Dynamics of Fluid-structure Systems in the Energy Industry: Presented at the Third National Congress on Pressure Vessel and Piping, San Francisco, California, June 25-29, 1979M. K. Au-Yang, Samuel J. Brown |
Contents
DYNAMIC FLUIDSTRUCTURE INTERACTION IN POWER PLANT COMPONENTS | 1 |
FLOWINDUCED VIBRATION OF POWER PLANT COMPONENTS | 87 |
FLUIDINDUCED COMPONENT TRANSIENTS | 147 |
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accelerometers acrylic amplitude analysis ANNULAR GAP axial beyond-yield blowdown boundary condition calculated Cantilever choked flow components core support coupling damping ratio deformation density desuperheater determined deviatoric displacement dynamic effect elastic equation Fauske feedwater heater finite element flat plates flexible member fluid-structure interaction forces function initial Inner Cylinder Thickness isentropic loading locations mass flow rate mass matrix mean stress measured mode shapes motion NATURAL FREQUENCY NATURAL FREQUENCY HZ nodal nodes non-steady normal Outer Cylinder Thickness peak perfect gas predicted pressure pulse pressure transducers pressure vessel problem propagation radial radius ramp random vibration resonant frequencies response rigid sensors shell shown in Figure solution spherical SSHT stagnation stagnation pressure steam strain gages structure surface tank temperature test data test section test vessel thermal shield tion top shield trapped air tube valve vapor velocity disturbance vibration wall waterhammer wave yield points zero