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Online Measurement Of The Working Fluid Mass Repartition In A Small-Scale Organic Rankine Cycle Power System

机译:在在小型有机朗肯循环电力系统中的工作流体批量分子的在线测量

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This paper presents an experimental investigation of the working fluid charge repartition in a 2kWe ORC (organic Rankine cycle) test bench. To this end, an online measurement apparatus is built and fully calibrated to evaluate the charge enclosed in the three heat exchangers and the liquid receiver of the ORC unit. By changing all the system boundary conditions (including the charge enclosed in the test rig), an experimental database of 304 steady-state points is gathered and post-treated. The charge inventories obtained by online measurements demonstrate promising results on average but experience high uncertainties when considering each point individually (i.e. the uncertainty on the global inventory is around ± 2.5 kg for a total charge of 31.2 kg). Deviations of the evaporator mass measurements are identified at high temperature of the heat source and discussed in details. A reconciliation method is applied to the raw measurements in order to retrieve consistent charge inventories while accounting for the different sources of uncertainty. Ultimately, the paper analyses the impact of increasing the charge in the ORC and how this parameter influences the thermodynamic state of the system.
机译:本文介绍了2KWE兽人(有机朗肯循环)试验台中工作流体电荷迁移的实验研究。为此,建立并完全校准在线测量装置,以评估封装在磁体单元的三个热交换器和液体接收器中的电荷。通过改变所有系统边界条件(包括测试钻机中封闭的电荷),收集和后处理的304个稳态点的实验数据库。通过在线测量获得的电荷清单表明了平均的有希望的结果,但在单独考虑每个点时经历高的不确定性(即全球库存的不确定性约为31.2千克的总费用约为±2.5公斤)。蒸发器质量测量的偏差在热源的高温下鉴定并详细讨论。对协调方法应用于原始测量,以便检索一致的电荷清单,同时考虑不同的不确定性来源。最终,本文分析了增加兽人中电荷的影响以及该参数如何影响系统的热力学状态。

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