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Three-dimensional Numerical Simulation on Dispersion Process of Unsteady High Pressure Hydrogen Jet Flow

机译:非定常高压氢射流扩散过程的三维数值模拟

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The numerical simulations on the high-pressure hydrogen jet are performed by using the unsteady three-dimensional compressible Navier-Stokes equations with multi-species conservation equations. The present numerical results show that the highly expanded hydrogen free jet observes and the distance between the Mach disc and the nozzle exit agrees well with the empirical equation. The time-averaged H_2 concentration of the numerical simulations agrees well with the experimental data and the empirical equation. The unsteady feature in the present numerical simulation shows that the PDF of the numerical simulations does not agree with the Gaussian PDF because the jet flow is "potential core" flow at x = 60 mm. Although higher hydrogen concentration is observed at x = 120 mm, the PDF in the numerical simulations agrees well with the Gaussian PDF at x = 180 mm. The numerical simulation of ignition in hydrogen jet is performed to show that the calculated OH distribution becomes isotropic expansion in the initial stage; however, OH flows along the leeward direction.
机译:高压氢射流的数值模拟是通过使用具有多物种守恒方程的非定常三维可压缩Navier-Stokes方程进行的。目前的数值结果表明,观察到了高度膨胀的氢自由射流,并且马赫盘和喷嘴出口之间的距离与经验方程式吻合得很好。数值模拟的时均H_2浓度与实验数据和经验公式吻合得很好。当前数值模拟中的不稳定特征表明,数值模拟的PDF与高斯PDF不符,因为射流是x = 60 mm时的“潜在核心”流。尽管在x = 120 mm处观察到较高的氢浓度,但数值模拟中的PDF与x = 180 mm时的高斯PDF高度吻合。进行了氢射流点火的数值模拟,结果表明,在初始阶段,所计算出的OH分布变为各向同性膨胀。但是,OH沿下风方向流动。

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