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ABSORBER AND REGENERATOR MODELS FOR LIQUID DESICCANT AIR CONDITIONING SYSTEMS: VALIDATION AND COMPARISON USING EXPERIMENTAL DATA

机译:液态干燥剂空调系统的吸收和再生模型:使用实验数据进行的验证和比较

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Solar assisted air conditioning systems using liquid desiccants represent a promising option to decrease high summer energy demand caused by electrically driven vapor compression machines. The main components of liquid desiccant systems are absorbers for dehumidifying and cooling of supply air and regenerators for concentrating the desiccant. However, high efficient and validated reliable components are required and the design and operation have to be adjusted to each respective building design, location, and user demand. Simulation tools can help to optimize component and system design. The present paper presents new developed numerical models for absorbers and regenerators, as well as experimental data of a regenerator prototype. The models have been compared with a finite-difference method model as well as experimental data. The data are gained from the regenerator prototype presented and an absorber presented in the literature.
机译:使用液体干燥剂的太阳能辅助空调系统代表了减少由电动蒸气压缩机引起的夏季高能源需求的有前途的选择。液体干燥剂系统的主要成分是用于对供气进行除湿和冷却的吸收器,以及用于浓缩干燥剂的再生器。但是,需要高效且经过验证的可靠组件,并且必须根据各个建筑物的设计,位置和用户需求来调整设计和操作。仿真工具可以帮助优化组件和系统设计。本文介绍了吸收器和蓄热室的新开发的数值模型,以及蓄热室原型的实验数据。该模型已与有限差分方法模型以及实验数据进行了比较。这些数据是从文献中介绍的再生器原型和吸收器中获得的。

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