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首页> 外文期刊>Journal of building performance simulation >Performance of combined displacement ventilation and cooled ceiling liquid desiccant membrane system in Beirut climate
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Performance of combined displacement ventilation and cooled ceiling liquid desiccant membrane system in Beirut climate

机译:贝鲁特气候中置换通风和冷却顶棚液体干燥膜系统的性能

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摘要

The performance of the chilled ceiling (CC) displacement ventilation (DV) systems is constrained by latent load removal capacity and cost of supply air dehumidification to prevent condensation on the ceiling. In this study, a liquid desiccant dehumidification membrane cycle (LDMC) is mathematically modelled to replace the CC and remove directly latent and sensible load from indoor space through the membrane. The desiccant system is coupled with the DV system. An optimized operational strategy is adopted while allowing ceiling temperature to drop to lower values than conventional CC/DV. The optimized LDMC-C/DV system was implemented in an office space in Beirut climate. It was found that decreasing the membrane liquid desiccant temperature resulted in a significant decrease in the total cooling energy of the system, while increasing the solar heating energy of the desiccant regeneration. At optimal set points, a decrease of 49% in energy consumption was observed compared to the conventional CC/DV system.
机译:冷藏天花板(CC)置换通风(DV)系统的性能受到潜在负荷去除能力和除湿空气成本(以防止在天花板上凝结)的限制。在这项研究中,对液体干燥剂除湿膜循环(LDMC)进行了数学建模,以替代CC并通过膜直接去除室内空间的潜在和显着负荷。干燥系统与DV系统耦合。在使天花板温度下降到低于常规CC / DV的同时,采用了优化的操作策略。经过优化的LDMC-C / DV系统在贝鲁特气候下的办公室中实施。发现降低膜液体干燥剂温度导致系统的总冷却能量显着降低,同时增加了干燥剂再生的太阳能加热能量。与传统的CC / DV系统相比,在最佳设定点上,能耗降低了49%。

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