Ng, 1994
ViewPDF| Publication | Publication Date | Title |
|---|---|---|
| Ziada et al. | Self-excited resonances of two side-branches in close proximity | |
| Eisinger | Designing piping systems against acoustically induced structural fatigue | |
| Reethof et al. | A theoretically based valve noise prediction method for compressible fluids | |
| Eisinger et al. | Acoustically induced structural fatigue of piping systems | |
| Ng | Control valve noise | |
| Bull et al. | The proximity of coincidence and acoustic cut-off frequencies in relation to acoustic radiation from pipes with disturbed internal turbulent flow | |
| Morita et al. | Flow induced vibration of a steam control valve in middle-opening condition | |
| Gong et al. | Analysis of acoustic characteristics of the expansion chamber water muffler considering acoustic-structure interaction | |
| Youn et al. | Flow characteristics of pressure reducing valve with radial slit structure for low noise | |
| Hayashi et al. | Prediction Method for Acoustically Induced Vibration of Process Piping Generated by a Restriction Orifice | |
| Holmer et al. | Transmission of sound through pipe walls in the presence of flow | |
| Graf et al. | Verification of Scaling Rules for Control Valve Noise by Means of Model Tests | |
| Ng | 800 North Quincy Street Arlington, VA 22217 | |
| Hambric et al. | Noise sources and transmission in piping systems | |
| Dweib | Power spectral density analysis of acoustically induced vibration in piping systems | |
| Hergli et al. | Transmission loss prediction of dissipative silencers using the finite element method | |
| Wang | Dynamic forcing function for flow-acoustic-induced vibration | |
| Seebold | Control valve noise | |
| Eilers et al. | Revisiting and Improving Pipe Wall Transmission Loss Estimation for Control Valve Noise Prediction | |
| Phong et al. | Acoustic transmission loss of perforated plates | |
| Hayashi et al. | Evaluation of acoustically induced vibration and fatigue failures in process piping systems | |
| Vasilyev | A SIMPLE ENGINEERING METHOD FOR SIMULATING FLOW-INDUCED VIBRATION IN PIPING | |
| Selamet et al. | Venturi tubes: acoustic attenuation with flow loss considerations | |
| Reethof et al. | Control valve noise and its reduction state of the art | |
| Santoni et al. | Experimental Vibroacoustic Measurements of a Centrifugal Compressor Stage for Oil & Gas Applications |