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Therefore, benefits from waste heat utilization increase when interactions between the existing site utility system and the waste heat recovery technologies are explored simultaneously.
A total stack waste heat utilization of 86.4% was achieved.
The reactor shows good heat utilization with a thermal efficiency of 75.9%.
The unit cost of heat is defined, based on the mode of heat utilization.
Steam flooding operations exhibits better performance than SAGD in terms of heat utilization.
Improved energy efficiency and significant savings are achievable by increasing waste heat utilization.
A system of low temperature waste heat utilization based on organic fluids is proposed, which is composed of flue gas waste heat utilization heat exchanger, thermal storage subsystem and organic Rankine cycle (ORC) subsystem.
Moreover, the apparent heat loss reduction, which defines the heat utilization efficiency, exhibited an increase following nitrogen injection.
Due to the small hydrogen flow rates, the waste heat utilization was only 3 6% from the generated stack heat.
The applications of Organic Rankine Cycle (ORC) appear to be growing in the field of waste heat utilization.
Aluminum water reactions at medium high temperature perform well in hydrogen generation as well as heat utilization.
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