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首页> 外文期刊>Advances in Mechanical Engineering >Numerical Thermodynamic Analysis of Two-Phase Solid-Liquid Abrasive Flow Polishing in U-Type Tube
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Numerical Thermodynamic Analysis of Two-Phase Solid-Liquid Abrasive Flow Polishing in U-Type Tube

机译:U型管中两相固液磨料流抛光的数值热力学分析

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摘要

U-type tubes are widely used in military and civilian fields and the quality of the internal surface of their channel often determines the merits and performance of a machine in which they are incorporated. Abrasive flow polishing is an effective method for improving the channel surface quality of a U-type tube. Using the results of a numerical analysis of the thermodynamic energy balance equation of a two-phase solid-liquid flow, we carried out numerical simulations of the heat transfer and surface processing characteristics of a two-phase solid-liquid abrasive flow polishing of a U-type tube. The distribution cloud of the changes in the inlet turbulent kinetic energy, turbulence intensity, turbulent viscosity, and dynamic pressure near the wall of the tube were obtained. The relationships between the temperature and the turbulent kinetic energy, between the turbulent kinetic energy and the velocity, and between the temperature and the processing velocity were also determined to develop a theoretical basis for controlling the quality of abrasive flow polishing.
机译:U型管广泛用于军事和民用领域,其通道内表面的质量通常决定着其所装机器的优点和性能。磨料流抛光是提高U型管通道表面质量的有效方法。利用两相固液流热力学能量平衡方程的数值分析结果,对U型两相固液磨料流抛光的传热和表面处理特性进行了数值模拟。型管。得到了入口湍流动能,湍流强度,湍流粘度和管壁附近动压变化的分布云。还确定了温度与湍动能之间,湍动能与速度之间以及温度与加工速度之间的关系,从而为控制磨料流抛光的质量奠定了理论基础。

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