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Numerical Simulation of the Flow in Two-Phase Supersonic Underexpanded Gas-Particle Jets Exhausting into a Slotted Submerged Space

机译:两相超音速欠膨胀气体粒子射流排入开槽淹没空间的流动数值模拟

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A simplified 2D model for calculating two-phase gas-particle flows in a slot space has been developed. The model can be used for fast calculation and estimation of supersonic-flow parameters in the slot space. Using this model, a numerical simulation of the flow in two-phase gas-particle supersonic jets exhausting into a submerged slot space bounded by two parallel disks was performed. The presence of particles led to the splitting of the gas jet into an internal two-phase jet and an external gas jet. In the present study, we investigated the structure of a two-phase jet as dependent on the spacing between the disks for conditions of cold spraying. A new effect was found in the flow at a small spacing between the disks (of the order of 0.2 mm) and a high-velocity internal two-phase gas-particle jet was formed. The distribution of the concentration of particles in the particle jet proved to be essentially non-uniform, with a caustic formed at the upper jet boundary.
机译:已经开发了一种简化的二维模型,用于计算槽空间中的两相气体粒子流动。该模型可用于快速计算和估计槽空间中的超音速流动参数。利用该模型,对两相气体粒子超音速射流进入由两个平行圆盘包围的水下槽空间的流动进行了数值模拟。颗粒的存在导致气体射流分裂为内部两相射流和外部气体射流。在本研究中,我们研究了两相射流的结构与冷喷涂条件下圆盘之间的间距有关。在圆盘之间的小间距(大约0.2毫米)的流动中发现了一种新的效应,并形成了高速内部两相气体粒子射流。粒子射流中粒子浓度的分布被证明是基本不均匀的,在上射流边界处形成了苛性碱。

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