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The Experiment and Simulation of Solid Desiccant Dehumidification for Air-Conditioning System in a Tropical Humid Climate

机译:热带湿润气候条件下空调系统固体干燥剂除湿实验与仿真

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The aim of this research was to study and design a solid desiccant dehumidification system suitable for tropical climate to reduce the latent load of air-conditioning system and improve the thermal comfort. Different dehumidifiers such as desiccant column and desiccant wheel were investigated. The ANSYS and TRASYS software were used to predict the results of dehumidifiers and the desiccant cooling systems, respectively. The desiccant bed contained approximately 15 kg of silica-gel, with 3 mm average diameter. Results indicated that the pressure drop and the adsorption rate of desiccant column are usually higher than those of the desiccant wheel. The feasible and practical adsorption rate of desiccant wheel was 0.102 kgw/h at air flow rate 1.0 kg/min, regenerated air temperature of 55?C and at a wheel speed of 2.5 rpm. The humidity ratio of conditioning space and cooling load of split-type air conditioner was decreased to 0.002 kgw/kgda (14%) and 0.71 kWth (19.26%), respectively. Consequently, the thermal comfort was improved from 0.5 PMV (10.12% PPD) to 0.3 PMV (7.04% PPD).
机译:这项研究的目的是研究和设计一种适用于热带气候的固态干燥剂除湿系统,以减少空调系统的潜在负荷并提高热舒适性。研究了不同的除湿机,如干燥塔和干燥轮。 ANSYS和TRASYS软件分别用于预测除湿机和干燥剂冷却系统的结果。干燥剂床含有约15 kg硅胶,平均直径为3 mm。结果表明,干燥剂塔的压降和吸附率通常高于干燥剂轮。在空气流量为1.0 kg / min,再生空气温度为55°C,轮速为2.5 rpm的情况下,干燥剂轮的可行吸附速率为0.102 kgw / h。分体式空调的调节空间湿度比和制冷负荷分别降至0.002 kgw / kgda(14%)和0.71 kWth(19.26%)。因此,热舒适度从0.5 PMV(10.12%PPD)提高到0.3 PMV(7.04%PPD)。

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