使用 TPMC 方法模拟涡轮分子泵中单排转子的性能:运行和几何变量的影响

IF 1.7 4区 工程技术 Q3 MECHANICS Heat and Mass Transfer Pub Date : 2024-05-03 DOI:10.1007/s00231-024-03477-w
Maryam Hosseinzadeh Sereshgi, Reza Ebrahimi
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引用次数: 0

摘要

涡轮分子泵广泛应用于半导体和沉淀等领域的工业和科学研究中。在这类泵中,几何特性和运行条件对性能的影响是研究人员感兴趣的问题。本文模拟了涡轮分子泵的单排转子,并采用测试颗粒蒙特卡洛法研究了叶片间距、角度、数量和长度以及运行条件对性能的影响。计算了最大压缩比和泵送速度。研究了单排转子中 12、24、36 和 48 片叶片在 15、20 和 30 度角和 0.015 间隙下的性能。我们将间隙从 0.015 增加到 0.025 和 0.035,对 12 至 48 个叶片、叶片速度比为 3.5、叶片角度为 15 度的转子进行了研究。为了验证结果,将 36 片叶片、30 度叶片角和 0.015 间隙的数值与现有的实验结果进行了比较,结果一致。该模拟结果旨在涵盖设计计算中感兴趣的情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Modeling the performance of a single rotor row in a turbomolecular pump using the TPMC method: effects of operational and geometric variables

Turbo-molecular pumps are widely used in industries and scientific studies in areas such as semiconductors and sedimentation. In; such pumps, the influence of the geometric characteristics and operating conditions on performance is of interest to researchers. A single-row rotor of a turbo-molecular pump was simulated, and the test particle Monte Carlo method was used to investigate the effects of blade spacing, angle, number, and length; as well as operating conditions on performance. The maximum compression ratio and pumping speed were calculated. The pump’s performance was studied for 12, 24, 36, and 48 blades in a single-row rotor at angles of 15, 20, and 30 degrees with a clearance of 0.015. We were increasing the gap from 0.015 to 0.025 and 0.035 examined across rotors with 12 to 48 blades, a blade speed ratio of 3.5, and a blade angle of 15 degrees. To validate the results, the numerical values obtained for 36 blades, 30-degree blade angle, and 0.015 clearance were compared to available experimental results, yielding good agreement. The results of this simulation are intended to cover cases of interest for design calculations.

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来源期刊
Heat and Mass Transfer
Heat and Mass Transfer 工程技术-力学
CiteScore
4.80
自引率
4.50%
发文量
148
审稿时长
8.0 months
期刊介绍: This journal serves the circulation of new developments in the field of basic research of heat and mass transfer phenomena, as well as related material properties and their measurements. Thereby applications to engineering problems are promoted. The journal is the traditional "Wärme- und Stoffübertragung" which was changed to "Heat and Mass Transfer" back in 1995.
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