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TsAGI Science Journal

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ISSN Печать: 1948-2590

ISSN Онлайн: 1948-2604

AIR INTAKE IN THE TRANSIENT REGIME OF RAREFIED GAS FLOW

Том 49, Выпуск 2, 2018, pp. 137-148
DOI: 10.1615/TsAGISciJ.2018026789
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Краткое описание

The gas flow in an air intake was numerically studied by the Direct Simulation Monte Carlo method in the free-molecular and transient flow regime for a finite Knudsen number without gas offtake from the collector. In conditions when the external flow is free-molecular, there is a marked difference inside the air intake that is associated with an increase in the gas density in the collector. For intake in a cylindrical tube, the dependence of the maximum gas density in the collector and the flow field on the relative length of the tube, the velocity ratio in the oncoming stream, and the temperature factor were studied. We report that, in the transition phase, the dependence of the relative value of the maximum gas density in the collector on the Knudsen number is nonmonotonic.

ЦИТИРОВАНО В
  1. Romano F., Espinosa-Orozco J., Pfeiffer M., Herdrich G., Crisp N.H., Roberts P.C.E., Holmes B.E.A., Edmondson S., Haigh S., Livadiotti S., Macario-Rojas A., Oiko V.T.A., Sinpetru L.A., Smith K., Becedas J., Sulliotti-Linner V., Bisgaard M., Christensen S., Hanessian V., Jensen T. Kauffman, Nielsen J., Chan Y.-A., Fasoulas S., Traub C., García-Almiñana D., Rodríguez-Donaire S., Sureda M., Kataria D., Belkouchi B., Conte A., Seminari S., Villain R., Intake design for an Atmosphere-Breathing Electric Propulsion System (ABEP), Acta Astronautica, 187, 2021. Crossref

  2. Zheng Peng, Wu Jianjun, Biqi wu , Zhang Yu, Design and numerical investigation on the intake of atmosphere-breathing electric propulsion, Acta Astronautica, 188, 2021. Crossref

  3. Zheng Peng, Wu Jianjun, Zhang Yu, Zhao Yuanzheng, Design and Optimization of vacuum Intake for Atmosphere-Breathing electric propulsion (ABEP) system, Vacuum, 195, 2022. Crossref

  4. Romano F., Herdrich G., Chan Y.-A., Crisp N. H., Roberts P. C. E., Holmes B. E. A., Edmondson S., Haigh S., Macario-Rojas A., Oiko V. T. A., Sinpetru L. A., Smith K., Becedas J., Sulliotti-Linner V., Bisgaard M., Christensen S., Hanessian V., Jensen T. Kauffman, Nielsen J., Fasoulas S., Traub C., García-Almiñana D., Rodríguez-Donaire S., Sureda M., Kataria D., Belkouchi B., Conte A., Seminari S., Villain R., Design of an intake and a thruster for an atmosphere-breathing electric propulsion system, CEAS Space Journal, 2022. Crossref

  5. Ferrato Eugenio, Giannetti Vittorio, Tisaev Mansur, Lucca Fabris Andrea, Califano Francesco, Andreussi Tommaso, Rarefied Flow Simulation of Conical Intake and Plasma Thruster for Very Low Earth Orbit Spaceflight, Frontiers in Physics, 10, 2022. Crossref

  6. Wu Jianjun, Zheng Peng, Zhang Yu, Tang Haibin, Recent development of intake devices for atmosphere-breathing electric propulsion system, Progress in Aerospace Sciences, 133, 2022. Crossref

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