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      Innovative hybrid heat pump for dryer process integration

      Walmsley, Timothy Gordon; Klemeš, Jiří Jaromír; Walmsley, Michael R.W.; Atkins, Martin John; Varbanov, Petar S.
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      DOI
       10.3303/CET1757174
      Link
       www.aidic.it
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      Walmsley, T. G., Klemeš, J. J., Walmsley, M. R. W., Atkins, M. J., & Varbanov, P. S. (2017). Innovative hybrid heat pump for dryer process integration. Chemical Engineering Transactions, 57, 1039–1044. https://doi.org/10.3303/CET1757174
      Permanent Research Commons link: https://hdl.handle.net/10289/11453
      Abstract
      This study aims to simulate and optimise a hybrid compression-absorption heat pump process for convective dryers considering Pinch design principles. With a greening electricity grid, heat pumps represent an effective technology to reduce process heat emissions. As a result, numerous types of heat pumps integrated with convective dryers have been reported in the literature, but no study was found to use a hybrid heat pump. To simplify the design and optimisation, Process Integration principles for compressors and expanders from literature are synthesised into a Pinch design method for heat pumps. A milk spray dryer case study is analysed. Simulation results using Petro-Sim™ show that the optimally design hybrid heat pump system can reduce dryer energy demand by 47.3 % and total emissions by 42.4 % (assuming a low carbon electricity grid) while achieving a gross Coefficient of Performance of 4.53. Future work will look at optimising the selection and composition of working fluid for the hybrid heat pump system as well as investigating the economics of its implementation in industry.
      Date
      2017
      Type
      Journal Article
      Publisher
      The Italian Association of Chemical Engineering
      Rights
      Copyright © 2017, AIDIC Servizi S.r.l.
      Collections
      • Science and Engineering Papers [3124]
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