Document IIF
Développement d’un cycle frigorifique modulaire afin de classer les performances des frigorigènes inflammables.
Development of a modular refrigeration cycle to classify the performance of flammable refrigerants.
Résumé
Due to political regulations, environmentally friendly refrigerants must replace conventional alternatives (i.e., R134a) in heat pumps. Especially in residential applications, many theoretical studies in the literature prove that hydrocarbons meet many requirements and have suitable thermodynamic properties to increase the efficiency of refrigeration cycles. However, there is an urgent need for experimental validation to push the usage of hydrocarbons into practice.
In this work, a modular, safe and controllable air-to-water heat pump test bench is developed to validate the theoretical potentials of propane-based heat pump systems. Due to the modular design, different components and other non-toxic refrigerants of all flammability classes can be investigated. In addition to measuring the refrigerant mass flow rate, relevant temperatures, and pressure levels for thermodynamic analysis, the design allows the investigation of the coefficient of performance and influences of the refrigerant charge.
The propane-based heat pump is successfully commissioned. During fully automated operation, a coefficient of performance of 5.5 at an air temperature of 10 °C and a supply temperature of 35 °C is determined. The refrigerant charge is 2.34 kg. This charge ensures a refrigerant reservoir in the receiver. Charge variations show that leakage can be detected using the installed sensors after depleting the refrigerant reservoir. Refrigerant loss manifests itself in a decrease of subcooling, an increase in superheating, reduced heat flow rates at the condenser, and thus decreasing coefficients of performance. These findings can be used to integrate leakage detection into a sensor-based algorithm.
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Détails
- Titre original : Development of a modular refrigeration cycle to classify the performance of flammable refrigerants.
- Identifiant de la fiche : 30029726
- Langues : Anglais
- Sujet : Technologie, Alternatives aux HFC
- Source : 15th IIR-Gustav Lorentzen Conference on Natural Refrigerants (GL2022). Proceedings. Trondheim, Norway, June 13-15th 2022.
- Date d'édition : 13/06/2022
- DOI : http://dx.doi.org/10.18462/iir.gl2022.0128
- Document disponible en consultation à la bibliothèque du siège de l'IIF uniquement.
Liens
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Indexation
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Thèmes :
Hydrocarbures;
Pompes à chaleur à usage domestique;
Circulation du fluide : tuyauterie, régulation, automatisme, sécurité;
Confinement, réduction de la charge en frigorigène - Mots-clés : Pompe à chaleur; Banc d'essai; Propane; Air-eau; Sécurité; Experimentation; Fuite; Charge en frigorigène; R290; Calcul
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Refrigerant egression to connected spaces in re...
- Auteurs : COLBOURNE D., VONSILD A. L.
- Date : 13/06/2022
- Langues : Anglais
- Source : 15th IIR-Gustav Lorentzen Conference on Natural Refrigerants (GL2022). Proceedings. Trondheim, Norway, June 13-15th 2022.
- Formats : PDF
Voir la fiche
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Low refrigerant charge air to water domestic he...
- Auteurs : BEEK M. van, GORP T. van
- Date : 21/08/2023
- Langues : Anglais
- Source : Proceedings of the 26th IIR International Congress of Refrigeration: Paris , France, August 21-25, 2023.
- Formats : PDF
Voir la fiche
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Concentrations of hydrocarbon refrigerant exiti...
- Auteurs : COLBOURNE D., SUEN K. O.
- Date : 13/06/2022
- Langues : Anglais
- Source : 15th IIR-Gustav Lorentzen Conference on Natural Refrigerants (GL2022). Proceedings. Trondheim, Norway, June 13-15th 2022.
- Formats : PDF
Voir la fiche
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Experimental evaluation of a charge reduced hea...
- Auteurs : DANKWERTH C., METHLER T., OLTERSDORF T., SCHOSSIG P., SCHNABEL L.
- Date : 07/12/2020
- Langues : Anglais
- Source : 14th IIR-Gustav Lorentzen Conference on Natural Refrigerants (GL2020). Proceedings. Kyoto, Japon, December 7-9th 2020.
- Formats : PDF
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Evaluation of a low charge heat pump circuit us...
- Auteurs : DANKWERTH C., METHLER T., BRAUNGARDT S., SONNER C., OLTERSDORF T., MIARA M., SCHOSSIG P., SCHNABEL L.
- Date : 31/08/2021
- Langues : Anglais
- Source : 13th IEA Heat Pump Conference 2021: Heat Pumps – Mission for the Green World. Conference proceedings [full papers]
- Formats : PDF
Voir la fiche