234
Views
24
CrossRef citations to date
0
Altmetric
Original Articles

Design Sensitivity Analysis of Noise, Vibration, and Harshness of Vehicle Body Structure∗

Pages 317-335 | Received 01 Feb 1998, Published online: 24 Oct 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Guilherme Carneiro, Marco Túlio Anjos & Ernani Sales Palma. (2023) Twist beam development at an early design stage: Effect of suspension and body characteristics on rear suspension durability. Mechanics Based Design of Structures and Machines 51:1, pages 400-417.
Read now
Junghwan Kook. (2019) Evolutionary topology optimization for acoustic-structure interaction problems using a mixed u/p formulation. Mechanics Based Design of Structures and Machines 47:3, pages 356-374.
Read now

Articles from other publishers (22)

Xiuyun Chen, Yajun Huang, Zhongbin Zhou & Yanming Xu. (2023) FEM/Wideband FMBEM coupling based on subdivision isogeometry for structural-acoustic design sensitivity analysis. Frontiers in Physics 11.
Crossref
Xiuyun Chen, Yanming Xu, Juan Zhao, Ruhui Cheng & Wenqiang Ma. (2022) Sensitivity analysis of structural-acoustic fully-coupled system using isogeometric boundary element method. Frontiers in Physics 10.
Crossref
S. Pradeepkumar & P. Nagaraj. (2021) Dynamic Substructuring Method for Vibration Analysis of Complex Structures. Journal of Vibration Engineering & Technologies 10:1, pages 313-333.
Crossref
S. Narayan, M. U. Kaisan, Shitu Abubakar, Faisal O. Mahroogi & Vipul Gupta. (2021) Optimization of Transducer Location for Novel Non-Intrusive Methodologies of Diagnosis in Diesel Engines. Sound&Vibration 55:3, pages 221-234.
Crossref
Yousok Kim, Jae Min Yang, Tongjun Cho, Byung Kwan Oh & Hyo Seon Park. (2019) Noncontact Bending and Torsional Stiffness Estimation Model for Automobile Frames Based on 3D Displacements. IEEE Sensors Journal 19:17, pages 7708-7717.
Crossref
Leilei Chen, Steffen Marburg, Haibo Chen, Hao Zhang & Hongbo Gao. (2017) An Adjoint Operator Approach for Sensitivity Analysis of Radiated Sound Power in Fully Coupled Structural-Acoustic Systems. Journal of Computational Acoustics 25:01, pages 1750003.
Crossref
Leilei Chen, Haibo Chen, Changjun Zheng & Steffen Marburg. (2016) Structural-acoustic sensitivity analysis of radiated sound power using a finite element/ discontinuous fast multipole boundary element scheme. International Journal for Numerical Methods in Fluids 82:12, pages 858-878.
Crossref
Leilei Chen, Linchao Liu, Wenchang Zhao & Haibo Chen. (2016) 2D Acoustic Design Sensitivity Analysis Based on Adjoint Variable Method Using Different Types of Boundary Elements. Acoustics Australia 44:2, pages 343-357.
Crossref
Jaesoon Jung, Jaeyub Hyun, Seongyeol Goo & Semyung Wang. (2015) An efficient design sensitivity analysis using element energies for topology optimization of a frequency response problem. Computer Methods in Applied Mechanics and Engineering 296, pages 196-210.
Crossref
Leilei Chen, Changjun Zheng & Haibo Chen. (2014) FEM/wideband FMBEM coupling for structural?acoustic design sensitivity analysis. Computer Methods in Applied Mechanics and Engineering 276, pages 1-19.
Crossref
Lei Zhang & Zhi Yong Hao. (2013) Lightweight Research of Automobile Dash Panel Based on Sound-Structure Sensitivity. Advanced Materials Research 681, pages 200-203.
Crossref
Glen Prater, Shengyong Zhang, Ali M. Shahhosseini & Gary M. Osborne. Application and Experimental Validation of Gauge Sensitivity Indices for Vehicle Body Structure Optimization. Application and Experimental Validation of Gauge Sensitivity Indices for Vehicle Body Structure Optimization.
Denny Fritze, Steffen Marburg & Hans-J?rgen Hardtke. (2005) FEM?BEM-coupling and structural?acoustic sensitivity analysis for shell geometries. Computers & Structures 83:2-3, pages 143-154.
Crossref
Denny Fritze, Steffen Marburg & Hans‐Jürgen Hardtke. (2004) FEM–BEM–Kopplung und strukturakustische Sensitivitätsanalyse f ür Schalengeometrien. PAMM 4:1, pages 522-523.
Crossref
Steffen Marburg. 2004. Advances in Dynamics and Control. Advances in Dynamics and Control.
Steffen Marburg & Hans-Jürgen Hardtke. (2011) Investigation and Optimization of a Spare Wheel Well to Reduce Vehicle Interior Noise. Journal of Computational Acoustics 11:03, pages 425-449.
Crossref
Steffen Marburg. (2002) Developments in structural-acoustic optimization for passive noise control. Archives of Computational Methods in Engineering 9:4, pages 291-370.
Crossref
Steffen Marburg & Hans-J?rgen Hardtke. (2002) A general concept for design modification of shell meshes in structural-acoustic optimization ? Part II: Application to a floor panel in sedan interior noise problems. Finite Elements in Analysis and Design 38:8, pages 737-754.
Crossref
Steffen Marburg. (2002) A general concept for design modification of shell meshes in structural-acoustic optimization ? Part I: formulation of the concept. Finite Elements in Analysis and Design 38:8, pages 725-735.
Crossref
Glen Prater, Ali M. Shahhosseini, Matthew B. State, Vickie T. Furman & Musa Azzouz. Use of FEA Concept Models to Develop Light-Truck Cab Architectures with Reduced Weight and Enhanced NVH Characteristics. Use of FEA Concept Models to Develop Light-Truck Cab Architectures with Reduced Weight and Enhanced NVH Characteristics.
Steffen Marburg & Hans-Jürgen Hardtke. 2002. IUTAM Symposium on Designing for Quietness. IUTAM Symposium on Designing for Quietness 279 297 .
Semyung Wang & Jeawon Lee. (2001) Acoustic Design Sensitivity Analysis and Optimization for Reduced Exterior Noise. AIAA Journal 39:4, pages 574-580.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.