Effects of a tiny particle trapped in a spherical cavity on fluid structure, contact density, and capillary condensation (A DFT Approach)

2021 ◽  
pp. 118314
Author(s):  
Ezat Keshavarzi ◽  
Abbas Helmi ◽  
Samaneh Safdaar
Author(s):  
Michael Paidoussis ◽  
Stuart Price ◽  
Emmanuel de Langre

Author(s):  
Neander Berto Mendes ◽  
Lineu José Pedroso ◽  
Paulo Marcelo Vieira Ribeiro

ABSTRACT: This work presents the dynamic response of a lock subjected to the horizontal S0E component of the El Centro earthquake for empty and completely filled water chamber cases, by coupled fluid-structure analysis. Initially, the lock was studied by approximation, considering it similar to the case of a double piston coupled to a two-dimensional acoustic cavity (tank), representing a simplified analytical model of the fluid-structure problem. This analytical formulation can be compared with numerical results, in order to qualify the responses of the ultimate problem to be investigated. In all the analyses performed, modeling and numerical simulations were done using the finite element method (FEM), supported by the commercial software ANSYS.


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