首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >UNCERTAINTY ANALYSIS OF INFLOW CONDITIONS ON AN HPT GAS TURBINE NOZZLE: EFFECT ON PARTICLE DEPOSITION
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UNCERTAINTY ANALYSIS OF INFLOW CONDITIONS ON AN HPT GAS TURBINE NOZZLE: EFFECT ON PARTICLE DEPOSITION

机译:HPT燃气轮机喷嘴流入条件的不确定性分析:对粒子沉积的影响

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Gas turbines (GT) are often forced to operate in harsh environmental conditions. Therefore, the presence of particles in their flow-path is expected. With this regard, deposition is a problem that severely affects gas turbine operation. Components' lifetime and performance can dramatically vary as a consequence of this phenomenon. Unfortunately, the operating conditions of the machine can vary in a wide range, and they cannot be treated as deterministic. Their stochastic variations greatly affect the forecasting of life and performance of the components. In this work, the main parameters considered affected by the uncertainty are the circumferential hot core location and the turbulence level at the inlet of the domain. A stochastic analysis is used to predict the degradation of a high-pressure-turbine (HPT) nozzle due to particulate ingestion. The GT's component analyzed as a reference is the HPT nozzle of the Energy-Efficient Engine (E~3). The uncertainty quantification technique used is the probabilistic collocation method (PCM). This work shows the impact of the operating conditions uncertainties on the performance and lifetime reduction due to deposition. Sobol indices are used to identify the most important parameter and its contribution to life. The present analysis enables to build confidence intervals on the deposit profile and on the residual creep-life of the vane.
机译:燃气轮机(GT)通常被迫在恶劣的环境条件下运行。因此,预期在其流动路径中存在颗粒。通过这方面,沉积是严重影响燃气涡轮机操作的问题。由于这种现象,组件的寿命和性能可以显着变化。不幸的是,机器的操作条件可以在宽范围内变化,并且不能被视为确定性。随机变化极大地影响了对部件的生命和性能的预测。在这项工作中,所考虑受不确定性的主要参数是域的圆周热核心位置和域入口处的湍流水平。随机分析用于预测由于颗粒摄入而导致的高压涡轮机(HPT)喷嘴的降解。作为参考的GT的组分是节能发动机的HPT喷嘴(E〜3)。使用的不确定性量化技术是概率搭配方法(PCM)。这项工作显示了运行条件不确定性对由于沉积引起的性能和寿命的影响。 SOBOL指数用于识别最重要的参数及其对生命的贡献。本分析使得能够在沉积型材和叶片的残余蠕变 - 寿命上建立置信区间。

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