facility can reach to 2.2% and 4.4%, respectively. The thermoelectric efficiency and power decrease with the decrease of the heat transfer fluid temperature. There is a turn point in the variation of these performance parameters at high flow rate. The heat transfer fluid temperature at the turn point is about 75°C at the working fluid flow rate of 200L/h. The system efficiency decreases with the decrease of light intensity. There is a turn point light intensity /_(tpi). The system efficiency varies slowly when the light intensity is higher than /_(tpi). The experimental results are of great significance for the new design of low temperature solar ORC power generation system.
机译:设计并建造了一个低温(<393K)太阳能有机朗肯循环(ORC)发电实验装置。选择热管真空管式集热器作为太阳能集热器。使用涡旋式膨胀器作为膨胀器,并且工作流体为R600a。研究了光强度变化对系统性能的影响。结果表明,实验设备的系统效率和热电效率分别可以达到2.2%和4.4%。随着传热流体温度的降低,热电效率和功率降低。这些性能参数在高流速下的变化存在转折点。在工作流体流量为200L / h时,转折点处的传热流体温度约为75°C。系统效率随着光强度的降低而降低。有一个转折点光强度/ _(tpi)。当光强度高于/(tpi)时,系统效率变化缓慢。实验结果对低温太阳能ORC发电系统的新设计具有重要意义。

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