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- W2950009916 abstract "Abstract In this study, a solar based organic Rankine cycle and an absorption cooling system is proposed for Jodhpur, Rajasthan, India. Energy and exergy analyses are done to evaluate system performance during February, May, August and November. In the organic Rankine cycle, five different working fluids (Isopentane, R245ca, Neopentane, R245fa and Butane) are considered for comparison. The maximum net power (1.74 MW) was obtained with R245fa during February with a simultaneous cooling of 4.82 MW produced from the water-lithium chloride based absorption cooling system. The power output, although was the minimum (1.62 MW), but maximum cooling (6.00 MW) was obtained from the cooling system with Neopentane as ORC working fluid. The overall system energy output (power and cooling together) and efficiency were however more with Neopentane than with R245fa. For all the ORC working fluids, maximum power and cooling was obtained during February while the lowest during August. In an additional case considering all the year months, it was found that actually it is July in which the power and cooling output are minimum. In the cooling system, with fixed evaporator (5 °C) and equal condenser and absorber temperatures (31 °C), slightly more cooling was obtained with relatively high COP, low irreversibility and high exergy efficiency at 63 °C generator temperature compared to those at 66 °C. From exergy analysis, it was found that maximum irreversibility occurs in the parabolic trough solar collector, followed by total irreversibility of the organic Rankine cycle and the absorption cooling system." @default.
- W2950009916 created "2019-06-27" @default.
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- W2950009916 date "2019-10-01" @default.
- W2950009916 modified "2023-10-04" @default.
- W2950009916 title "Performance analysis of a solar heat driven organic Rankine cycle and absorption cooling system" @default.
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- W2950009916 doi "https://doi.org/10.1016/j.tsep.2019.100372" @default.
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