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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Impacts of thermos-physical properties on plate-fin multi-stream heat exchanger design in cryogenic process for CO2 capture
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Impacts of thermos-physical properties on plate-fin multi-stream heat exchanger design in cryogenic process for CO2 capture

机译:热水物理性质对CO2捕获冷冻过程中板鳍多流式热交换器设计的影响

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摘要

Oxy-fuel combustion is one of the most promising technologies for CO2 capture for power plants. In oxy-fuel combustion plants, cryogenic process can be applied for CO2 purification because the main impurities in flue gas are non-condensable gases. The multi-stream plate-fin heat exchanger is one of the most important components in the CO2 cryogenic system. In-depth understanding of the impacts of property on the heat exchanger is of importance for appropriate design. In order to investigate the impacts of properties on sizing the heat exchanger and to further identify the key properties to be prioritized for the property model development, this paper presented the design procedure for the plate-fin multi-stream heat exchanger for the CO2 cryogenic process. Sensitivity study was conducted to analyze the impacts of thermos-physical properties including density, viscosity, heat capacity and thermal conductivity. The results show that thermal conductivity has the most significant impact and hence, developing a more accurate thermal conductivity model is more important for the heat exchanger design. In addition, even though viscosity has less significant impact compared to other properties, the larger deviation range of current viscosity models may lead to higher uncertainties in volume design and annual capital cost of heat exchanger.
机译:氧气燃料燃烧是发电厂CO2捕获最有前途的技术之一。在氧气燃料燃烧厂中,低温过程可用于CO 2纯化,因为烟道气中的主要杂质是不可凝聚的气体。多流板翅片热交换器是CO2低温系统中最重要的组件之一。深入了解物业对热交换器对热交换器的影响对于适当的设计具有重要性。为了研究性能对搅拌热交换器的影响,并进一步确定优先考虑物业模型开发的关键特性,本文提出了用于CO2低温工艺的板式多流式热交换器的设计步骤。进行了敏感性研究,分析了热能物理性质的影响,包括密度,粘度,热容量和导热率。结果表明,导热率具有最大的影响,因此,开发更精确的导热率模型对于热交换器设计更为重要。此外,尽管与其他性能相比,粘度具有较差的影响较小,但电流粘度模型的较大偏差范围可能导致换热器的体积设计和年限资本成本的更高的不确定性。

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