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Robust model of a transient wind tunnel for off-design aerothermal testing of turbomachinery

机译:涡轮机非设计空气热测试的瞬态风洞的鲁棒模型

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摘要

Short duration wind tunnels offer an economical approach to study the aero-thermal operation of propulsion components, while reproducing temperature ratios, Reynolds and Mach numbers of the actual engine conditions. The present paper aims at modeling with high fidelity the von Karman Institute compression tube facility. This wind tunnel was simulated using the EcosimPro suite to characterize the behavior of each subcomponent during the whole test envelope, including the turbine map at off-design. The numerical predictions were then assessed through the comparison with experimental data. The model was proven to be an effective tool to accurately evaluate all the operating regimes that a research turbine experienced during the experimental sequence. Consequently, the present model allows exploiting the complete test run duration to obtain unique experimental data from the turbomachinery operating at far off-design conditions. The capability to experimentally test components at off-design is fundamental to understand the flow physics of any gas turbine engine operating at extreme conditions and to characterize the transient performances of fluid-machinery in high-speed propulsion concepts. However, technical dissemination on these aspects is scarce. (C) 2015 Elsevier Ltd. All rights reserved.
机译:短时风洞提供了一种经济的方法来研究推进组件的空气热运行,同时再现了实际发动机状况的温度比,雷诺数和马赫数。本文旨在以高保真度对冯·卡曼研究所压缩管设施进行建模。使用EcosimPro套件对该风洞进行了仿真,以表征整个测试范围内每个子组件的行为,包括非设计阶段的涡轮机图。然后通过与实验数据的比较来评估数值预测。该模型被证明是一种有效的工具,可以准确地评估研究涡轮在实验序列中经历的所有运行状况。因此,本模型允许利用完整的测试运行时间来从在远远超出设计条件的情况下运行的涡轮机械获得独特的实验数据。能够在非设计状态下对组件进行实验测试的能力对于了解任何在极端条件下运行的燃气涡轮发动机的流动物理特性以及表征高速推进概念下流体机械的瞬态性能至关重要。但是,在这些方面的技术传播很少。 (C)2015 Elsevier Ltd.保留所有权利。

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