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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Time Averaged Net Heat Flux Reduction for Unsteady Film Cooling
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Time Averaged Net Heat Flux Reduction for Unsteady Film Cooling

机译:时间平均净热通量减少,用于非稳态薄膜冷却

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Film cooling flow for reduction in heat flux to a gas turbine engine hot gas path component is generally assumed to be steady. However, unsteady film cooling may occur due to naturally occurring flow unsteadiness or may be induced intentionally. Analysis of pulsed or otherwise unsteady film coolant flow necessitates a reformulation of the existing steady-state technique for net heat flux reduction (NHFR). We show that addition of a cross-coupled term to the traditional steady form of the NHFR equation with time averaged quantities accounts for the unsteady effects. In the experimental technique to determine the time averaged NHFR, we present a new parameter y to capture the combined influence of the average adiabatic effectiveness and the coupling between η' and h'. Measurement of y is shown to be straightforward but requiring careful considerations beyond those required to measure η' with steady film cooling.
机译:通常假定用于减少到燃气涡轮发动机热气路径部件的热通量的薄膜冷却流是稳定的。但是,由于自然产生的流动不稳定或可能有意引起不稳定的薄膜冷却。对脉冲式或非稳态薄膜冷却剂流量的分析需要重新构造现有的稳态技术,以减少净热通量(NHFR)。我们表明,将交叉耦合项添加到具有时间平均量的NHFR方程的传统稳定形式中,可以解决不稳定问题。在确定时间平均NHFR的实验技术中,我们提出了一个新的参数y,以捕获平均绝热效率和η'和h'之间的耦合的综合影响。 y的测量被证明是简单的,但是除了在稳定的薄膜冷却下测量η'所需要的考虑之外,还需要仔细考虑。

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