A Stable Fluid-Structure-Interaction Algorithm: Application to Industrial Problems

Author:

Abouri D.1,Parry A.2,Hamdouni A.3,Longatte E.4

Affiliation:

1. CD-adapco, Paris Office, 31 rue Delizy, 93698 Pantin Cedex, France

2. Schlumberger Riboud Product Center, 1 rue Henri Becquerel, 92140 Clamart, France

3. University of La Rochelle, LEPTAB, Avenue Michel Crépeau, 17042 La Rochelle, France

4. Electricité de France, Research and Development Division, 6 Quai Watier, 78400 Chatou, France

Abstract

Fluid-structure interactions occur in a wide range of industrial applications, including vibration of pipe-work, flow meters, and positive displacement systems as well as many flow control devices. This paper outlines computational methods for calculating the dynamic interaction between moving parts and the flow in a flow-meter system. Coupling of phenomena is allowed without need for access to the source codes and is thus suitable for use with commercially available codes. Two methods are presented: one with an explicit integration of the equations of motion of the mechanism and the other, with implicit integration. Both methods rely on a Navier-Stokes equation solver for the fluid flow. The more computationally expensive, implicit method is recommended for mathematically stiff mechanisms such as piston movement. Industrial-application examples shown are for positive displacement machines, axial turbines, and steam-generator tube-bundle vibrations. The advances in mesh technology, including deforming meshes with nonconformal sliding interfaces, open up this new field of application of computational fluid dynamics and mechanical analysis in flow meter design.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference29 articles.

1. BS-7405 Selection and Application of Flowmeters for the Measurement of Fluid Flow in Closed Conduits

2. Turbine Forced Response Prediction Using an Integrated Non-Linear Analysis;Sayma

3. A Monolithical Fluid-Structure Interaction Algorithm Applied to the Piston Problem;Blom;Comput. Methods Appl. Mech. Eng.

4. A Time Dependent Two Space Dimensional Coupled Eulerian Lagrangian Code;Noh

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