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Geometrical parameters analysis of improved circulating inclined fluidized beds for general HVAC duct systems

机译:普通暖通空调系统改进循环斜流化床几何参数分析

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This study experimentally investigated the influence of geometrical parameters on improved circulating inclined fluidized beds (ICIFB) for HVAC duct systems. The geometrical parameters include the inclined angle, base height of the regeneration bed, and particle channel height of the adsorbent bed. An optimal ICIFB system was developed based on the experimental results. Compared to the circulating erect fluidized bed system (CEFB) and the circulating inclined fluidized bed system (CIFB), the optimal ICIFB system could increase adsorption/desorption performance by 32.4% and 23.5%, respectively, under the same operating conditions. The optimal ICIFB system had the highest energy factor with up to 0.67 kg/kW h, which was 77.9% and 40.1% higher than the CEFB system and the CIFB system, respectively. The total adsorption was also measured for the optimal ICIFB system working nine hours per day (air volume = 850 cm(3)/h) under different monthly outside air conditions in Taiwan. The results showed that year-round total adsorption of 729.5 kg, which was 14.1% more than the CIFB system. The ICIFB system can combine with HVAC duct systems set up above the ceiling. Compared to conventional dehumidification systems, it saves space, has better dehumidification performance, and has a lower pressure drop, thus, it is suitable for residential air-conditioning systems.
机译:这项研究实验研究了几何参数对HVAC管道系统改进的循环倾斜流化床(ICIFB)的影响。几何参数包括倾斜角,再生床的基础高度和吸附剂床的颗粒通道高度。根据实验结果,开发了一种最佳的ICIFB系统。与循环直立流化床系统(CEFB)和循环斜流化床系统(CIFB)相比,最佳的ICIFB系统在相同操作条件下的吸附/解吸性能分别提高了32.4%和23.5%。最佳的ICIFB系统具有最高的能量因数,最高可达0.67 kg / kW h,分别比CEFB系统和CIFB系统高77.9%和40.1%。还测量了在台湾每月不同的外部空气条件下,每天工作9个小时(风量= 850 cm(3)/ h)的最佳ICIFB系统的总吸附量。结果表明,全年总吸附量为729.5 kg,比CIFB系统高14.1%。 ICIFB系统可以与天花板上方设置的HVAC管道系统结合使用。与传统的除湿系统相比,它节省了空间,具有更好的除湿性能,并且具有较低的压降,因此,它适用于住宅空调系统。

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