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Simulation and energy efficiency analysis of desiccant wheel systems for drying processes

机译:干燥过程干燥剂轮系统的仿真和能效分析

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In drying processes it is necessary to appropriately control air humidity and temperature in order to enhance water evaporation from product surface. The aim of this work is to investigate several HVAC configurations for product drying based on desiccant wheels, in order to find systems which reach high primary energy savings through the appropriate integration of refrigerating machines, adsorption wheels and cogenerative engines. Simulations are carried out for different values of sensible to latent ambient load ratio and the effect of ambient and outside air conditions is evaluated for each configuration. It is shown that primary energy savings can reach 70-80% compared to the reference technology based on a cooling coil. With respect to works available in literature, the results of this study keep a general approach and they can be used as a simple tool for preliminary assessment in a wide range of applications.
机译:在干燥过程中,必须适当控制空气湿度和温度,以增强水分从产品表面的蒸发。这项工作的目的是研究基于干燥剂轮的用于产品干燥的几种HVAC配置,以便找到通过适当集成制冷机,吸附轮和蓄热式发动机而节省大量一次能源的系统。针对不同的感性到潜在环境负载比值进行了仿真,并针对每种配置评估了环境和外部空气条件的影响。结果表明,与基于冷却盘管的参考技术相比,一次能源节省可以达到70-80%。对于文献中可获得的作品,本研究的结果保持了一种通用的方法,它们可以用作在广泛应用中进行初步评估的简单工具。

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