首页> 外文会议>IIR International Conference on Thermophysical Properties and Transfer Processes of Refrigerants >THERMODYNAMIC MODELLING OF HUMID-AIR EXPANSION WITHIN AN R717/R729 CASCADE REFRIGERATION SYSTEM FOR COLD STORE APPLICATIONS
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THERMODYNAMIC MODELLING OF HUMID-AIR EXPANSION WITHIN AN R717/R729 CASCADE REFRIGERATION SYSTEM FOR COLD STORE APPLICATIONS

机译:冷藏应用R717 / R729级联制冷系统中湿空气膨胀的热力学建模

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This work focuses on the thermodynamic behaviour of the humid air from a refrigerated space as the working fluid of a cascade refrigeration system with an inverse Brayton cycle as the bottom sub-cycle. The integration of this technology with a conventional NH3 compression cycle for a cold store application overcomes some of their respective drawbacks. The cold heat exchanger is replaced by an inlet port delivering the cold air from the turbine and the heat load due to the air fan is therefore eliminated. The effect of temperature and pressure drop within the turbine brings the fluid to the vapour content saturation and ice formation. In this study, the fluid's transformation is analyzed as a series of equilibrium states for a realistic estimation of the outlet air conditions. Finally, a first screening of the relevant design parameters for an overall system optimization is presented, showing that the efficiency gap of the Brayton cycle can be reduced in this cascade configuration.
机译:这项工作侧重于潮湿空气从冷藏空间作为级联制冷系统的工作流体的热力学行为,其具有逆布雷顿循环作为底部循环。这种技术与传统的NH3压缩循环的集成用于冷库应用程序克服了它们各自的一些缺点。冷热换热器由从涡轮机输送冷空气的入口替换,因此消除了由于空气风扇引起的热负荷。涡轮机内的温度和压降的影响使流体与蒸气含量饱和和冰形成。在这项研究中,分析了流体的转化作为一系列平衡状态,以实现出口空气条件的现实估计。最后,提出了对整体系统优化的相关设计参数的首次筛选,表明布莱顿循环的效率间隙可以在该级联配置中降低。

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