Investigation on the Leakage and Static Dynamic Characteristics of Rotating Seals at High Eccentricity Ratios[J]. 2017, 51(7): 1-7.
DOI:
Investigation on the Leakage and Static Dynamic Characteristics of Rotating Seals at High Eccentricity Ratios[J]. 2017, 51(7): 1-7.DOI: 10.7652/xjtuxb201707001.
Investigation on the Leakage and Static Dynamic Characteristics of Rotating Seals at High Eccentricity Ratios
To evaluate the influence of rotating annular seal with eccentric rotor on the operation efficiency and stability of turbomachinery
a novel 3D mesh generation method and a numerical approach were adopted to solve the static gas response forces and static stiffness coefficients for the rotating annular seal at high rotor eccentricity ratios based on the mesh deformation technique and steady RANS solutions. An investigation on the leakage and static destabilizing characteristics of rotating annular seal at high rotor eccentricity ratios was conducted. The leakage flow rate
static gas response(exciting)forces
static stiffness coefficients and flow field characteristics of a fully-partitioned pocket damper seal(FPDS)were computed at three pressure ratios(0.17
0.35
0.50)
two inlet preswirl ratios(0
0.5)and seven eccentricity ratios(0.0
0.1
0.3
0.5
0.7
0.8
0.9). The results showed that the leakage flow rate increases with the eccentricity ratio. The rotor eccentricity and inlet preswirl result in a significant destabilizing cross-coupling stiffness
which may give rise to a risk of rotor whirling instability. The FPDS has a positive static direct stiffness as long as it operates at subsonic exit flow conditions
no matter the eccentricity ratio is high or low. For the choked exit condition
the FPDS shows negative static direct stiffness at low eccentricity ratios and then crosses over to positive value at the crossover eccentricity ratio 0.5
following a trend indicative of a parabola. The negative static direct stiffness may result in a full rotor eccentricity and rapid wear of seal due to rubbing contact.
关键词
Keywords
references
VANCE J M. Machinery vibration and rotordynamics [M]. New York, USA: John Wiley & Sons, 2010: 271-272.
CHUPP R E, HENDRICKS R C, LATTIME S B, et al. Sealing in turbomachinery [J]. Journal of Propulsion and Power, 2006, 22(2): 313-349.
CAO Shuqian, CHEN Yushu. A review of modern rotor/seal dynamics [J]. Journal of Engineering Mechanics, 2009, 26(s2): 68-79.
CHILDS D W, ARTHUR S P. Static destabilizing behavior for gas annular seals at high eccentricity ratios [C]∥ASME Turbo Expo 2013: Turbine Technical Conference and Exposition. New York, USA: ASME, 2013: V07AT29A003.
VALANTAS R, BOLLETER U. Solutions to abrasive wear-related rotordynamic instability problems in Prudhoe Bay injection pumps[EB/OL]. [2016-12-26]. http:∥turbolab.tamu.edu/proc/pumpproc/P5/P53-10.pdf.
MARQUETTE O, CHILDS D W, SAN ANDRES L. Eccentricity effects on the rotordynamic coefficients of plain annular seals: theory versus experiment [J]. ASME Journal of Tribology, 1997, 119(3): 443-448.
ARGHIR M, DEFAYE C, FRENE J. The Lomakin effect in annular gas seals under choked flow conditions [J]. ASME Journal of Engineering for Gas Turbines and Power, 2007, 129(14): 1028-1034.
HASSINI M A, ARGHIR M. Phase change and choked flow effects on rotordynamic coefficients of cryogenic annular seals [J]. ASME Journal of Tribology, 2013, 135(4): 042201.
ARGHIR M, MARIOT A. About the negative direct static stiffness of highly eccentric straight annular seals [J]. ASME Journal of Engineering for Gas Turbines and Power, 2015, 137(8): 082508.
ERTAS B H, DELGADO A, VANNINI G. Rotordynamic force coefficients for three types of annular gas seals with inlet preswirl and high differential pressure ratio [J]. ASME Journal of Engineering for Gas Turbines and Power, 2012, 134(4): 042503.
LI Zhigang, LI Jun, FENG Zhenping. Multiple frequencies one-dimensional prediction model of rotordynamic characteristics for pocket damper seals [J]. Journal of Xi'an Jiaotong University, 2012, 46(5): 13-18.
WANG Shizhu, LI Zhigang, LI Jun, et al. Numerical investigations for effect of supplementary steam on aerodynamic performance of turbine stage and rotordynamics of stator seal [J]. Journal of Xi'an Jiaotong University, 2015, 49(5): 56-61.
LI Zhigang, LI Jun, FENG Zhenping. Effect of swirl brakes on unsteady flow excitation characteristics of hole-pattern seal [J]. Journal of Xi'an Jiaotong University, 2016, 50(1): 16-21.
LI Zhigang, Li Jun, Feng Zhenping. Numerical investigations on the leakage and rotordynamics characteristics of pocket damper seals: part Ⅰ Effects of pressure ratio, rotational speed, and inlet preswirl [J]. ASME Journal of Engineering for Gas Turbines and Power, 2015, 137(3): 1-15.
Experimental and Numerical Investigations of the Leakage Characteristics of Two-Stage Brush Seal
Study of the Mechanism of Electrostatic Accumulation and Current Density Distribution Characteristics During Liquid Hydrogen Pipeline Transportation
Numerical Simulation of Space Charge Distribution Characteristics of Polyimide Materials under X-Ray Irradiation
Numerical Simulation Study on Geothermal Extraction Characteristics of Supercritical CO2 in Heterogeneous Fractures
Action Mechanism of Heat Transfer between the Working Medium and the Impeller on Aerodynamic Performance and Flow Characteristics of Radial Inflow Turbines with Supercritical Carbon Dioxide
Related Author
邱波 1
李军 1
冯增国 2
江生科 2
孔祥林 2
SUN Wenhao
LIU Hongbao
WANG Lei
Related Institution
Institute of Turbomachinery, Xi'an Jiaotong University
School of Energy and Power Engineering,Xi’an Jiaotong University
Aerospace System Engineering Shanghai
School of Electrical Engineering,Xi’an Jiaotong University