Simulation and Experimental Analysis of the Temperature Field of Jet Flow of Aircraft Based on CFD Theory

As a key indicator of airport concrete pavement, the durability of concrete is seriously affected by the jet flow generated by aircraft engines. In order to clarify the temperature field distribution of aircraft jet flow acting on the pavement surface, this paper obtained the temperature field distr...

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Main Authors: Zhenglei Chen, Wantong Cai, Liangcai Cai, Guoping Cen, Haifu Wang
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9040576/
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author Zhenglei Chen
Wantong Cai
Liangcai Cai
Guoping Cen
Haifu Wang
author_facet Zhenglei Chen
Wantong Cai
Liangcai Cai
Guoping Cen
Haifu Wang
author_sort Zhenglei Chen
collection DOAJ
description As a key indicator of airport concrete pavement, the durability of concrete is seriously affected by the jet flow generated by aircraft engines. In order to clarify the temperature field distribution of aircraft jet flow acting on the pavement surface, this paper obtained the temperature field distribution of pavement surface under the action of three types of aircraft jet flow by combining field test experiment and CFD simulation. CFD simulation adopts the shear stress transfer model which is often used in engineering problem calculation, and the field test experiment adopts the method of embedding temperature sensor in precast concrete slab. The paired two sample t test was used to test the difference between the experimental results and the simulation results. The experimental results show that the pavement temperature increases first and then decreases with the distance from the engine, and reaches the maximum at the intersection point of the jet flow and the airport pavement. The simulation curve is in good agreement with the experimental results. When the level of confidence is 0.01, there is no significant difference between the simulation value and the experimental value, which verifies the accuracy and feasibility of the simulation calculation model. The simulation results of the three aircraft showed that when type C aircraft is in the state of full afterforce, the maximum pavement temperature is the highest which is 22m away from the nozzle, and can reach 533.81K. The current work provides a new method for measuring the temperature distribution of airfield pavement under the action of jet flow and a basis for the application of fiber concrete in airfield pavement.
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spelling doaj.art-d4f94d13756c47c7b0b66c1dd8f15bb42022-12-21T20:19:53ZengIEEEIEEE Access2169-35362020-01-018558815589210.1109/ACCESS.2020.29817709040576Simulation and Experimental Analysis of the Temperature Field of Jet Flow of Aircraft Based on CFD TheoryZhenglei Chen0https://orcid.org/0000-0003-0605-4408Wantong Cai1https://orcid.org/0000-0001-5679-0249Liangcai Cai2https://orcid.org/0000-0001-9036-696XGuoping Cen3https://orcid.org/0000-0001-8110-9427Haifu Wang4https://orcid.org/0000-0002-8213-0938Department of Airport Construction Engineering, Air Force Engineering University, Xi’an, ChinaDepartment of Airport Construction Engineering, Air Force Engineering University, Xi’an, ChinaDepartment of Airport Construction Engineering, Air Force Engineering University, Xi’an, ChinaDepartment of Airport Construction Engineering, Air Force Engineering University, Xi’an, ChinaDepartment of Airport Construction Engineering, Air Force Engineering University, Xi’an, ChinaAs a key indicator of airport concrete pavement, the durability of concrete is seriously affected by the jet flow generated by aircraft engines. In order to clarify the temperature field distribution of aircraft jet flow acting on the pavement surface, this paper obtained the temperature field distribution of pavement surface under the action of three types of aircraft jet flow by combining field test experiment and CFD simulation. CFD simulation adopts the shear stress transfer model which is often used in engineering problem calculation, and the field test experiment adopts the method of embedding temperature sensor in precast concrete slab. The paired two sample t test was used to test the difference between the experimental results and the simulation results. The experimental results show that the pavement temperature increases first and then decreases with the distance from the engine, and reaches the maximum at the intersection point of the jet flow and the airport pavement. The simulation curve is in good agreement with the experimental results. When the level of confidence is 0.01, there is no significant difference between the simulation value and the experimental value, which verifies the accuracy and feasibility of the simulation calculation model. The simulation results of the three aircraft showed that when type C aircraft is in the state of full afterforce, the maximum pavement temperature is the highest which is 22m away from the nozzle, and can reach 533.81K. The current work provides a new method for measuring the temperature distribution of airfield pavement under the action of jet flow and a basis for the application of fiber concrete in airfield pavement.https://ieeexplore.ieee.org/document/9040576/Jet flowpavementCFDtest experimenttemperature field distribution
spellingShingle Zhenglei Chen
Wantong Cai
Liangcai Cai
Guoping Cen
Haifu Wang
Simulation and Experimental Analysis of the Temperature Field of Jet Flow of Aircraft Based on CFD Theory
IEEE Access
Jet flow
pavement
CFD
test experiment
temperature field distribution
title Simulation and Experimental Analysis of the Temperature Field of Jet Flow of Aircraft Based on CFD Theory
title_full Simulation and Experimental Analysis of the Temperature Field of Jet Flow of Aircraft Based on CFD Theory
title_fullStr Simulation and Experimental Analysis of the Temperature Field of Jet Flow of Aircraft Based on CFD Theory
title_full_unstemmed Simulation and Experimental Analysis of the Temperature Field of Jet Flow of Aircraft Based on CFD Theory
title_short Simulation and Experimental Analysis of the Temperature Field of Jet Flow of Aircraft Based on CFD Theory
title_sort simulation and experimental analysis of the temperature field of jet flow of aircraft based on cfd theory
topic Jet flow
pavement
CFD
test experiment
temperature field distribution
url https://ieeexplore.ieee.org/document/9040576/
work_keys_str_mv AT zhengleichen simulationandexperimentalanalysisofthetemperaturefieldofjetflowofaircraftbasedoncfdtheory
AT wantongcai simulationandexperimentalanalysisofthetemperaturefieldofjetflowofaircraftbasedoncfdtheory
AT liangcaicai simulationandexperimentalanalysisofthetemperaturefieldofjetflowofaircraftbasedoncfdtheory
AT guopingcen simulationandexperimentalanalysisofthetemperaturefieldofjetflowofaircraftbasedoncfdtheory
AT haifuwang simulationandexperimentalanalysisofthetemperaturefieldofjetflowofaircraftbasedoncfdtheory