Theoretical and Numerical Estimation of Vibroacoustic Behavior of Clamped Free Parabolic Tapered Annular Circular Plate with Different Arrangement of Stiffener Patches

This paper compares the vibroacoustic behavior of a tapered annular circular plate having different parabolic varying thickness with different combinations of rectangular and concentric stiffener patches keeping the mass of the plate and the patch constant for a clamped-free boundary condition. Both...

Full description

Bibliographic Details
Main Authors: Abhijeet Chatterjee, Vinayak Ranjan, Mohammad Sikandar Azam, Mohan Rao
Format: Article
Language:English
Published: MDPI AG 2018-12-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/8/12/2542
id doaj-1064d619c792453ebfa5cecaa2dbbfc6
record_format Article
spelling doaj-1064d619c792453ebfa5cecaa2dbbfc62020-11-24T23:48:13ZengMDPI AGApplied Sciences2076-34172018-12-01812254210.3390/app8122542app8122542Theoretical and Numerical Estimation of Vibroacoustic Behavior of Clamped Free Parabolic Tapered Annular Circular Plate with Different Arrangement of Stiffener PatchesAbhijeet Chatterjee0Vinayak Ranjan1Mohammad Sikandar Azam2Mohan Rao3Department of Mechanical Engineering, Indian Institute of Technology (ISM), Dhanbad 826004, IndiaDepartment of Mechanical Engineering, Bennett University, Greater Noida 201310, IndiaDepartment of Mechanical Engineering, Indian Institute of Technology (ISM), Dhanbad 826004, IndiaDepartment of Mechanical Engineering, Tennessee Tech University, Cookeville, TN 38505, USAThis paper compares the vibroacoustic behavior of a tapered annular circular plate having different parabolic varying thickness with different combinations of rectangular and concentric stiffener patches keeping the mass of the plate and the patch constant for a clamped-free boundary condition. Both numerical and analytical methods are used to solve the plate. The finite element method (FEM) is used to determine the vibration characteristic and both Rayleigh integral and FEM is used to determine the acoustic behavior of the plate. It is observed that a Case II plate with parabolic decreasing⁻increasing thickness variation for a plate with different stiffener patches shows reduction in frequency parameter in comparison to other cases. For acoustic response, the variation of peak sound power level for different combinations of stiffener patches is investigated with different taper ratios. It is investigated that Case II plate with parabolic decreasing⁻increasing thickness variation for an unloaded tapered plate as well as case II plate with 2 rectangular and 4 concentric stiffeners patches shows the maximum sound power level among all variations. However, it is shown that the Case III plate with parabolically increasing⁻decreasing thickness variation with different combinations of rectangular and concentric stiffeners patches is least prone to acoustic radiation. Furthermore, it is shown that at low forcing frequency, average radiation efficiency with different combinations of stiffeners patches remains the same, but at higher forcing frequency a higher taper ratio causes higher radiation efficiency, and the radiation peak shifts towards the lower frequency and alters its stiffness as the taper ratio increases. Finally, the design options for peak sound power actuation and reduction for different combinations of stiffener patches with different taper ratios are suggested.https://www.mdpi.com/2076-3417/8/12/2542thick annular circular plateRayleigh integralfinite element modelingrectangular and concentric stiffener patchestaper ratiothickness variation
collection DOAJ
language English
format Article
sources DOAJ
author Abhijeet Chatterjee
Vinayak Ranjan
Mohammad Sikandar Azam
Mohan Rao
spellingShingle Abhijeet Chatterjee
Vinayak Ranjan
Mohammad Sikandar Azam
Mohan Rao
Theoretical and Numerical Estimation of Vibroacoustic Behavior of Clamped Free Parabolic Tapered Annular Circular Plate with Different Arrangement of Stiffener Patches
Applied Sciences
thick annular circular plate
Rayleigh integral
finite element modeling
rectangular and concentric stiffener patches
taper ratio
thickness variation
author_facet Abhijeet Chatterjee
Vinayak Ranjan
Mohammad Sikandar Azam
Mohan Rao
author_sort Abhijeet Chatterjee
title Theoretical and Numerical Estimation of Vibroacoustic Behavior of Clamped Free Parabolic Tapered Annular Circular Plate with Different Arrangement of Stiffener Patches
title_short Theoretical and Numerical Estimation of Vibroacoustic Behavior of Clamped Free Parabolic Tapered Annular Circular Plate with Different Arrangement of Stiffener Patches
title_full Theoretical and Numerical Estimation of Vibroacoustic Behavior of Clamped Free Parabolic Tapered Annular Circular Plate with Different Arrangement of Stiffener Patches
title_fullStr Theoretical and Numerical Estimation of Vibroacoustic Behavior of Clamped Free Parabolic Tapered Annular Circular Plate with Different Arrangement of Stiffener Patches
title_full_unstemmed Theoretical and Numerical Estimation of Vibroacoustic Behavior of Clamped Free Parabolic Tapered Annular Circular Plate with Different Arrangement of Stiffener Patches
title_sort theoretical and numerical estimation of vibroacoustic behavior of clamped free parabolic tapered annular circular plate with different arrangement of stiffener patches
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2018-12-01
description This paper compares the vibroacoustic behavior of a tapered annular circular plate having different parabolic varying thickness with different combinations of rectangular and concentric stiffener patches keeping the mass of the plate and the patch constant for a clamped-free boundary condition. Both numerical and analytical methods are used to solve the plate. The finite element method (FEM) is used to determine the vibration characteristic and both Rayleigh integral and FEM is used to determine the acoustic behavior of the plate. It is observed that a Case II plate with parabolic decreasing⁻increasing thickness variation for a plate with different stiffener patches shows reduction in frequency parameter in comparison to other cases. For acoustic response, the variation of peak sound power level for different combinations of stiffener patches is investigated with different taper ratios. It is investigated that Case II plate with parabolic decreasing⁻increasing thickness variation for an unloaded tapered plate as well as case II plate with 2 rectangular and 4 concentric stiffeners patches shows the maximum sound power level among all variations. However, it is shown that the Case III plate with parabolically increasing⁻decreasing thickness variation with different combinations of rectangular and concentric stiffeners patches is least prone to acoustic radiation. Furthermore, it is shown that at low forcing frequency, average radiation efficiency with different combinations of stiffeners patches remains the same, but at higher forcing frequency a higher taper ratio causes higher radiation efficiency, and the radiation peak shifts towards the lower frequency and alters its stiffness as the taper ratio increases. Finally, the design options for peak sound power actuation and reduction for different combinations of stiffener patches with different taper ratios are suggested.
topic thick annular circular plate
Rayleigh integral
finite element modeling
rectangular and concentric stiffener patches
taper ratio
thickness variation
url https://www.mdpi.com/2076-3417/8/12/2542
work_keys_str_mv AT abhijeetchatterjee theoreticalandnumericalestimationofvibroacousticbehaviorofclampedfreeparabolictaperedannularcircularplatewithdifferentarrangementofstiffenerpatches
AT vinayakranjan theoreticalandnumericalestimationofvibroacousticbehaviorofclampedfreeparabolictaperedannularcircularplatewithdifferentarrangementofstiffenerpatches
AT mohammadsikandarazam theoreticalandnumericalestimationofvibroacousticbehaviorofclampedfreeparabolictaperedannularcircularplatewithdifferentarrangementofstiffenerpatches
AT mohanrao theoreticalandnumericalestimationofvibroacousticbehaviorofclampedfreeparabolictaperedannularcircularplatewithdifferentarrangementofstiffenerpatches
_version_ 1725486694893879296