Energies | |
Numerical Analysis and Preliminary Experiment of a Solar Assisted Heat Pump Drying System for Chinese Wolfberry | |
Wenfeng Chu1  Cairui Yu1  Wei He1  Zhongting Hu1  Sheng Zhang1  Hancheng Yu2  | |
[1] Department of Building Environment and Equipment, Hefei University of Technology, Hefei 230009, China;Department of Scientific Research and Technology, Qinghai College of Architectural Technology, Xining 810002, China; | |
关键词: solar drying; heat pump; Chinese wolfberry; kinetic characteristic; electric energy; | |
DOI : 10.3390/en13174306 | |
来源: DOAJ |
【 摘 要 】
The present work investigated a solar assisted heat pump system for drying Chinese wolfberry. The kinetic characteristic was firstly analyzed through a series of lab experiments. It was concluded that the Page model was the most suitable for predicting the heat and mass transfer of the wolfberry. Based on the wolfberry kinetic model, solar collector model and chamber air model, the coupled drying system model was developed. The accuracy of the mathematic model was determined through comparing with the preliminary experimental results. The influence of operating conditions on the thermal and energy performance of the dryer for the different operating mode was discussed. The drying weight of no more than 75 kg may be preferable in the stand-alone solar drying mode, and less than 15 h was needed to be dried. The electric energy consumption in the solar assisted the heat pump drying mode was lower than that in the stand-alone heat pump mode, and it was recommended that about 50 kg of wolfberry to be dried in the solar assisted heat pump system. Compared to the autumn drying, the reduction in the electric energy consumption was around 9.1 kWh during the 11 h summer drying process. The obtained results demonstrated the feasibility of the combined system for drying wolfberry, and also can provide the basic theoretical and experimental data support for the following research.
【 授权许可】
Unknown