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STRUCTURAL DEFLECTION'S IMPACT IN TURBINE STATOR WELL HEAT TRANSFER

机译:结构挠度对汽轮机定子传热的影响

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In the most evolved designs, it is common practice to expose engine components to main annulus air temperatures exceeding the thermal material limit in order to increase the overall performance and to minimise the engine specific fuel consumption (SFC). To prevent overheating of the materials and thus the reduction of the component life, an internal flow system is required to cool the critical engine parts and to protect them. This paper shows a practical application and extension of the methodology developed during the five year research programme MAGPI. Extensive use was made of FEA (solids) and CFD (fluid) modelling techniques to understand the thermo-mechanical behaviour of a dedicated turbine stator well cavity rig, due to the interaction of cooling air supply with the main annulus. Previous work based on the same rig showed difficulties in matching predictions to thermocouple measurements near the rim seal gap. In this investigation, two different types of turbine stator well geometries were analysed, where further use was made of existing measurements of hot running seal clearances in the rig. The structural deflections were applied to the existing models to evaluate the impact in flow interactions and heat transfer. Additionally to the already evaluated test cases without net ingestion, cases simulating engine deterioration with net ingestion were validated against the available test data, also taking into account cold and hot running seal clearances. 3D CFD simulations were conducted using the commercial solver FLUENT coupled to the in-house FEA tool SC03 to validate against available test data of the dedicated rig.
机译:在最先进的设计中,通常的做法是将发动机组件暴露于超过热材料极限的主要环空空气温度中,以提高整体性能并最大程度地降低发动机的特定燃料消耗(SFC)。为了防止材料过热,从而防止零件寿命减少,需要使用内部流动系统来冷却发动机的关键零件并加以保护。本文展示了在五年研究计划MAGPI中开发的方法的实际应用和扩展。由于冷却空气供应与主环形空间的相互作用,广泛使用了FEA(固体)和CFD(流体)建模技术来了解专用涡轮定子井腔钻机的热机械性能。基于相同钻机的先前工作表明,很难将预测与轮辋密封间隙附近的热电偶测量值相匹配。在这项研究中,分析了两种不同类型的涡轮定子孔的几何形状,其中进一步利用了钻机中热运行密封间隙的现有测量值。将结构挠度应用于现有模型,以评估流动相互作用和热传递的影响。除了已经评估的无净进气口的测试用例之外,还根据可用的测试数据验证了以净进气口模拟发动机劣化的情况,还考虑了冷,热运行密封间隙。使用与内部FEA工具SC03耦合的商用求解器FLUENT进行了3D CFD仿真,以针对专用钻机的可用测试数据进行验证。

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