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Modeling the effect of heat source temperature on the performance of two-stage air cooled silica gel + water adsorption system

机译:对热源温度的影响对两级空气冷却硅胶+水吸附系统性能的影响

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Adsorption systems can utilize low grade waste heat (temperature <100°C) or energy from renewable sources like solar for cogeneration i.e. cooling and desalination. The throughput and performance of such systems are sensitive to the available temperature difference between heat source and sink. This paper presents a modelling study of two-stage 2-bed air cooled silica gel + water adsorption system wherein the effect of heat source temperature variation in the range of 65-85°C on system performance parameters viz. SCC, SDWP and COP are investigated for the first time. It is shown that the optimum half cycle time for SCC and SDWP increases from 1800 s to 2700 s as the source temperature decreases from 85°C to 65°C; thereby necessitating the use of adaptive cycle time control for maximum throughput. However, it is observed that the COP is relatively insensitive to such alterations.
机译:吸附系统可以利用低级废热(温度<100℃)或来自可再生源的能量,如太阳能用于热电联产,即冷却和脱盐。这种系统的吞吐量和性能对热源和水槽之间的可用温差敏感。本文介绍了两级2床空气冷却硅胶+水吸附系统的建模研究,其中热源温度变化在65-85°C范围内的效果,系统性能参数viz。 SCC,SDWP和COP首次调查。结果表明,随着源温度从85°C减小到65°C,SCC和SDWP的最佳半周期时间从180秒增加到2700秒;因此,需要使用自适应循环时间控制以获得最大吞吐量。然而,观察到COP对这种改变相对不敏感。

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