首页> 外文会议>American Society of Mechanical Engineers(ASME) Turbo Expo vol.2; 20040614-17; Vienna(AT) >Multi-Fidelity Simulation of a Turbofan Engine with Results Zoomed into Mini-Maps for a Zero-D Cycle Simulation
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Multi-Fidelity Simulation of a Turbofan Engine with Results Zoomed into Mini-Maps for a Zero-D Cycle Simulation

机译:涡轮风扇发动机的多保真度仿真,其结果放大到用于零维循环仿真的迷你地图

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A Zero-D cycle simulation of the GE90-94B high bypass turbofan engine has been achieved utilizing mini-maps generated from a high-fidelity simulation. The simulation utilizes the Numerical Propulsion System Simulation (NPSS) thermodynamic cycle modeling system coupled to a high-fidelity full-engine model represented by a set of coupled 3D computational fluid dynamic (CFD) component models. Boundary conditions from the balanced, steady-state cycle model are used to define component boundary conditions in the full-engine model. Operating characteristics of the 3D component models are integrated into the cycle model via partial performance maps generated from the CFD flow solutions using one-dimensional meanline turbomachinery programs. This paper highlights the generation of the high-pressure compressor, booster, and fan partial performance maps, as well as turbine maps for the high pressure and low pressure turbine. These are actually "mini-maps" in the sense that they are developed only for a narrow operating range of the component. Results are compared between actual cycle data at a take-off condition and the comparable condition utilizing these mini-maps. The mini-maps are also presented with comparison to actual component data where possible.
机译:GE90-94B高旁通涡轮风扇发动机的零维循环仿真已通过利用由高保真仿真生成的迷你贴图实现。该仿真利用数值推进系统仿真(NPSS)热力循环建模系统,该系统耦合到由一组耦合的3D计算流体动力学(CFD)组件模型表示的高保真全引擎模型。平衡的稳态循环模型中的边界条件用于定义整个发动机模型中的组件边界条件。通过使用一维平均线涡轮机械程序从CFD流量解决方案生成的部分性能图,将3D组件模型的操作特征集成到循环模型中。本文重点介绍了高压压缩机,增压器和风扇的部分性能图以及高压和低压涡轮机的涡轮机图的生成。这些实际上是“微型地图”,因为它们仅针对组件的狭窄操作范围而开发。利用这些小型地图,可以比较起飞条件下的实际周期数据和可比较条件下的结果。在可能的情况下,还会显示迷你地图并与实际组件数据进行比较。

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