학술논문

Geometrical parameters analysis of improved circulating inclined fluidized beds for general HVAC duct systems.
Document Type
Article
Source
Applied Energy. Nov2018, Vol. 230, p784-793. 10p.
Subject
*GEOMETRIC modeling
*PARAMETERS (Statistics)
*FLUIDIZED-bed combustion
*HEATING & ventilation industry
*HUMIDITY control
Language
ISSN
0306-2619
Abstract
Highlights • We developed an improved circulating inclined fluidized bed (ICIFB) system. • We experimentally investigated the geometrical effects of the ICIFB system. • The optimal geometric parameters of the ICIFB system are obtained. • The optimal ICIFB system has the higher energy factor. • This ICIFB system has a wide range of adaptability to combine with HVAC systems. Abstract 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 cm3/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. [ABSTRACT FROM AUTHOR]