刘波,严万洪,邵汉斌.基于静态压降法量化表征某型贮箱气密性方法研究[J].装备环境工程,2023,20(6):49-55. LIU Bo,YAN Wan-hong,SHAO Han-bin.Quantitative Characterization on Gas Tightness of Certain Tank Based on Static Pressure Drop Method[J].Equipment Environmental Engineering,2023,20(6):49-55.
基于静态压降法量化表征某型贮箱气密性方法研究
Quantitative Characterization on Gas Tightness of Certain Tank Based on Static Pressure Drop Method
  
DOI:10.7643/issn.1672-9242.2023.06.007
中文关键词:  贮箱  泄漏检测  气密性  漏率  压降中图分类号:TB774 文献标识码:A 文章编号:1672-9242(2023)06-0049-07
英文关键词:tank  leakage detection  gas tightness  leakage rate  pressure drop
基金项目:
作者单位
刘波 63798部队,四川 西昌 615000 
严万洪 63798部队,四川 西昌 615000 
邵汉斌 63798部队,四川 西昌 615000 
AuthorInstitution
LIU Bo Unit 63798, Sichuan Xichang 615000, China 
YAN Wan-hong Unit 63798, Sichuan Xichang 615000, China 
SHAO Han-bin Unit 63798, Sichuan Xichang 615000, China 
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中文摘要:
      目的 弥补运载火箭靶场测试中仅采用静态压降法定性判定贮箱气密性的不足,进一步提高贮箱气检结果的可信度。方法 提出基于静态压降法量化表征某型贮箱气密性的方法。首先,依据气体理想状态方程,得出基于静态压降法表征贮箱气密性的量化方法,并对计算结果进行验证。其次,综合考虑箱压变化、温度、大气压力、稳压时间和测量时间等影响因素,对上述量化方法进行修正,得到基于静态压降法表征某型贮箱气密性改进型量化计算方法。结果 改进后的计算方法精度更高。在此基础上,通过对限制改进型量化计算方法精度的影响因素进行分析,提出了进一步提高改进型量化计算方法精度的优化措施。结论 提出的基于静态压降法量化表征某型贮箱气密性方法可行,能够为后续更好开展靶场气检工作提供有力支撑。
英文摘要:
      The work aims to make up for the deficiency that only static pressure drop method is used to qualitatively determine the gas tightness of the tank in the range test of carrier rocket, and further improves the credibility of the gas detection results of the tank. A method for quantifying the gas tightness of a certain tank based on static pressure drop method was presented. Firstly, according to the ideal state equation of gas, a quantization method based on static pressure drop method was obtained to characterize the gas tightness of the tank, and the calculation results were verified. Secondly, considering the affecting factors such as tank pressure variation, temperature, atmospheric pressure, pressure stabilization time and measurement time, the above quantization method was modified, and an improved quantitative calculation method based on static pressure drop method was obtained to describe the gas tightness of the tank. The improved calculation method had higher accuracy. On this basis, through the analysis of the factors that limited the accuracy of the improved quantitative calculation method, the optimization measures to further improve the accuracy of the improved quantitative calculation method were put forward. The method of quantifying the gas tightness of the tank based on static pressure drop method proposed is feasible, which can provide strong support for the subsequent better gas detection in the range.
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