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首页> 外文期刊>Energy Conversion & Management >Experimental investigation of a small-scale Organic Rankine Cycle under off- design conditions: From the perspective of data fluctuation
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Experimental investigation of a small-scale Organic Rankine Cycle under off- design conditions: From the perspective of data fluctuation

机译:在非设计条件下小规模有机朗肯循环的实验研究:从数据波动的角度看

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摘要

The Organic Rankine Cycle (ORC) technology is applicable for conversion of low-grade waste heat to electric power. Off-design performance of ORC system is one of the research hotspot. In the present paper, a small-scale ORC experimental bench was constructed with a scroll expander whose nominal output power was 3 kW. Experimental data including thermodynamic parameters at inlet and outlet of the main components from 15 steady-state operation conditions were collected. Special attention has been paid to analyzing the amplitude of data fluctuation. Standard deviation has been introduced to quantify the fluctuation amplitude. The comparison between the accuracy of measuring sensors and the amplitude of data fluctuation was conducted. Moreover, critical parameters affecting the expander output power calculation were investigated. Results indicated that the largest amplitude of the measured pressure and temperature fluctuation were at the pump outlet and evaporator outlet respectively. Besides, the fluctuation amplitude of measured volume flow rate in gas phase was greater than the liquid phase due to strong turbulence of gas phase. Furthermore, the measured volume flow rate of working fluid had a vital effect on the calculated expander output power compared to the measured tempera. tures and pressures.
机译:有机朗肯循环(ORC)技术适用于将低级废热转换为电力。 ORC系统的非设计表现是其中一个研究热点。在本文中,采用滚动膨胀机构建了小规模的兽人实验台,其标称输出功率为3 kW。收集包括来自15个稳态操作条件的主要组件的入口和出口的热力学参数的实验数据。已经支付了特别注意分析数据波动的幅度。已经引入了标准偏差来量化波动幅度。进行测量传感器的准确性与数据波动幅度之间的比较。此外,研究了影响扩展器输出功率计算的关键参数。结果表明,测量的压力和温度波动的最大幅度分别位于泵出口和蒸发器出口处。此外,由于气相强的气相湍流,气相中测量体积流速的波动幅度大于液相。此外,与测量的温度相比,工作流体的测量体积流速对计算的膨胀器输出功率具有重要影响。压力和压力。

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