Turbulent Heat Transfer in a Forced and Unforced Two Dimensional Air Jet Impinging on an Isoflux Surface

Edmund Singer, A. Ortega
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引用次数: 1

Abstract

Mean heat transfer and flow characteristics of a two-dimensional air jet impinging on a uniform heat flux surface were investigated. Measurements were made in a steady unforced jet, and in a jet with externally introduced forcing. The jet issued from a 24:1 aspect ratio rectangular nozzle. The heat transfer characteristics are parameterized by jet Reynolds number based on the hydraulic diameter and on the nozzle-to-plate spacing. Flow conditions (mean, turbulent fluctuations and power spectra) exiting the jet were measured and used to interpret their influences on the stagnation point heat transfer. A comparison of an unforced impinging jet to a forced impinging jet showed enhancements in the heat transfer rate of up to 57% with forcing.
碰撞在等流面上的受迫和非受迫二维气流的紊流传热
研究了二维空气射流撞击均匀热流面的传热特性和流动特性。测量是在一个稳定的无强迫射流中进行的,在一个有外部引入力的射流中进行的。喷射从一个长径比为24:1的矩形喷嘴喷出。传热特性由基于水力直径和喷嘴与板间距的射流雷诺数参数化。测量出射流的流动条件(平均、湍流波动和功率谱),并用来解释它们对驻点传热的影响。非强制撞击射流与强制撞击射流的比较表明,强制撞击射流的传热率提高了57%。
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