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Case study of an Organic Rankine Cycle (ORC) for waste heat Recovery from an Electric Arc Furnace (EAF)

机译:有机朗肯循环(ORC)从电弧炉(EaF)回收余热的案例研究

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摘要

The organic Rankine cycle (ORC) is a mature technology for the conversion of waste heat to electricity. Although many energy intensive industries could benefit significantly from the integration of ORC technology, its current adoption rate is limited. One important reason for this arises from the difficulty of prospective investors and end-users to recognize and, ultimately, realise the potential energy savings from such deployment. In recent years, electric arc furnaces (EAF) have been identified as particularly interesting candidates for the implementation of waste heat recovery projects. Therefore, in this work, the integration of an ORC system into a 100 MWe EAF is investigated. The effect of evaluations based on averaged heat profiles, a steam buffer and optimized ORC architectures is investigated. The results show that it is crucial to take into account the heat profile variations for the typical batch process of an EAF. An optimized subcritical ORC system is found capable of generating a net electrical output of 752 kWe with a steam buffer working at 25 bar. If combined heating is considered, the ORC system can be optimized to generate 521 kWe of electricity, while also delivering 4.52 MW of heat. Finally, an increased power output (by 26% with combined heating, and by 39% without combined heating) can be achieved by using high temperature thermal oil for buffering instead of a steam loop; however, the use of thermal oil in these applications has been until now typically discouraged due to flammability concerns.
机译:有机朗肯循环(ORC)是将废热转化为电能的成熟技术。尽管许多能源密集型行业可以从ORC技术的集成中受益匪浅,但ORC技术的当前采用率有限。一个重要的原因是潜在投资者和最终用户难以识别并最终实现这种部署所节省的能源。近年来,电弧炉(EAF)被确定为实施余热回收项目特别有趣的候选者。因此,在这项工作中,研究了将ORC系统集成到100 MWe EAF中的方法。研究了基于平均热量分布,蒸汽缓冲区和优化的ORC架构进行评估的效果。结果表明,对于电炉的典型批处理过程,考虑热量分布变化至关重要。发现一种经过优化的亚临界ORC系统,能够通过工作在25 bar的蒸汽缓冲器产生752 kWe的净电输出。如果考虑组合加热,则可以优化ORC系统以产生521 kWe的电能,同时还提供4.52 MW的热量。最后,通过使用高温导热油(而不是蒸汽回路)进行缓冲,可以实现增加的功率输出(组合加热时提高26%,不组合加热时提高39%);然而,由于可燃性的考虑,迄今为止在这些应用中通常不鼓励使用导热油。

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