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Proceedings of the 6th Chinese Natio...
~
Chinese National Congress on Thermal Stresses (2025 :)
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Proceedings of the 6th Chinese National Congress on Thermal Stresses = NCTS 2025, 18-20 April, Xi'an, China /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Proceedings of the 6th Chinese National Congress on Thermal Stresses/ edited by Yu'e Ma ... [et al.].
Reminder of title:
NCTS 2025, 18-20 April, Xi'an, China /
remainder title:
NCTS 2025
other author:
Ma, Yu'e.
corporate name:
Chinese National Congress on Thermal Stresses
Published:
Singapore :Springer Nature Singapore : : 2025.,
Description:
xvii, 311 p. :ill., digital ;24 cm.
[NT 15003449]:
Aerothermal-Structural Coupling Analysis of 3D Multilayered Thermal Protection Structure -- Analysis of the Effect of Variable Cross-Section Wicking Cores -- Thermomechanical Analysis of a Deformable Transpiration Cooling Structure.
Contained By:
Springer Nature eBook
Subject:
Thermal stresses - Congresses. -
Online resource:
https://doi.org/10.1007/978-981-95-2632-1
ISBN:
9789819526321
Proceedings of the 6th Chinese National Congress on Thermal Stresses = NCTS 2025, 18-20 April, Xi'an, China /
Proceedings of the 6th Chinese National Congress on Thermal Stresses
NCTS 2025, 18-20 April, Xi'an, China /[electronic resource] :NCTS 2025edited by Yu'e Ma ... [et al.]. - Singapore :Springer Nature Singapore :2025. - xvii, 311 p. :ill., digital ;24 cm. - Springer proceedings in physics,v. 3261867-4941 ;. - Springer proceedings in physics ;v. 326..
Aerothermal-Structural Coupling Analysis of 3D Multilayered Thermal Protection Structure -- Analysis of the Effect of Variable Cross-Section Wicking Cores -- Thermomechanical Analysis of a Deformable Transpiration Cooling Structure.
This book presents selected papers from the 6th China National Congress on Thermal Stress. The Congress was hosted by the Chinese Society of Theoretical and Applied Mechanics and Northwestern Polytechnical University and held on 18~20 April, 2025 in Xi'an, China. The high-speed flight technology of aerospace vehicles will significantly enhance humanity's capabilities to explore and utilize outer space. The new generation of hypersonic vehicles is evolving towards higher altitudes, greater speeds, and longer endurance. High energy density applications within the cabin are becoming more common. Combined with severe aerodynamic heating and substantial waste heat from engine combustion, these vehicles face a much more severe thermal environment. Meanwhile, there is a strong coupling effect between the thermal response of the internal structure of the vehicle and the aerodynamic heating phenomenon of the external flow field, with distinct characteristics of non-steady-state, non-linearity, and multi-scale behaviour. The coupling mechanism still requires continuous exploration. In addition, railway system is continuously developing towards higher speeds and heavier loads, bringing about frictional heat issues. Moreover, thermal fatigue problems in nuclear power equipment, steam turbine rotors, and pipelines also need to be addressed urgently.
ISBN: 9789819526321
Standard No.: 10.1007/978-981-95-2632-1doiSubjects--Topical Terms:
3805048
Thermal stresses
--Congresses.
LC Class. No.: TA418.58
Dewey Class. No.: 620.1121
Proceedings of the 6th Chinese National Congress on Thermal Stresses = NCTS 2025, 18-20 April, Xi'an, China /
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This book presents selected papers from the 6th China National Congress on Thermal Stress. The Congress was hosted by the Chinese Society of Theoretical and Applied Mechanics and Northwestern Polytechnical University and held on 18~20 April, 2025 in Xi'an, China. The high-speed flight technology of aerospace vehicles will significantly enhance humanity's capabilities to explore and utilize outer space. The new generation of hypersonic vehicles is evolving towards higher altitudes, greater speeds, and longer endurance. High energy density applications within the cabin are becoming more common. Combined with severe aerodynamic heating and substantial waste heat from engine combustion, these vehicles face a much more severe thermal environment. Meanwhile, there is a strong coupling effect between the thermal response of the internal structure of the vehicle and the aerodynamic heating phenomenon of the external flow field, with distinct characteristics of non-steady-state, non-linearity, and multi-scale behaviour. The coupling mechanism still requires continuous exploration. In addition, railway system is continuously developing towards higher speeds and heavier loads, bringing about frictional heat issues. Moreover, thermal fatigue problems in nuclear power equipment, steam turbine rotors, and pipelines also need to be addressed urgently.
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