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Numerical Simulation for Transient Flow of Field of Water Jet Based on Euler Method

机译:基于欧拉法的水射流瞬态流动数值模拟

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It is hard to accurately predict the shape and the characteristic of jet because of the dynamic characteristic of water jet in the atmosphere. The Eulerian model was used to calculate the water jet numerical simulation of two-phase flow. The distribution of the velocity, pressure and the component of the nozzle flow field were obtained under the condition of the initial pressure of nozzle is 100 MPa and the outlet diameter of nozzle is 0.2 mm. The results show that fluid velocity increases rapidly in the nozzle contraction section and appears the isokinetic core area after leaving the nozzle; the fluid dynamic pressure rapid rises in the nozzle contraction section and keeps invariant at the isokinetic core area; the ratio of the contraction flow radius and the nozzle radius is 7:10.
机译:由于大气中的水射流的动态特性,难以准确地预测喷射的形状和特性。欧拉模型用于计算两相流的水射流数值模拟。在喷嘴初始压力的条件下获得喷嘴流场的速度,压力和部件的分布是100MPa,喷嘴的出口直径为0.2mm。结果表明,流体速度在喷嘴收缩部分中迅速增加,并在离开喷嘴后出现等内核心区域;喷嘴收缩部分的流体动力压力快速上升,并在等因素核心区域保持不变;收缩流半径和喷嘴半径的比率为7:10。

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