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A multi-scenario approach for a robust design of solar-based ORC systems

机译:一种多场景方法,用于太阳能基于太阳能兽人系统的设计方法

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摘要

The application of Organic Rankine cycle (ORC) units in concentrating solar power systems is a very promising solution. However, fluctuations in the available solar energy often force solar-based ORC systems to operate at off-design conditions. An innovative methodology for finding robust design solutions of such ORC systems, based on the minimization of the expected Levelized Cost of Energy (LCOE), is therefore proposed. The expected variations in the ORC heat source and heat sink are considered during the design stage by adopting a multi-scenario approach. The proposed methodology has been tested by referring to a medium-scale ORC unit and by considering different working fluids. As case studies, the direct coupling of the ORC unit with a solar field and the integration of a thermal energy storage system have been investigated. The comparison of the results obtained by using a multi-scenario and a single-scenario approach highlights a reduction of the actual LCOE. The ORC configuration obtained by adopting a multi-scenario approach is characterized by lower performance under design conditions, but it is less sensitive to variations in the main inputs during off-design operating periods. This fact is particularly noteworthy for the case with the direct coupling of the solar field. (C) 2020 Elsevier Ltd. All rights reserved.
机译:有机朗肯循环(ORC)单元在集中太阳能系统中的应用是非常有前途的解决方案。然而,可用太阳能的波动经常强制基于太阳能的兽人系统在非设计条件下运行。因此,基于最小化预期的能量(LCoE)的最小化的最小化,用于寻找这种兽人系统的鲁棒设计解决方案的创新方法。通过采用多场景方法,在设计阶段考虑ORC热源和散热器的预期变化。通过参考中型兽人单元和考虑不同的工作流体来测试所提出的方法。如案例研究,已经研究了兽人单元与太阳能的直接耦合和热能储存系统的集成。通过使用多场景和单个方案方法获得的结果的比较突出了实际LCoE的减少。通过采用多场景方法获得的ORC配置的特征在于设计条件下的性能较低,但对非设计期间的主输入的变化不太敏感。对于具有太阳能场的直接耦合的情况特别值得注意。 (c)2020 elestvier有限公司保留所有权利。

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