Experimental and Numerical Ice Accretion Shapes on a Pitot Probe Model

Author:

Forsyth Peter,Szilder Krzysztof

Abstract

<div class="section abstract"><div class="htmlview paragraph">This paper presents experimental ice accretion measurements alongside numerical simulations, using the National Research Council Canada’s morphogenetic approach, on a pitot probe geometry at varying icing conditions. In previous publications, the morphogenetic approach for the numerical simulation of ice accretion has shown promise for pitot probe applications, potentially reducing the number of wind tunnel entries, and therefore cost, of the development cycle. An experimental campaign has been completed, providing ice shapes on a representative pitot probe model. Comparison of the experimental and numerical ice shapes indicate that the morphogenetic model is able to generate the complex ice shapes seen experimentally for real-world icing conditions on a fully 3D geometry, closely matching both ice features and total ice thicknesses.</div></div>

Publisher

SAE International

Reference13 articles.

1. Bureau d’Enquêtes et d’Analyses 2012

2. SAE 2020

3. Szilder , K. and Forsyth , P. Numerical Simulation of Ice Accretion on a Pitot Tube International Council of the Aeronautical Sciences (ICAS) Stockholm, Sweden 2022

4. ANSYS Inc. ANSYS ICEM CFD Theory Guide 2021

5. ANSYS Inc. ANSYS Fluent Theory Guide 2023

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