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Large quantities of waste heat generated during industrial production offer an opportunity for waste heat recovery (WHR). Several case studies are selected using flue gas as heat source, which are representative of a fairly wide range of source temperature (200–700°C). The objective function of WHR refers to maximization of net power output. With a view to seeking an optimal combination of cycle configuration,...
A combined cycle composed of an air based open Brayton cycle (BC) and an organic trans-critical cycle (OTC) is presented for power recovery from flue gas of initial temperature around 600°C. BC is employed as the top cycle to span the temperature gap between the heat source and the OTC bottom cycle, and offers a desirable temperature matching between the heat source's heat rejection process and the...
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