Numerical simulation and experimental validation of aircraft ground deicing model

Author:

Chen Bin12,Wang Li-wen12,Gong Rui3,Wang Shou-kun3

Affiliation:

1. School of Mechanical Engineering, Tianjin University, Tianjin, P.R. China

2. Ground Support Equipments Research Base, Civil Aviation University of China, Tianjin, P.R. China

3. Automation Department, Beijing Institute of Technology, Beijing, P.R. China

Abstract

Aircraft ground deicing plays an important role of guaranteeing the aircraft safety. In practice, most airports generally use as many deicing fluids as possible to remove the ice, which causes the waste of the deicing fluids and the pollution of the environment. Therefore, the model of aircraft ground deicing should be built to establish the foundation for the subsequent research, such as the optimization of the deicing fluid consumption. In this article, the heat balance of the deicing process is depicted, and the dynamic model of the deicing process is provided based on the analysis of the deicing mechanism. In the dynamic model, the surface temperature of the deicing fluids and the ice thickness are regarded as the state parameters, while the fluid flow rate, the initial temperature, and the injection time of the deicing fluids are treated as control parameters. Ignoring the heat exchange between the deicing fluids and the environment, the simplified model is obtained. The rationality of the simplified model is verified by the numerical simulation and the impacts of the flow rate, the initial temperature and the injection time on the deicing process are investigated. To verify the model, the semi-physical experiment system is established, consisting of the low-constant temperature test chamber, the ice simulation system, the deicing fluid heating and spraying system, the simulated wing, the test sensors, and the computer measure and control system. The actual test data verify the validity of the dynamic model and the accuracy of the simulation analysis.

Publisher

SAGE Publications

Subject

Mechanical Engineering

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