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大学物理实验, 2025, 38(2): 80-91     https://doi.org/10.14139/j.cnki.en22-228.2025.02.015
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高空台管网系统流动参数的变化规律与相关性分析
陈律江 1 ,张健平 1,张松 2 ,但志宏 2 ,聂博文 1,杨豪 1
1.西南科技大学 制造过程测试技术教育部重点实验室,四川 绵阳621010;2.中国航空发动机集团有限公司 四川燃气涡轮研究院,四川 绵阳 621703
Analysis of Variation and Correlation of Flow Parametersin High Altitude Platform Pipeline Systems
CHEN Lvjiang1 ,ZHANG Jianping1 ,ZHANG Song2, DAN Zhihong2, NlE Bowen1,YANG Hao1
School af Manufaeturing Seienee and Engineering, Souhwest Univerilyof Seience and Technology, hianyang 621010, Sichuan, China ;2.sichuan Gas Turbine Eetablishment, Aero Engine Corporation of China, Mianyang 621703, Sichuan, China
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摘要 

针对目前高空台模拟系统将两调节阀间的管道作为 1 个控制模型致使控制精度低的问题,采用 Fluent 软件分析了管径、进口段长度、出口段长度和弯头类型对高空台管网系统流动参数的影响。结果表明:管径、进口段长度和弯头类型对流动参数影响较大,管径和进口段长度增加,流动参数变化减小,且 45°弯头流动参数变化大于 90°弯头。此外,管径增加,进口段突变位置对应的管道长度系数为0.8~0.9,45°弯头出口段突变位置约为 0.1,90°弯头出口段突变位置约为 0.15~0.27。进口段长度增加,进口段突变位置约为 0.35~0.95,45°弯头出口段突变位置约为 0.05~0.084,90°弯头出口段突变位置约为 0.1。而出口段长度增加,只会影响出口段突变位置,约为 0.04~0.44。在此基础上,通过斯皮尔曼相关性分析获得影响进、出口段突变位置的主次顺序为进口段长度>管径>出口段长度>弯头类型,出口段

长度>管径>弯头类型>进口段长度。

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陈律江
张健平
张 松
但志宏
聂博文
杨 豪
关键词:  高空台  管网系统  流动参数  变化规律  相关性分析     
Abstract: 

To address the issue of low control aeeuracy caused by treating the pipeline between two controlvalves as a single control model in high altitude platorm simulation system, the elects of pipe diameter, inletlength, outlet length, and elbow type on the flow parameters of high alitude platform pipeline system wereanalyzed using Fluent solt ware.lt provides theoretical support for the development of high precision controlmodels.The results show that pipe diameter, inlet length, and elbow type have significant effects on the flowparameters,Pipe diameter and inlet length inereased, the variation in flow parameters deereased,And the changeof flow parameters in 4$° elbow pipes was greater than that in 90° elbow. When pipe diameter inereased, pipelength eoeffieient for mutation loeation in inlet was found to be 0.8 -.0.9, while mutation loeation for 45° elhowwas approximately 0. 1 , and for 90? elbow, about 0, 15 ..0,27, When inlet length inereased, mutation position ofinlet was about 0.35 ..0.95.The mutation location of the 45 elhow was found to be approximately 0.05-0.084,and for 90° ellbow, about 0.1.The inerease in the length of outlet would only alleet the mutation position ofoutlet, which was about 0,04 ~.0,44, Based on $pearman correlation analysis, the primary and secondary orderaffeeting mutation position of inlet and outlet is : inlet length > pipe diameter > outlet length > elbow type, inletlength > pipe diameter > elbow type > outlet length.

Key words:  high altitude platorm    pipeline system    fow parameters    variation    correlation analysis
               出版日期:  2025-04-25      发布日期:  2025-04-25      整期出版日期:  2025-04-25
ZTFLH:  TH 136  
基金资助: 

军口国家级项目(21zg811202)

引用本文:    
陈律江, 张健平, 张 松 , 但志宏 , 聂博文 , 杨 豪 . 高空台管网系统流动参数的变化规律与相关性分析 [J]. 大学物理实验, 2025, 38(2): 80-91.
CHEN Lvjiang , ZHANG Jianping , ZHANG Song, DAN Zhihong, NlE Bowen, YANG Hao. Analysis of Variation and Correlation of Flow Parametersin High Altitude Platform Pipeline Systems . Physical Experiment of College, 2025, 38(2): 80-91.
链接本文:  
https://dawushiyan.jlict.edu.cn/CN/10.14139/j.cnki.en22-228.2025.02.015  或          https://dawushiyan.jlict.edu.cn/CN/Y2025/V38/I2/80
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