Title of article :
Theoretical and experimental investigation
of an ammonia–water power
and refrigeration thermodynamic cycle
Author/Authors :
G. Tamm، نويسنده , , *، نويسنده , , D.Y. Goswami، نويسنده , , S. Lu a، نويسنده , , A.A. Hasan b، نويسنده ,
Abstract :
Acombined thermal power and cooling cycle proposed by Goswami is under intensive investigation, both theoretically
and experimentally. The proposed cycle combines the Rankine and absorption refrigeration cycles, using a
binary ammonia–water mixture as the working fluid. This cycle can be used as a bottoming cycle using waste heat from
a conventional power cycle or an independent cycle using low temperature sources such as geothermal and solar energy.
Initial parametric studies of the cycle showed the potential for the cycle to be optimized for first or second law efficiency,
as well as work or cooling output. For a solar heat source, optimization of the second law efficiency is most appropriate,
since the spent heat source fluid is recycled through the solar collectors. The optimization results verified that the cycle
could be optimized using the generalized reduced gradient method. Theoretical results were extended to include realistic
irreversibilities in the cycle, in preparation for the experimental study. An experimental system was constructed to
demonstrate the feasibility of the cycle and to compare the experimental results with the theoretical simulation. Results
showed that the vapor generation and absorption condensation processes work experimentally. The potential for
combined turbine work and refrigeration output was evidenced in operating the system. Analysis of losses showed
where improvements could be made, in preparation for further testing over a broader range of operating parameters.
2003 Elsevier Ltd. All rights reserved.
Journal title :
Astroparticle Physics