afd05389-2903-48f5-bf42-d33b70b7ac2620210910083201573naun:naunmdt@crossref.orgMDT DepositInternational Journal of Mechanics1998-444810.46300/9104http://www.naun.org/cms.action?id=2828128202112820211510.46300/9104.2021.15https://www.naun.org/cms.action?id=23280Mathematical Modeling of Heat and Mass Transfer in Heat Pipes in a One-Dimensional Formulation when Cooling Active Phased Antenna ArraysS.RadaevMoscow Aviation Institute (National Research University) Moscow, Volokolamskoe shosse 4, 125993, Russian FederationThe 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.9102021910202119620323https://www.naun.org/main/NAUN/mechanics/2021/a462003-023(2021).pdf10.46300/9104.2021.15.23https://www.naun.org/main/NAUN/mechanics/2021/a462003-023(2021).pdf10.1142/s0218625x18501457A. N. Astapov, E. L. Kuznetsova, L. N. Rabinskiy, "Operating capacity of anti-oxidizing coating in hypersonic flows of air plasma," Surface Review and Letters, 26(2), pp. 1850145, 2019. 10.13111/2066-8201.2020.12.s.13L. N. Rabinskiy, O. V. Tushavina, E. I. Starovoitov, "Study of thermal effects of electromagnetic radiation on the environment from space rocket activity," INCAS Bulletin, 12 (Special Issue), pp. 141–148, 2020. 10.1615/nanoscitechnolintj.2020034207A. V. Babaytsev, A. A. Orekhov, L. N. 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