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The feasibility study on supercritical methane Recuperated Brayton Cycle for waste heat recovery

机译:超临界甲烷换热布雷顿循环余热回收的可行性研究

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摘要

Recuperated Brayton Cycle (RBC) has attracted the attention of research scientists not only as a possible replacement for the steam cycle at nuclear power plants but also as an efficient bottoming cycle for waste heat recovery and for concentrated solar power. RBC’s compactness and the ease at which it can be integrated into existent power plants for waste heat recovery require few modifications. Methane, carbon dioxide and trifluoromethane are analyzed as possible working fluids. This work shows that it is possible to achieve higher efficiencies using methane under some operating conditions. However, as it turns out, the performance of Recuperated Brayton Cycle should be evaluated based on net output work. When the performance is assessed on the net output work criteria carbon dioxide still proves to be superior to other gases. This work also suggests that piston engines as compressors and expanders may be used instead of rotating turbines since reciprocating pistons have higher isentropic efficiencies.
机译:换热布雷顿循环(RBC)不仅吸引了研究科学家的注意力,不仅可以替代核电站的蒸汽循环,还可以作为废热回收和集中太阳能发电的有效底部循环。 RBC的紧凑性以及将其集成到现有发电厂中以回收废热的便捷性,几乎不需要修改。甲烷,二氧化碳和三氟甲烷被分析为可能的工作流体。这项工作表明在某些操作条件下使用甲烷可以实现更高的效率。然而,事实证明,应该基于净输出功来评估休克式布雷顿循环的性能。当根据净输出工作标准评估性能时,二氧化碳仍被证明优于其他气体。这项工作还表明,由于往复式活塞具有更高的等熵效率,因此可以使用活塞发动机作为压缩机和膨胀机来代替旋转涡轮机。

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    Dyuisenakhmetov Aibolat;

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  • 年度 2017
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  • 正文语种 en
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