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University of Tennessee at Chattanooga

Numerical investigation of time-integration schemes applicable to fluid-structure interaction

Abstract

dc:description.abstract

In many civil engineering applications the interaction between fluid and structures represents a crucial aspect for analysis and proper design. The simulation of this phenomenon requires the application of high-fidelity numerical methods. In the current work, the fluid and structural equations both utilize the same multistep or multistage schemes for temporal advancement. This requires the structural equations to be recast in state-space form. The implicit time-marching schemes studied in this thesis are limited to the Backward Differentiation Formula (BDF) schemes, Modified Extended-BDF schemes, and a Singly-Diagonal Implicit Runge-Kutta (SDIRK) method. Verification and validation of temporal and spatial order of accuracy are performed using a one-dimensional entropy wave for the fluid dynamics solution algorithm. Several benchmark problems are studied in detail, and results are tabulated and compared. Benchmark examples include the Sod's shock tube problem, a moving cylinder piston configuration, and a fully coupled fluid-structure interaction problem in a mass-spring-damper system.

Degree

thesis:*
Grantor dc:publisher
University of Tennessee at Chattanooga

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Ghasemi, Amirehsan
Contributors dc:contributor
  • Newman, James C. III
  • Owino, Joseph; Sreenivas, Kidambi; Wu, Weidong
  • College of Engineering and Computer Science

Subjects

dc:subject × 3

Rights

dc:rights
Language dc:language
English, eng

Identifiers

dc:identifier.*
Repository record dc:identifier
https://scholar.utc.edu/theses/718
OAI identifier oai:identifier
oai:scholar.utc.edu:theses-1879

Chain of custody

source
Harvested from
University of Tennessee - Chattanooga
Base URL
scholar.utc.edu/do/oai/
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Ghasemi, Amirehsan. Numerical investigation of time-integration schemes applicable to fluid-structure interaction. University of Tennessee at Chattanooga, https://scholar.utc.edu/theses/718