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dc.contributor.authorWenzel, Paula M.-
dc.contributor.authorMühlen, Marc-
dc.contributor.authorRadgen, Peter-
dc.date.accessioned2023-05-12T08:20:28Z-
dc.date.available2023-05-12T08:20:28Z-
dc.date.issued2023de
dc.identifier.issn1996-1073-
dc.identifier.other1845350502-
dc.identifier.urihttp://nbn-resolving.de/urn:nbn:de:bsz:93-opus-ds-130567de
dc.identifier.urihttp://elib.uni-stuttgart.de/handle/11682/13056-
dc.identifier.urihttp://dx.doi.org/10.18419/opus-13037-
dc.description.abstractIn light of energy and climate targets, free cooling unlocks a major resource-saving potential compared to refrigeration. To fill the knowledge gap in quantifying this saving potential, we aim to specify the physical and technical limits of cooling tower applications and provide comprehensive data on electricity and water consumption. For this purpose, we distinguish six types of package-type cooling towers: dry, closed wet, open wet, and three types of hybrid systems; defining one generalized system for all types enables comparability. Subsequently, we collect data from 6730 system models of 27 manufacturers, using technical information from data sheets and additional material. The analysis reveals, for example, specific ranges of electricity demand from 0.01 to 0.06 kWel/kWth and highlights influencing factors, including type and operating point. Refrigeration systems would consume approximately ten times more electricity per cooling capacity. Furthermore, the evaluation demonstrates the functional limits, for example, the minimum cooling temperatures. Minimum outlet temperatures using evaporative cooling are up to 16 K lower than for dry cooling. The collected data have crucial implications for designing and optimizing cooling systems, including potential analysis of free cooling and efficiency assessment of cooling towers in operation.en
dc.language.isoende
dc.relation.uridoi:10.3390/en16093661de
dc.rightsinfo:eu-repo/semantics/openAccessde
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/de
dc.subject.ddc620de
dc.titleFree cooling for saving energy: technical market analysis of dry, wet, and hybrid cooling based on manufacturer dataen
dc.typearticlede
ubs.fakultaetEnergie-, Verfahrens- und Biotechnikde
ubs.institutInstitut für Energiewirtschaft und Rationelle Energieanwendungde
ubs.publikation.seiten27de
ubs.publikation.sourceEnergies 16 (2023), No. 3661de
ubs.publikation.typZeitschriftenartikelde
Enthalten in den Sammlungen:04 Fakultät Energie-, Verfahrens- und Biotechnik

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