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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Performance analysis of finned-tube CO2 gas cooler with advanced 1D-3D CFD modelling development and simulation
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Performance analysis of finned-tube CO2 gas cooler with advanced 1D-3D CFD modelling development and simulation

机译:具有先进的1D-3D CFD建模开发和仿真的翅片管CO2气体冷却器性能分析

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摘要

Due to natural refrigerant applied, CO2 transcritical refrigeration and heat pump systems have been widely applied and attracted more attentions. As a main component, CO2 gas cooler plays an important role in the system performance and thus requires further development for design and control optimizations with advanced technology. Correspondingly, a new coupled 1D and 3D Computational Fluid Dynamics (CFD) model on a finned-tube CO2 gas cooler has been proposed and developed. The CFD model has been validated by comparing with literatures for parameters including airside heat transfer coefficient, refrigerant side temperature profile as well as heating capacity. The model has been applied to predict the heat exchanger performance at different operating conditions of both air and refrigerant sides and maldistributions of air flow inlet. It is found from the simulation results that the refrigerant temperature decreases abruptly in the first coil row and the refrigerant temperature profile along the heat exchanger tubes is affected by thermal conduction between two adjacent tube rows through fins. In addition, the higher air flow inlet velocity can reduce greatly the coil approach temperature and thus improve the system efficiency. Similar effect can also be found from refrigerant pressure. Furthermore, the non-uniform air flow patterns can affect considerably the coil performance in terms of the refrigerant temperature profile, coil approach temperature, coil heating capacity and system energy efficiency. The developed CFD model can be an efficient tool for the performance evaluation and optimisation of the CO(2 )gas cooler and its associated system.
机译:由于施加天然制冷剂,CO2跨临界制冷和热泵系统已被广泛应用并吸引更多的注意。作为主要成分,CO2气体冷却器在系统性能中起着重要作用,因此需要进一步开发设计和控制优化的先进技术。相应地,已经提出并开发了在翅片管CO2气体冷却器上的新耦合的1D和3D计算流体动力学(CFD)模型。通过与包括空中传热系数,制冷剂侧温度曲线以及加热能力的参数的文献相比,通过比较了CFD模型。已经应用了该模型来预测空气和制冷剂侧的不同操作条件的热交换器性能以及空气流入口的恶性速率。从模拟结果发现,制冷剂温度在第一线圈排中突然降低,并且沿着热交换器管的制冷剂温度曲线受到通过翅片的两个相邻管排之间的热传导的影响。另外,较高的空气流入口速度可以大大减少线圈接近温度,从而提高系统效率。制冷剂压力也可以发现类似的效果。此外,在制冷剂温度曲线,线圈接近温度,线圈加热能力和系统能效方面,不均匀的空气流动图案可以显着影响线圈性能。开发的CFD模型可以是CO(2)气体冷却器及其相关系统的性能评估和优化的有效工具。

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