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Experimental study of centrifugal compressor tip clearance and vaneless diffuser flow fields

Jaatinen-Värri, Ahti; Turunen-Saaresti, Teemu; Röyttä, Pekka; Grönman, Aki; Backman, Jari (2013)

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Experimental Study of Centrifugal Compressor Tip Clearance and Vaneless Diffuser Flow Fields.pdf (2.460Mb)
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Jaatinen-Värri, Ahti
Turunen-Saaresti, Teemu
Röyttä, Pekka
Grönman, Aki
Backman, Jari
2013
Sage Journals

This publication is protected by copyright. You may download, display and print it for Your own personal use. Commercial use is prohibited.
https://doi.org/10.1177/0957650913497358
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Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi-fe2018052324450

Tiivistelmä

Three vaneless diffuser designs, varying in diffuser width, for centrifugal compressor were studied experimentally. Along with the diffuser width, the tip clearance was altered. The compressor overall performance and diffuser flow fields were studied for each of the three diffusers at four different tip clearances. For the diffuser flow fields, the total pressures were measured with probes traversed over the diffuser width both at the diffuser inlet and outlet. Along with the total pressures, the static pressures were measured adjacent to the probes. This enabled the axial flow angle and velocity distributions to be studied. The pinches tested improved the stage efficiency mainly by suppressing the secondary flow region present near the shroud at the impeller outlet. This leads to a lower strain rate, resulting in lower losses. The efficiency decrease due to the increased tip clearance was similar with and without pinch present. This indicates that in the diffuser, the main source of the tip clearance associated losses is the tip jet, and the tip clearance vortices mix out already in the impeller.

Lähdeviite

Jaatinen-Värri, A., Turunen-Saaresti, T., Röyttä, P., Grönman, A., Backman, J. (2013). Experimental study of centrifugal compressor tip clearance and vaneless diffuser flow fields. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy, 227(8). 885-895. DOI:10.1177/0957650913497358.

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