有源相控阵冷却时热管传热传质的一维数学模型

S. Radaev
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引用次数: 6

摘要

该工作提出了测试有源相控阵天线阵列冷却过程中热管中的传热和传质的一维模型,其可用于处理扁平热管的测试结果以确定其性能特征并识别在更复杂的设置中建模所需的参数(例如在扁平中并考虑到几个局部热源的存在)。为了考虑热释放功率对热管内平衡温度的影响,增加了模型,以考虑蒸汽饱和温度对压力的依赖性,当热管被加热时,蒸汽饱和温度在蒸汽管道内实现。进行了大量的计算,使完善数学模型成为可能。特别是,考虑到蒸汽饱和温度对副线中压力的依赖性,显示了对沿热管的温度分布的显著影响。研究表明,引入液体和蒸汽状态下冷却剂(水)特性的标准函数,并考虑到毛细管压力对温度的影响,使精制所得溶液成为可能。
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Mathematical Modeling of Heat and Mass Transfer in Heat Pipes in a One-Dimensional Formulation when Cooling Active Phased Antenna Arrays
The work proposes test one-dimensional models of heat and mass transfer in heat pipes during cooling of active phased antenna arrays, which can be used in processing the test results of flat heat pipes in order to determine their performance characteristics and identify the parameters required for modeling in a more complex setting (for example, in flat and taking into account the presence of several localized sources of heat supply). To take into account the influence of the heat release power on the equilibrium temperature inside the heat pipe, the model has been added to take into account the dependence of the steam saturation temperature on the pressure, which is realized inside the steam pipeline when the heat pipe is heated. Numerous calculations carried out made it possible to refine the mathematical model. In particular, a significant effect on the temperature distribution along the heat pipe is shown, taking into account the dependence of the steam saturation temperature on the pressure in the parawire. It is shown that the introduction of standard functions for the characteristics of the coolant (water) in the liquid and vapor state, as well as taking into account the capillary pressure on temperature, makes it possible to refine the resulting solution.
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来源期刊
International Journal of Mechanics
International Journal of Mechanics Engineering-Computational Mechanics
CiteScore
1.60
自引率
0.00%
发文量
17
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