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Exact(8)
Until now, minimum utility targets have existed, but not capital cost targets.
A formulation is presented to synthesize a network of heat exchangers that can meet the minimum utility targets.
This work presents an approach that considers heat losses and heat gains during the establishment of the minimum utility targets.
Source and demand allocation curves and heat surplus diagram are superimposed on a plot of flowrate versus mass load/temperature to guide design towards the minimum utility targets.
This paper describes the methodology for setting the minimum number of mass exchange units target and a procedure for designing a maximum mass recovery network that features the minimum utility targets.
The first part of this series of papers (Chem. Eng. Sci. 59 5) (2004 10099) presented a methodology for identifying the minimum utility targets for a mass exchange network (MEN) for a batch process.
Similar(52)
An LP model is first solved to obtain minimum water usage and minimum heating utility target values.
Multiple cascades automated targeting is applied to determine minimum total operating cost of the trigeneration system, minimum hot and cold utility targets for heat integration prior to detailed design.
Prior to MEN design, the targeting procedure establishes the minimum utility (solvent) and mass storage targets for a maximum mass recovery network.
Initially, energy integration is used to identify minimum heating and cooling utility targets.
The proposed methodology targets the minimum utility requirement prior to the detailed design of both the water allocation network as well as the heat exchanger network.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com