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首页> 外文期刊>Energy Conversion & Management >Analysis For Composite Zeolite/foam Aluminum-water Mass Recovery Adsorption Refrigeration System Driven By Engine Exhaust Heat
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Analysis For Composite Zeolite/foam Aluminum-water Mass Recovery Adsorption Refrigeration System Driven By Engine Exhaust Heat

机译:发动机尾气驱动的沸石/泡沫铝-水复合质量吸收吸附制冷系统分析

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摘要

A new composite zeolite/foam aluminum is proposed to enhance heat and mass transfer for adsorption refrigeration. The effective thermal conductivity of this composite material is 2.89 W/m K measured by the hot disk method with the same performance of adsorption of a zeolite packed bed. On the basis of the linear driving force non-equilibrium adsorption model, the performance of the composite zeolite/ foam aluminum-water mass recovery adsorption refrigeration device driven by engine exhaust gases is calculated. The results show that mass recovery could reduce the cycle time and improve the value of SCP compared with the basic cycle, especially at short cycle time. Comparing with the zeolite-water system, the composite zeolite/foam aluminum-water system has much higher COP, SCP and SWP at short cycle time because of the enhancement of the heat transfer.
机译:提出了一种新型的沸石/泡沫铝复合材料,以增强热量和传质,从而实现吸附制冷。通过热盘法测得的该复合材料的有效导热率为2.89 W / m K,具有与沸石填充床相同的吸附性能。基于线性驱动力非平衡吸附模型,计算了由发动机废气驱动的沸石/泡沫铝-水复合回收吸附制冷装置的性能。结果表明,与基本循环相比,质量恢复可以缩短循环时间并提高SCP值,尤其是在短循环时间。与沸石-水系统相比,复合沸石/泡沫铝-水系统在短循环时间内具有更高的COP,SCP和SWP,这是由于传热的增强。

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