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Chemical Processes and Use of CO2

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Chemical Processes and Use of CO2 ( chemical-processes-and-use-co2 )

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3 ENERGY-EFFICIENT PROCESSES INNOVA2 • • • • Examine the heat transfer behaviour of different heat transfer media under a range of operating conditions Use the results of the initial surveys to develop empirically grounded computational approaches aimed at guiding the design and configura- tion of heat exchangers for heat integration applications Develop methods and models to assess the potential increase in the energy efficiency of the process when a particular type of heat exchanger is deployed Establishmethodsforassessingtheeconomicandenvironmentalimpact of processes and process variants when using particular designs of heat exchanger equipment. Achieving these objectives required careful coordination of experimental and theoretical work. Laboratory testing was conducted by the five acade- mic research partners on lab-scale plants and was aimed at experimentally characterising and assessing the performance of the five types of heat exch- angers being studied. Testing was performed on simplified equipment con- figurations (single tubes, tube bundles, single plate, plate pack) and using a specified set of heat-transfer media. A uniform approach was also agreed regarding the following aspects of the experimental work: acquisition of the raw experimental data; material and energy balance calculations; fluid dynamic and thermodynamic evaluation of data and data compression; es- tablishing performance indices to facilitate performance evaluation of the types of heat exchanger studied. The aim was to ensure that the design types under test could be effectively compared with the conventional heat exch- anger devices in current use, specifically, heat exchangers constructed from smooth cylindrical tubes of carbon steel or stainless steel. Fig. 89: The research principles underlying the InnovA2 project. 212

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