Details
Originalsprache | Englisch |
---|---|
Aufsatznummer | 012095 |
Fachzeitschrift | Journal of Physics: Conference Series |
Jahrgang | 2116 |
Ausgabenummer | 1 |
Publikationsstatus | Veröffentlicht - 8 Dez. 2021 |
Veranstaltung | 8th European Thermal Sciences Conference, EUROTHERM 2021 - Virtual, Online Dauer: 20 Sept. 2021 → 22 Sept. 2021 |
Abstract
Due to increased distribution of high-temperature processes in energy and process plants, more efficient and compact high-temperature heat exchangers are being developed. The additive manufacturing allows the construction of compact sizes and application-specific requirements. To evaluate the thermal performance of these heat exchangers, experimental investigations are evident. This study presents a test rig for testing compact high-temperature heat exchangers as well as a first set of thermal performance data of an additively manufactured plate-fin heat exchanger. The test rig can provide a maximum fluid temperature of 900°C and a maximum mass flow rate of 0.8 kg/min. A steam unit can add steam to the fluid stream to evaluate the influence of gas radiation on the thermal performance. The capabilities of this test rig are being tested with the plate-fin heat exchanger, varying the mass flow rate between 0.2 - 0.52 kg/min at a hot and cold inlet temperature of 750°C and 250°C. The overall effectiveness of the heat exchanger is approx. 0.9.
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in: Journal of Physics: Conference Series, Jahrgang 2116, Nr. 1, 012095, 08.12.2021.
Publikation: Beitrag in Fachzeitschrift › Konferenzaufsatz in Fachzeitschrift › Forschung › Peer-Review
}
TY - JOUR
T1 - Thermal performance measurement of additive manufactured high-temperature compact heat exchangers
AU - Fuchs, M.
AU - Heinrich, D.
AU - Luo, X.
AU - Kabelac, S.
N1 - Funding Information: The authors would like to thank the NOW GmbH and the Federal Ministry of Transport and Digital Infrastructure for their financial support of the project “MultiSchIBZ” (FKZ: 03B1060) within the framework of the "e4ships" cluster.
PY - 2021/12/8
Y1 - 2021/12/8
N2 - Due to increased distribution of high-temperature processes in energy and process plants, more efficient and compact high-temperature heat exchangers are being developed. The additive manufacturing allows the construction of compact sizes and application-specific requirements. To evaluate the thermal performance of these heat exchangers, experimental investigations are evident. This study presents a test rig for testing compact high-temperature heat exchangers as well as a first set of thermal performance data of an additively manufactured plate-fin heat exchanger. The test rig can provide a maximum fluid temperature of 900°C and a maximum mass flow rate of 0.8 kg/min. A steam unit can add steam to the fluid stream to evaluate the influence of gas radiation on the thermal performance. The capabilities of this test rig are being tested with the plate-fin heat exchanger, varying the mass flow rate between 0.2 - 0.52 kg/min at a hot and cold inlet temperature of 750°C and 250°C. The overall effectiveness of the heat exchanger is approx. 0.9.
AB - Due to increased distribution of high-temperature processes in energy and process plants, more efficient and compact high-temperature heat exchangers are being developed. The additive manufacturing allows the construction of compact sizes and application-specific requirements. To evaluate the thermal performance of these heat exchangers, experimental investigations are evident. This study presents a test rig for testing compact high-temperature heat exchangers as well as a first set of thermal performance data of an additively manufactured plate-fin heat exchanger. The test rig can provide a maximum fluid temperature of 900°C and a maximum mass flow rate of 0.8 kg/min. A steam unit can add steam to the fluid stream to evaluate the influence of gas radiation on the thermal performance. The capabilities of this test rig are being tested with the plate-fin heat exchanger, varying the mass flow rate between 0.2 - 0.52 kg/min at a hot and cold inlet temperature of 750°C and 250°C. The overall effectiveness of the heat exchanger is approx. 0.9.
UR - http://www.scopus.com/inward/record.url?scp=85122438817&partnerID=8YFLogxK
U2 - 10.1088/1742-6596/2116/1/012095
DO - 10.1088/1742-6596/2116/1/012095
M3 - Conference article
AN - SCOPUS:85122438817
VL - 2116
JO - Journal of Physics: Conference Series
JF - Journal of Physics: Conference Series
SN - 1742-6588
IS - 1
M1 - 012095
T2 - 8th European Thermal Sciences Conference, EUROTHERM 2021
Y2 - 20 September 2021 through 22 September 2021
ER -