2차원 구조물의 진동 인텐시티 계측에 대한 연구

A Study on Structural Intensity Measurement of 2-dimensional Structure

  • 이덕영 (울산전문대학 기계과) ;
  • 박성태 (울산대학교 공과대학 자동차공학과)
  • 발행 : 1997.06.01

초록

In order to control vibration in structures, it is desirable to be able to identify dominant paths of vibration transmission from sources through the structure to some points of interest. Structural intensity vector(power flow per width of cross section) using cross spectra is able to measure the vibration power flow at a point in a structure. This paper describes the structural intensity measurement of 2-dimensional structure. Structural intensity of 2-dimensional structure can be obtained from eight point cross spectral measurement per axis, or two point measurement per axis on the assumption of far field. Approximate formulation of the relation between bending waves in structures and structural intensity makes it possible to separate the wave components by which one can get a state of the vibration field. Experimental results are obtained on an infinite plate at the near and far field in flexural vibration. The measurement error of two point measurement is rather bigger than eight point measurement on account of the assumption that Poisson's ratio is 1. The structural intensity vectors on the plate are checked the ability to identify the path of vibration power flow in random excitation and 200Hz sine excitation, the result of two point measurememt is almost the same as the result of eight point measurement in 200Hz sine excitation.

키워드

참고문헌

  1. 소음·진동 편람 한국소음진동공학회
  2. Structure-Borne Sound (2nd Edition) Cremer, L.;Heckl, M.;Ungar, E. E.
  3. Journal of the Acoustical Society of America v.47 no.1 Measurement of Power Flow in Uniform Beams and Plates Noiseux, D. U.
  4. Journal of Sound and Vibration v.49 no.2 Measurement of Structure Borne Wave Intensity, Part Ⅰ:Formulation of the Methods Pavic, G.
  5. Journal of Sound and Vibration v.70 no.1 Cross Spectral Density Methods for Measuring Structure Borne Power Flow on Beams and Pipes Verheij, J. W.
  6. 日本機械學會論文集(C編) v.59 no.558 一次元振動インテンツテイ計測における測定條件の設定 柴勝久;苦月修武;高津宣夫;加藤正名
  7. PhD Thesis, The Catholic university of America Structural Response and Power Flow Measurements utilizing Cross Spectra Carroll, G. P.
  8. 日本機械學會論文集(C編) v.57 no.535 振動インテンツテイ計測に關する基礎硏究(第1報, 理論的檢討) 鎌田實;島谷和憲
  9. Third international Congress of Air-and Structure-borne Sound and Vibration Theoretical and Experimental analysis of power flow in beam structures Hong, Y.;Wu, Q.;Lim, M. K.
  10. PhD Thesis, The Pennsylvania State University Development and Evaluation of Laser Doppler Techniques for Measurements of Flexural and Longitudinal Structural Intensity McDevitt, J. E.
  11. Journal of Sound and Vibration v.153 no.1 Estimation of Bending Wave Intensity in Beams using the Frequency Response Technique Linjama, J.;Lahti, T.
  12. 한국소음진동공학회지 v.7 no.1 반무한보의 진동 인텐시티 계측에 대한 연구 이덕영;박성태
  13. 日本機械學會論文集(C編) v.62 no.594 振動インテンツテイ計測に關する基礎硏究(第4報, 二次元の詳細 鎌田實;山岐撤;島谷引道
  14. 日本機械學會論文集(C編) v.61 no.589 振動インテンツテイによる散逸エネルキ-の解析 中川捻章;古巢克也;淺井實
  15. CETIM 3rd Internation Congress on Intensity Techniques Senlis-France Structure Borne Intensity in Straight and Curved Bars Kurtz, P.
  16. CETIM 3rd International Congress on Intensity Techniques Senlis-France Structural Intensity and Vibration Energy Flow on Inhomogeneous Shells of Arbitrary Shape Allan D. P.
  17. Third International Congress on Air-and Structure-borne Sound and Vibration Using Power Flow Measurements to Quantify Gearbox Noise Transmission to Under water via a Propeller Shaft Verheij, J. W.;Hopmans, L. J. M.;van Tol, F. H.
  18. Wave Propagation in Structures Doyle, J. F.
  19. Ref. v.1
  20. Analytical Methods in Vibration Meirovitch, L.