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Numerical simulation and transonic wind-tunnel test for elastic thin-shell structure considering fluid–structure interaction 被引量:1
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作者 Yan Yunju Xi Zhuyou Zhang Shanzhi 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2015年第1期141-151,共11页
Aerodynamic force can lead to the strong structural vibration of flying aircraft at a high speed. This harmful vibration can bring damage or failure to the electronic equipment fixed in aircraft. It is necessary to pr... Aerodynamic force can lead to the strong structural vibration of flying aircraft at a high speed. This harmful vibration can bring damage or failure to the electronic equipment fixed in aircraft. It is necessary to predict the structural dynamic response in the design course. This paper presents a new numerical algorithm and scheme to solve the structural dynamics responses when considering fluid–structure interaction(FSI). Numerical simulation for a free-flying structural model in transonic speed is completed. Results show that the small elastic deformation of the structure can greatly affect the FSI. The FSI vibration tests are carried out in a transonic speed windtunnel for checking numerical theory and algorithms, and the wind-tunnel test results well accord with that of the numerical simulation. This indicates that the presented numerical method can be applied to predicting the structural dynamics responses when containing the FSI. 展开更多
关键词 considering tunnel checking aircraft meshes flying completed rigid acceleration harmful
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