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细长管内真空压力分布的算法研究和工程实践

Calculation Algorithm Research and Engineering Practice of Vacuum Pressure Distribution in the Slender Tube

  • 摘要: 本研究针对细长真空管在实际工况中存在的远端压力计算复杂、耗时较长以及管内压力难以测量等技术难题,采用理论推导、数值模拟与实验测试相结合的方法,系统研究了细长真空管内的压力分布规律。结果表明:细长管两端的压差与管路的几何参数相关;且细长真空管内的压力呈现典型的抛物线分布特征,其中泵口侧压力梯度变化最为显著;通过缩短管道长度或增大管径可有效优化管内压力分布。本研究成果为真空系统的优化设计提供了理论依据和技术支撑,对提高抽气效率、优化细长管内的真空压力分布以及保证工艺一致性具有重要的工程应用价值。

     

    Abstract: This paper focuses on issues such as the complexity and time-consuming calculation of the pressure at the end of a slender vacuum tube in actual working conditions, as well as the inability to measure the pressure inside the tube. Through three methods including software programming calculation based on theoretical derivation, numerical simulation, and experimental test, the pressure distribution law within the slender vacuum tube is investigated. The results show that the pressure difference between the ends of the slender tube is related to the geometric parameters of the slender tube, and the pressure distribution in the slender vacuum tube presents a typical parabolic distribution characteristic, in which the pressure gradient on the pump port side changes most significantly; the pressure distribution in the tube can be effectively optimized by shortening the length of the tube or increasing the diameter. The results of this research provide a theoretical basis and technical support for the optimal design of the vacuum system and have important engineering application value for improving pumping efficiency, optimizing the vacuum pressure distribution in the slender tube, and ensuring the consistency of the process.

     

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