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Reduced Order Model Analysis For Two Dimensional Molecular Dynamic Chain Structure Attached To An Atomic Force Microscope

Publication ,  Journal Article
Tang, D; Dowell, EH
Published in: American Society of Mechanical Engineers, Design Engineering Division (Publication) DE
January 1, 2003

Dynamic analysis and numerical simulation of a protein-ligand chain structure connected to a moving atomic force microscope (AFM) has been conducted. The elements of the chain are free to extend and rotate relative to each other in a two-dimensional plane. Sinusoidal base excitation of the cantilevered beam of the AFM is considered in some detail. Reduced order (dynamic) models are constructed using global modes for both linear and nonlinear dynamic systems with and without the "nearest neighbor assumption". The agreement between the original and reduced order models (ROM) is very good even when only one global mode is included in the ROM for either the linear case or for the nonlinear case, provided the excitation frequency is lower than the fundamental natural frequency of the linear system. For higher excitation frequencies, more global modes are required. The computational advantage of the reduced order model is clear from the results presented.

Duke Scholars

Published In

American Society of Mechanical Engineers, Design Engineering Division (Publication) DE

DOI

ISSN

1521-4613

Publication Date

January 1, 2003

Volume

116

Issue

2

Start / End Page

905 / 924

Related Subject Headings

  • Acoustics
 

Citation

APA
Chicago
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Tang, D., & Dowell, E. H. (2003). Reduced Order Model Analysis For Two Dimensional Molecular Dynamic Chain Structure Attached To An Atomic Force Microscope. American Society of Mechanical Engineers, Design Engineering Division (Publication) DE, 116(2), 905–924. https://doi.org/10.1115/IMECE2003-42496
Tang, D., and E. H. Dowell. “Reduced Order Model Analysis For Two Dimensional Molecular Dynamic Chain Structure Attached To An Atomic Force Microscope.” American Society of Mechanical Engineers, Design Engineering Division (Publication) DE 116, no. 2 (January 1, 2003): 905–24. https://doi.org/10.1115/IMECE2003-42496.
Tang D, Dowell EH. Reduced Order Model Analysis For Two Dimensional Molecular Dynamic Chain Structure Attached To An Atomic Force Microscope. American Society of Mechanical Engineers, Design Engineering Division (Publication) DE. 2003 Jan 1;116(2):905–24.
Tang, D., and E. H. Dowell. “Reduced Order Model Analysis For Two Dimensional Molecular Dynamic Chain Structure Attached To An Atomic Force Microscope.” American Society of Mechanical Engineers, Design Engineering Division (Publication) DE, vol. 116, no. 2, Jan. 2003, pp. 905–24. Scopus, doi:10.1115/IMECE2003-42496.
Tang D, Dowell EH. Reduced Order Model Analysis For Two Dimensional Molecular Dynamic Chain Structure Attached To An Atomic Force Microscope. American Society of Mechanical Engineers, Design Engineering Division (Publication) DE. 2003 Jan 1;116(2):905–924.

Published In

American Society of Mechanical Engineers, Design Engineering Division (Publication) DE

DOI

ISSN

1521-4613

Publication Date

January 1, 2003

Volume

116

Issue

2

Start / End Page

905 / 924

Related Subject Headings

  • Acoustics