ub.xmlui.mirage2.page-structure.muninLogoub.xmlui.mirage2.page-structure.openResearchArchiveLogo
    • EnglishEnglish
    • norsknorsk
  • Velg spraaknorsk 
    • EnglishEnglish
    • norsknorsk
  • Administrasjon/UB
Vis innførsel 
  •   Hjem
  • Fakultet for ingeniørvitenskap og teknologi
  • Institutt for automasjon og prosessteknologi
  • Artikler, rapporter og annet (automasjon og prosessteknologi)
  • Vis innførsel
  •   Hjem
  • Fakultet for ingeniørvitenskap og teknologi
  • Institutt for automasjon og prosessteknologi
  • Artikler, rapporter og annet (automasjon og prosessteknologi)
  • Vis innførsel
JavaScript is disabled for your browser. Some features of this site may not work without it.

Optimization of a mixed refrigerant based H2 liquefaction pre-cooling process and estimate of liquefaction performance with varying ambient temperature

Permanent lenke
https://hdl.handle.net/10037/23104
DOI
https://doi.org/10.3390/en14196090
Thumbnail
Åpne
article.pdf (7.071Mb)
Publisert versjon (PDF)
Dato
2021-09-24
Type
Journal article
Tidsskriftartikkel
Peer reviewed

Forfatter
Jackson, Steven; Brodal, Eivind
Sammendrag
Hydrogen used as an energy carrier can provide an important route to the decarbonization of energy supplies, but realizing this opportunity will require both significantly increased production and transportation capacity. One route to increased transportation capacity is the shipping of liquid hydrogen, but this requires an energy-intensive liquefaction step. Recent study work has shown that the energy required in this process can be reduced through the implementation of new and improved process designs, but since all low-temperature processes are affected by the available heat-sink temperature, local ambient conditions will also have an impact. The objective of this work is to identify how the energy consumption associated with hydrogen liquefaction varies with heat-sink temperature through the optimization of design parameters for a next-generation mixed refrigerant based hydrogen liquefaction process. The results show that energy consumption increases by around 20% across the cooling temperature range 5 to 50 °C. Considering just the range 20 to 30 °C, there is a 5% increase, illustrating the significant impact ambient temperature can have on energy consumption. The implications of this work are that the modelling of different liquified hydrogen based energy supply chains should take the impact of ambient temperature into account.
Er en del av
Jackson, S. (2021). The Impact of Ambient Temperature on Low Carbon Energy Supply - Modelling and optimization studies on the supply of hydrogen energy from northern Norway. (Doctoral thesis). https://hdl.handle.net/10037/23115.
Forlag
MDPI
Sitering
Jackson, Brodal. Optimization of a mixed refrigerant based h2 liquefaction pre-cooling process and estimate of liquefaction performance with varying ambient temperature. Energies. 2021;14(19)
Metadata
Vis full innførsel
Samlinger
  • Artikler, rapporter og annet (automasjon og prosessteknologi) [172]
Copyright 2021 The Author(s)

Bla

Bla i hele MuninEnheter og samlingerForfatterlisteTittelDatoBla i denne samlingenForfatterlisteTittelDato
Logg inn

Statistikk

Antall visninger
UiT

Munin bygger på DSpace

UiT Norges Arktiske Universitet
Universitetsbiblioteket
uit.no/ub - munin@ub.uit.no

Tilgjengelighetserklæring