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- W1992645598 abstract "The performance potential of 11 multistage, multi-effect absorption cycles is evaluated. They include water-lithium bromide, ammonia-water and cascade configurations. All evaluations are based on air-conditioning applications assuming a 4°C evaporator temperature and a 35°C condenser and absorber temperature. The sensitivity of the performance to the approach temperature in the heat exchanger was studied. Eight cycles were selected for a more detailed simulation. The highest COP at zero approach temperature was obtained for a three-stage water-lithium bromide cycle cascaded with two single-stage ammonia water cycles, while for approach temperatures of 5 K the best COP was obtained for the three-stage water-lithium bromide cycle. On évalue la performance potentielle de 11 cycles d'absorption multi-étagés et à effets multiples. Font partie de ces cycles: eau-bromure de lithium, eau-ammoniac avec cycles en cascade. Toutes les évaluations sont relatives à des applications dans le conditionnement d'air, avec une température d'évaporation de 4°C et une température d'absorbeur et de condenseur de 35°C. On a étudié la sensibilité de la performance vis-à-vis de la température d'approche de l'échangeur de chaleur. On a choisi huit cycles pour une simulation plus détailée. Pour une température d'approche de zéro, le COP le plus élevé a été obtenu dans un cycle tri-étagé à eau-bromure de lithium, en cascade avec deux cycles mono-étagés à ammoniac-eau; pour une température d'approche de 5 K, c'est le cycle tri-étagé à eau-bromure de lithium qui a permis de dégager le meilleur COP." @default.
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- W1992645598 date "1996-09-01" @default.
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- W1992645598 title "Performance assessment of multistage absorption cycles" @default.
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- W1992645598 doi "https://doi.org/10.1016/0140-7007(95)00048-8" @default.
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