Influence of operating parameters and cavity geometry on rotor dynamic characteristics of hole-pattern damping seal with dovetail-like diversion grooves
The operating parameters and cavity geometry significantly affect the sealing properties and rotor stability of the hole-pattern damping seal (HPDS). The three-dimensional numerical analysis model for the innovative dovetail-shaped hole-pattern damping seal (D-HPDS) was established. This model was u...
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Veröffentlicht in: | Journal of the Brazilian Society of Mechanical Sciences and Engineering 2024-08, Vol.46 (8), Article 484 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The operating parameters and cavity geometry significantly affect the sealing properties and rotor stability of the hole-pattern damping seal (HPDS). The three-dimensional numerical analysis model for the innovative dovetail-shaped hole-pattern damping seal (D-HPDS) was established. This model was used to study effects of inlet pressure, rotational speed, preswirl ratio, seal axial length, and cavity diameters on the rotor-dynamic characteristics of D-HPDS and circular-shaped HPDS (C-HPDS) using the dynamic mesh method and multi-frequency elliptic whirling model. Results show that under different conditions of cavity structures and operating parameters, the effective damping and stiffness of D-HPDS compared with C-HPDS improved to different degrees. The larger cavity diameter (
d
= 8 mm) and the longer axial length (
S
= 12) significantly enhanced the damping characteristics of D-HPDS, with the average effective damping increasing by up to 25. At rotational speeds of 0 to 7500 rpm and pressure ratios below 6.9, the negative vortex force (
K
xy
|
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ISSN: | 1678-5878 1806-3691 |
DOI: | 10.1007/s40430-024-05008-4 |