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Heat-exchanger design and switching-frequency effects on the performance of a continuous type solar adsorption chiller

机译:换热器设计和开关频率对连续式太阳能吸附式制冷机性能的影响

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摘要

A transient one-dimensional model, capable of describing the performance of a newly-introduced adsorption chiller with continuous operation, is developed. Since the cycle time and the switching frequency have a great influence on chiller performance, a non-dimensional switching frequency is introduced and a systematic parametric study is carried out in order to determine regions of optimal operation. An optimization based on the thermo-dynamic efficiency yields a lower switching frequency than an optimization based on the maximum cooling capacity. In addition, the effect of the heat-exchanger design parameters on system performance is explored. An increase of either the bed's Fourier number or the thermofluid's Nusselt number has a positive effect on both COP and cooling capacity. An improvement of system performance can also be achieved by decreasing either the thermofluid's Fourier number or the bed's Biot number. Finally, the effect of space velocity of the thermofluid exhibits the most interesting behavior; an increase of the space velocity has a positive effect on cooling capacity and a negative effect on COP.
机译:建立了一个瞬态一维模型,该模型能够描述新引入的连续运行吸附式制冷机的性能。由于循环时间和开关频率对冷却器性能有很大影响,因此引入了无量纲开关频率,并进行了系统的参数研究,以确定最佳运行区域。与基于最大制冷量的优化相比,基于热力学效率的优化产生的开关频率更低。此外,还探讨了热交换器设计参数对系统性能的影响。床的傅立叶数或热流体的Nusselt数的增加都会对COP和冷却能力产生积极影响。通过降低热流体的傅立叶数或床的比奥数,也可以实现系统性能的提高。最后,热流体的空速效应表现出最有趣的行为。空速的增加对制冷量有正面影响,而对COP则有负面影响。

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