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ЖУРНАЛЫ // Теплофизика высоких температур

ТВТ, 2001, том 39, выпуск 6, страницы 970–976 (Mi tvt2004)

Теоретический анализ и методика расчета теплофизических процессов, протекающих в криогенной емкости в режиме бездренажного хранения
Н. В. Амирханян, С. Г. Черкасов

Эта публикация цитируется в следующих статьяx:
  1. Wang Haoren, Wang Bo, Li Ruize, Shen Xian, Wu Yingzhe, Pan Quanwen, He Yuanxin, Zhou Weiming, Gan Zhihua, “Thermodynamic analysis of the effect of initial ortho-hydrogen concentration on thermal behaviors for liquid hydrogen tanks”, International Journal of Hydrogen Energy, 55 (2024), 243  crossref
  2. Haoren Wang, Bo Wang, Tiancheng Xu, Xian Shen, Yuanxin He, Weiming Zhou, John Pfotenhauer, Tao Jin, Zhihua Gan, “Thermal models for self-pressurization prediction of liquid hydrogen tanks: Formulation, validation, assessment, and prospects”, Fuel, 365 (2024), 131247  crossref
  3. Zhiyuan Qu, Jiahao Lu, Zhenxi Ma, Zhicheng Cai, Xiao Zhang, Liang Cai, “Data-driven pressure prediction for self-pressurization liquid hydrogen tank using transfer learning method”, International Journal of Hydrogen Energy, 93 (2024), 1393  crossref
  4. Juan Fu, Jingchao Wang, Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering, 316, IoT as a Service, 2020, 296  crossref
  5. С. Г. Черкасов, А. В. Ананьев, Л. А. Моисеева, “Особенности пристеночной свободной конвекции в стратифицированной по температуре среде”, ТВТ, 55:3 (2017), 410–417  mathnet  crossref  elib; S. G. Cherkasov, A. Ananyev, L. A. Moiseeva, “Specificities of wall free convection in a temperature-stratified medium”, High Temperature, 55:3 (2017), 393–399  crossref  isi
  6. Anan'ev A.V., Mironov V.V., Moiseeva D.A., Cherkasov S.G., “Anisotropic Effect of Natural Convection on the Temperature Field in An Enclosure in the Presence of Stable Temperature Stratification”, Fluid Dyn., 50:5 (2015), 681–690  crossref  mathscinet  zmath  isi
  7. Fu J., Sunden B., Chen X., Huang Y., “Influence of Phase Change on Self-Pressurization in Cryogenic Tanks Under Microgravity”, Appl. Therm. Eng., 87 (2015), 225–233  crossref  isi  elib
  8. Fu J., Sunden B., Chen X., “Analysis of Self-Pressurization Phenomenon in a Cryogenic Fluid Storage Tank With Vof Method”, Proceedings of the Asme International Mechanical Engineering Congress and Exposition, 2013, Vol 1, Amer Soc Mechanical Engineers, 2014, V001T01A020  isi
  9. S. Barsi, M. Kassemi, “Numerical and experimental comparisons of the self-pressurization behavior of an LH2 tank in normal gravity”, Cryogenics, 48:3-4 (2008), 122  crossref
  10. Stephen Barsi, Charles Panzarella, Mohammad Kassemi, 43rd AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit, 2007  crossref
  11. Stephen Barsi, Mohammad Kassemi, 45th AIAA Aerospace Sciences Meeting and Exhibit, 2007  crossref


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