IIR document
Numerical investigation of R-134a ejector.
Number: pap. 25
Author(s) : BESAGNI G., MEREU R., INZOLI F.
Summary
This paper studies the flow phenomena in the R-134a. In particular, an experimental investigation previously presented has been used as benchmark. In the experimental investigation, three different mixing chamber geometries with the same internal diameter, but different profiles have been tested. The critical conditions and the operating curves have been determined for three mixing chambers, without information of local flow phenomena. This paper deals with the numerical investigation of the local flow field inside the ejectors providing an insight view of the local flow phenomena and providing explanation to the phenomena experimentally observed. The CFD approach is based on a 2D axisymmetric representation of the ejectors, modeling the working fluids as a real gas. The CFD approach has been validated with the experimental data: the operating curves are predicted with relative errors less than 6% (critical mode) and less than 15% (subcritical mode) and local flow phenomena has been investigated.
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Details
- Original title: Numerical investigation of R-134a ejector.
- Record ID : 30018359
- Languages: English
- Source: 1st IIR International Conference of Cryogenics and Refrigeration Technology (ICCRT 2016). Proceedings: Bucharest, Romania, June 22-25, 2016.
- Publication date: 2016/06/22
- DOI: http://dx.doi.org/10.18462/IIR.ICCRT.2016.0025
Links
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Indexing
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Themes:
HFCs;
Ejector systems, air cycle, Stirling cycle, other cycles) - Keywords: R134a; CFD; Simulation; Ejector; Flow; Refrigerant
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