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Two-Stage Air-Dehumidification System for the Tropics - Assessment of Conceptual System Configurations

机译:热带地区两级空气除湿系统 - 概念系统配置评估

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Under tropical climate conditions, conventional air-conditioning systems consume a considerable amount of electricity in order to get rid of the high latent load (humidity) of the ambient air. This is due to the applied simultaneous dehumidification and cooling processes. Therefore, an idea of a separate handling of the latent and the sensible loads is investigated by applying series connected heat powered dehumidification and electricity powered cooling systems. A two-stage dehumidification system including a membrane-based heat and mass exchanger and an Evaporatively COoled Sorptive dehumidification system (ECOS system) is proposed to dehumidify the ambient air; the sensible load (cooling of dehumidified air) is handled by an efficient conventional cooling process operating at relatively high evaporation temperatures (14-20°C). The aim of this study is to evaluate different conceptual system configurations and to find optimized systems for tropical climate conditions (air humidity and temperature are in the order of 20 g/kg_(air) and 32°C, respectively) by means of simulation calculations. The dehumidification capacity, the total specific removed enthalpy and the thermal coefficient of performance (COP) of the system are used as criteria for an assessment of the proposed concepts. The dehumidification system is mathematically modelled in MATLAB and linked with TRNSYS-17.1. Experimental data are used to validate the components models. Design and performance data of simulated air-dehumidification systems that are based on the concepts are presented. Results of the performance assessment show that using additional ambient air flow for the evaporative cooling process in the ECOS system can improve the dehumidification performance of the system and can reduce the cooling load of the cooling system significantly.
机译:在热带气候条件下,传统的空调系统消耗相当大的电力,以摆脱环境空气的高潜荷载(湿度)。这是由于应用的同时除湿和冷却过程。因此,通过施加串联连接的热量除湿系统来研究对潜伏和显着的载荷的单独处理的思路。提出了一种两阶段除湿系统,包括膜基热量和质量交换器和蒸发的吸附除湿系统(ECOS系统),以除湿环境空气;可明智的载荷(除湿空气的冷却)通过在相对高的蒸发温度(14-20℃)下操作的有效常规冷却过程来处理。本研究的目的是评估不同的概念的系统配置,并找到热带气候条件优化系统(空气湿度和温度是在20的数量级克/ kg_(空气)和32℃下,分别地)通过模拟计算的手段。除湿能力,总特定的去除焓和系统的性能(COP)的热量系数用作评估拟议概念的标准。除湿系统在MATLAB中数学建模,与TRNSYS-17.1相关联。实验数据用于验证组件模型。提出了基于概念的模拟空气除湿系统的设计和性能数据。性能评估结果表明,使用额外的环境空气流动在ECOS系统中用于蒸发冷却过程可以提高系统的除湿性能,并可以显着降低冷却系统的冷却负荷。

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