首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >ADVANCED STATISTICAL ANALYSIS ESTIMATING THE HEAT LOAD ISSUED BY HOT STREAKS AND TURBULENCE ON A HIGH-PRESSURE VANE IN THE CONTEXT OF ADIABATIC LARGE EDDY SIMULATIONS
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ADVANCED STATISTICAL ANALYSIS ESTIMATING THE HEAT LOAD ISSUED BY HOT STREAKS AND TURBULENCE ON A HIGH-PRESSURE VANE IN THE CONTEXT OF ADIABATIC LARGE EDDY SIMULATIONS

机译:绝热大涡模拟下高压叶片热条纹和湍流热负荷的高级统计分析。

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The next generation of lean combustion engines promises to further decrease environmental impact and cost of air traffic. Compared to the currently employed Rich Quench Lean (RQL) concept, the flow field at the exit of a lean combustion chamber is characterized by stronger variations of velocity as well as temperature and higher levels of turbulence. These specific features may have a substantial impact on the aerothermal performance of the high-pressure turbine and thereby on the efficiency of the entire engine. Indeed, high levels of turbulence in the Nozzle Guide Vane (NGV) passages locally impact the heat flux and result in globally over dimensioned cooling systems of the NGV. In this study, Large Eddy Simulations (LES) are performed on an engine representative lean combustion simulator geometry to investigate the evolution of turbulence and the migration of hot streaks through the high-pressure turbine. To investigate the impact of non-uniform stator inlet conditions on the estimated thermal stress on the NGVs, adiabatic LES predictions of the lean combustor NGV FACTOR configuration are analyzed through the use of high statistical moments of temperature and two point statistics for the assessment of turbulent quantities. Relations between temperature statistical features and turbulence are evidenced on planes through the NGV passage pointing to the role of mixing and large scale features along with marked wall temperatures that locally can largely differ from obtained mean values.
机译:下一代稀薄内燃机有望进一步降低环境影响和航空运输成本。与当前采用的浓淬火精益(RQL)概念相比,稀薄燃烧室出口处的流场的特征在于速度,温度变化更大,湍流程度更高。这些特定特征可能会对高压涡轮的空气热性能产生重大影响,从而对整个发动机的效率产生重大影响。实际上,喷嘴导向叶片(NGV)通道中的高水平湍流会局部影响热通量,并导致NGV的冷却系统整体尺寸过大。在这项研究中,对具有代表性的稀薄燃烧模拟器的几何形状进行了大涡模拟(LES),以研究湍流的演变以及热条纹通过高压涡轮的迁移。为了研究不均匀的定子进气条件对估计的热应力对NGV的影响,通过使用高温度统计矩和两点统计来评估湍流,分析了稀薄燃烧室NGV FACTOR配置的绝热LES预测。数量。通过NGV通道在平面上证明了温度统计特征与湍流之间的关系,指出了混合和大规模特征的作用以及局部明显不同于获得平均值的显着壁温。

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