The Peculiarities of Applying CAD/CAE Systems for the Primary Combustion Chamber Flame Tube Cycle Life Prolongation of the Tactical Military Aircraft Afterburning Turbofan Jet Engine

S. Pashchenko, Oleksandra Kharchenko, A. Shulhin, Yevheniy Chemerys
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引用次数: 1

Abstract

Abstract In this article, the computational simulation of the workflow in the primary combustion chamber flame tube of the afterburning turbofan jet engine (ATJE) on the tactical military aircraft was carried out. The geometric model of a flame tube was created and adapted to perform the interrelated calculation of the thermal and stress-strain behaviour of the walls of the flame tube influenced by the operational loads during the computational simulation of the workflow. Quantitative and qualitative analysis of the simulation results was conducted, and the connection between the peculiarities of the workflow and the characteristic damage of the flame tubes, detected during the operation, was established. The possibility of using modern CAD/CAE systems to solve the scientific tasks towards maximizing the cycle life potential of the main and primarily important components of the ATJE on the assessment basis of their damage exhaustion degree was determined.
应用CAD/CAE系统延长战术军用飞机加力涡扇喷气发动机主燃烧室火焰管循环寿命的特点
本文对某型战术军用飞机加力涡扇喷气发动机(ATJE)主燃烧室火焰管工作流程进行了计算仿真。建立了火焰管的几何模型,并对其进行了调整,以便在工作流程的计算模拟过程中,对火焰管壁面受工作载荷影响的热和应力-应变行为进行相关计算。对仿真结果进行了定量和定性分析,建立了工作流程的特殊性与运行中检测到的火焰管特征损伤之间的联系。确定了利用现代CAD/CAE系统解决基于损伤衰竭程度评估的ATJE主要和次要重要部件循环寿命潜力最大化的科学任务的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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