@inproceedings{aad071c85ed649e3b3870a269feced98,
title = "Numerical Modelling of Air Distribution in the Natatorium Supported by the Experiment",
abstract = "design of air distribution in ventilated natatoriums can be supported by numerical prediction of air, heat, and moisture flow by the CFD method. To make sure that the numerical model predicts correctly the flow phenomena occurring in such objects it is necessary to carry out the experimental validation of calculation results. The aim of presented research was to evaluate the impact of the discretization grid refinement on the numerical calculations of the air parameters distribution in the actual school natatorium. It was performed with the use of CFD software - Ansys CFX, and was supported by the experiment. Three-dimensional numerical model of the object was prepared, for which boundary conditions were obtained on the basis of the measurements in the facility. Numerical results of speed, temperature and specific humidity for the 3 variants of discretization grids, differing in the mesh refinement, were compared. Numerical results of speed, temperature and specific humidity in the occupied zone were validated by comparing with the results of the measurements.",
keywords = "Air distribution, Discretization grid, Experimental validation, Natatorium, Numerical modelling CFD, Ventilation",
author = "Piotr Ciuman and Barbara Lipska and Grzegorz Burda",
note = "Publisher Copyright: {\textcopyright} 2015, Avestia Publishing. All rights reserved.; World Congress on Mechanical, Chemical, and Material Engineering, MCM 2015 ; Conference date: 20-07-2015 Through 21-07-2015",
year = "2015",
language = "English",
isbn = "9781927877173",
series = "Proceedings of the World Congress on Mechanical, Chemical, and Material Engineering",
publisher = "Avestia Publishing",
editor = "Jamal Chaouki and Yuyuan Zhao",
booktitle = "Proceedings of the World Congress on Mechanical, Chemical, and Material Engineering, MCM 2015",
address = "Canada",
}