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首页> 外文期刊>Energy Conversion & Management >Numerical investigation of the thermal performance of compressor-assisted double-effect absorption refrigeration using [mmim]DMP/CH_3OH as working fluid
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Numerical investigation of the thermal performance of compressor-assisted double-effect absorption refrigeration using [mmim]DMP/CH_3OH as working fluid

机译:以[mmim] DMP / CH_3OH为工作流体的压缩机辅助双效吸收式制冷机热性能的数值研究

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The thermal performance of compressor-assisted double-effect absorption refrigeration (CDAR) was numerically investigated and comprehensively analyzed with 1, 3-dimethylimidazolylium dimethylphosphate/methanol ([mmim]DMP/CH3OH) as working fluid. The CDAR system was modeled and simulated based on the proposed mathematical model of the compression process by considering the mass and energy conservation of each component. The effects of compression ratio and heat source temperature on the system's operating state, including solution temperature, refrigeration concentration, mass flow, and heat load of each component, were calculated and discussed. Variations in the coefficient of performance and exergy efficiency in four cases were simulated and compared. Results suggested that placing the assisting compressor between the evaporator and absorber was a good option, and placing the assisting compressor between two generators was also acceptable. The exergy losses of each component were calculated and compared. The largest exergy loss occurred in the low-temperature generator and accounted for approximately one-third of the total exergy input. The main reason for the exergy loss in the diffusion absorption refrigeration system was heat transfer with a temperature difference.
机译:以1,3-二甲基咪唑基二甲基磷酸二甲酯/甲醇(mmDMP / CH3OH)为工作液,对压缩机辅助双效吸收式制冷(CDAR)的热性能进行了数值研究和综合分析。考虑到每个组件的质量和能量节省,在提出的压缩过程数学模型的基础上对CDAR系统进行建模和仿真。计算并讨论了压缩比和热源温度对系统运行状态的影响,包括溶液温度,制冷剂浓度,质量流量和每个组件的热负荷。模拟并比较了四种情况下的性能系数和火用效率的变化。结果表明,将辅助压缩机放置在蒸发器和吸收器之间是一个不错的选择,也可以将辅助压缩机放置在两个发电机之间。计算并比较了每种成分的火用损失。最大的火用损失发生在低温发生器中,约占总火用输入的三分之一。扩散吸收式制冷系统中的本能损失的主要原因是有温度差的传热。

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