Related Experiment Video
Updated: Jun 6, 2025

Author Spotlight: Simulation and Analysis of the Temperature Rise of Ring Main Unit Equipment
Published on: July 5, 2024
Numerical Simulation Study on Predicting the Critical Icing Conditions of Aircraft Pitot Tubes
Qixi Chen1, Lifen Zhang1, Chengxin Zhou1
1School of Power and Energy, Northwestern Polytechnical University, Xi'an 710072, China.
Abstract:
Aircraft pitot tubes are sophisticated instruments designed to detect airflow pressure and relay this information to onboard computers and flight instruments, enabling the calculation of airspeed through the measurement of total-static pressure differences. The formation of ice on aircraft pitot tubes can compromise the acquisition of airspeed data, misguide pilots, and potentially cause catastrophic flight control failures. This article introduces a predictive methodology for identifying critical conditions that lead to icing on aircraft pitot tubes. Utilizing numerical simulation techniques, the methodology calculates the critical conditions for pitot tube icing across cruise flight regimes and atmospheric conditions, resulting in the generation of a critical condition envelope surface. By comparing these critical conditions against actual sensor data, a predictive danger zone can be established, offering an advanced warning system to ensure flight safety.
Related Concept Videos
Determination of Pi Terms
The theorem indicates that...
The Buckingham Pi Theorem
Static, Stagnation, Dynamic and Total Pressure
Typical Model Studies
Single Pipe Systems
In a Type I problem, fluid properties (density and viscosity), pipe characteristics (including diameter, length, and surface roughness), and the flow rate or average velocity are...

