Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6481172 | Applied Thermal Engineering | 2016 | 12 Pages |
â¢Mathematical models at nominal and part load conditions are developed and verified.â¢Comprehensive effects of eight internal factors on the system performance are investigated.â¢Thermoeconomic optimization analyses of the absorption heat pump are performed.
The absorption heat pump technology plays an invaluable role in energy structure optimization and sustainable development. In this research, the steam operated double effect water-LiBr absorption heat pump is introduced and the performance is studied at nominal and part load conditions. Mathematical models are developed and verified by experiments, and the results indicate that the maximum deviation is about 13% at heating condition and 9% at cooling condition. An optimization analysis is presented with mathematical models to optimize the absorption heat pump. The optimal combination of multi-factorial internal parameters, which are the eight main heat transfer temperature differences, are obtained from the thermoeconomic optimization analysis. The results will be much helpful in the design and optimization of double effect water-LiBr absorption heat pumps.