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Numerical Simulation Study on the Flow Field Out of a Submerged Abrasive Water Jet Nozzle

机译:浸没式水力喷射喷嘴流场的数值模拟研究

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In order to optimize the parameters of pre-mixed abrasive water jet cutting technology, make it more efficient in the coal mine gas environment and solve the problem of hard coal and the difficulty of rock drilling, FLUENT software was used to get the isothermal, incompressible, steady flow field out of a submerged abrasive water jet nozzle through numerical simulation, with different particle sizes and different confining pressures under submerged conditions. The results show that, under submerged conditions, the maximum velocity of the abrasive particle outside the pre-mixed abrasive water jet nozzle is about 6 mm far away from the nozzle; the abrasive particle diameter has little influence on the velocity outside the nozzle. The external confining pressure of the nozzle has an important influence on the velocity, which is that the jet velocity of the same position decreases with the increase of confining pressure and the relationship between the confining pressure of different distance from the nozzle exit and the abrasive velocity is exponential function. The results of the simulation laid the foundation for optimizing the nozzle structure, improving efficiency and developing the abrasive water jet nozzle.
机译:为了优化预混合磨料水射流切割技术的参数,使其在煤矿瓦斯环境中更有效,解决硬煤问题和凿岩困难,采用FLUENT软件获得了等温,不可压缩的数据。通过数值模拟从浸没式喷水嘴中获得稳定的流场,并在浸没条件下具有不同的粒径和不同的围压。结果表明,在浸没条件下,预混合磨料喷水嘴外的磨料颗粒的最大速度距离喷头约6mm。磨料粒径对喷嘴外速度几乎没有影响。喷嘴的外部约束压力对速度有重要影响,即相同位置的射流速度随着约束压力的增加而降低,并且距喷嘴出口不同距离的约束压力与磨料速度之间的关系是指数函数。仿真结果为优化喷嘴结构,提高效率和开发研磨水射流喷嘴奠定了基础。

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