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贮箱低温试验液位监测方法研究及应用 被引量:1

An application research on the method of measuring and monitoring the liquid level during the cryogenic test of a tank
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摘要 贮箱低温静力试验加注过程中低温介质液位测量关系加注进度和增压气枕大小,本文通过调研分析各种常规低温液位测量方法可行性,同时对某绝热状态下贮箱液氮低温试验的温度和液位数据进行一致性对比分析,给出了基于温度—液位对应关系,通过测量沿贮箱外壁母线通长布置的若干个温度测点的温度并根据温度突变下降特征来监测箱内液位的方法,并给出了该方法在不绝热贮箱液氮低温试验和绝热贮箱液氢低温试验中的应用,并说明了应用该方法存在的问题和辅助措施,为今后低温静力试验液位监测提供了借鉴。 The liquid level measurement of the filling cryogenic medium during the cryogenic static test ofa Tank played an important role in the filling plan and the magnitude of the pneumatic die cushion forcontrolling inner pressurization of the tank. Firstly, a research on all kinds of methods of measuring normalcryogenic liquid levels was done. Secondly, the correspondence characteristic between the temperature andthe liquid level on the liquid nitrogen cryogenic test of a tank with insulation state was analyzed deeply .And based on the relation of the temperature and the liquid level, the method of measuring the temperatureof a series of thermal couple along longitude distribution on outer wall of the tank and monitoring theinside liquid level by temperature jump characteristic of cool-down was presented. Finally, the method wasapplied in the liquid nitrogen cryogenic test of a tank with non-insulation state and the liquid hydrogencryogenic test of another tank with insulation state. And some existing problem and auxiliary methods werepresented. The method presented in this paper was helpful for other the cryogenic test of a tank needingmeasuring and monitoring the liquid level .
出处 《强度与环境》 2017年第3期53-58,共6页 Structure & Environment Engineering
关键词 液位 低温贮箱 温度突变 液氮 液氢 liquid level cryogenic tank temperature jump characteristic liquid nitrogen liquid hydrogen
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  • 1秦叔经.应力分类概念在压力容器设计中的应用[J].化工设备与管道,2001,38(5):5-11. 被引量:9
  • 2梁立凯.电阻应变片测量中温度误差的补偿方法[J].呼伦贝尔学院学报,2001,9(1):68-69. 被引量:20
  • 3Barakat H Z, Clark J A. Transient, laminar, free convection heat and mass transfer in closed, partially filled, liquid containers, technical report No. 1 [R]. NAS-8-825, Huntsville, labama, 1965.
  • 4Lin C L,Hasan M M. Numerical investigation of the thermal stratification in cryogenic tanks subjected to wall heat flux[ R ]. Orlando, Florida:26th Joint Propulsion Conference, 1990.
  • 5Das S P, Charkraborty S, Dutta P. Studies on thermal stratification phenomenon in LH2 storage vessel [ J ]. Heat Transfer Engineering. 2004,25 ( 4 ) : 54-66.
  • 6Khurana T K, Prasad B V S S S, etc. Thermal stratification in ribbed liquid hydrogen storage tanks [J]. International Journal of Hydrogen Energy, 2006,31 : 2299-2309.
  • 7Emery A F, Siegel B L. Experimental measurements of the effects of frost formation on heat exchanger performance. In: Proceedings of AIAA/ASME thermophysics and heat transfer conference, heat and mass transfer in frost and ice packed beds and environmental discharges [J]. Armilli R V, Beasley D E, Sengupta S, eds., ASME HTD, 1990,139 : 1 - 7.
  • 8Lee Y B, Ro S T. Frost Formation on a Vertical Plate in Simultaneously Developing Flow [ J ]. Experimental Thermal and Fluid Science, 2002, 26:939 -945.
  • 9Stoecker W F. How frost formation on coils affects re- frigeration systems [J]. Refrigerating Engineering, 1957,65(2) :42 - 46.
  • 10Miler W A. Frosting experiments for a heat pump having a one - row spin fin outdoor coil [ J]. ASHRAE, 1984, 90( 1 ) : 1009 - 1025.

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