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SYSTEMS, PROGRAM PRODUCT, AND METHODS FOR SYNTHESIZING HEAT EXCHANGER NETWORKS THAT ACCOUNT FOR FUTURE HIGHER LEVELS OF DISTURBANCES AND UNCERTAINTY, AND IDENTIFYING OPTIMAL TOPOLOGY FOR FUTURE RETROFIT
SYSTEMS, PROGRAM PRODUCT, AND METHODS FOR SYNTHESIZING HEAT EXCHANGER NETWORKS THAT ACCOUNT FOR FUTURE HIGHER LEVELS OF DISTURBANCES AND UNCERTAINTY, AND IDENTIFYING OPTIMAL TOPOLOGY FOR FUTURE RETROFIT
A system (30), methods, and user-friendly program product (51) to optimize energy recovery for a process or cluster of processes under all possible combinations of given process changes and stream -specific minimum temperature approach values without enumeration, are provided. The systems (30), methods, and program product (51) can include steps/operations to identify a set of common-structure heat exchanger network designs which allow for construction of a physically exchanger network easily retrof?ttable to accommodate time-dependent new operating modes, disturbances, and uncertainty schemes.
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