Art
J-GLOBAL ID:200902005167657781   Reference number:86A0437105

Forces on heated bodies in a highly rarefied gas.

高度に希薄な気体中の加熱物体に働く力
Author (3):
Material:
Volume: 34  Issue: 390  Page: 38-47  Publication year: Jul. 1986 
JST Material Number: F0230A  ISSN: 0021-4663  Document type: Article
Article type: 原著論文  Country of issue: Japan (JPN)  Language: JAPANESE (JA)
Thesaurus term:
Thesaurus term/Semi thesaurus term
Keywords indexed to the article.
All keywords is available on JDreamIII(charged).
On J-GLOBAL, this item will be available after more than half a year after the record posted. In addtion, medical articles require to login to MyJ-GLOBAL.
,...
   To see more with JDream III (charged).   {{ this.onShowAbsJLink("http://jdream3.com/lp/jglobal/index.html?docNo=86A0437105&from=J-GLOBAL&jstjournalNo=F0230A") }}
JST classification (1):
JST classification
Category name(code) classified by JST.
Rarefied gas dynamics 
Reference (23):
  • 1) Sone, Y.: Asymptotic Theory of Flow of Rarefied Gas over a Smooth Boundary I, in Rarefied Gas Dynamics,Trilling, L. and Wachman, H.Y., Academic Press, New York, 1969, Vol. 1, pp. 243-253.
  • 2) Sone, Y., Asymptotic Theory of Flow of Rarefied Gas over a Smooth Boundary II, in Rarefied Gas Dynamics, Dini, D., Editrice Tecnico Scientifica, Pisa, 1971, Vol. 2, pp. 737-749.
  • 3) Sone, Y. and Onishi, Y.: Kinetic Theory of Evaporation and Condensation-Hydrodynamic Equation and Slip Boundary Condition-, J. Phys. Soc. Jpn., 44 (1978), pp. 1981-1994.
  • 4) Onishi, Y. and Sone, Y,: Kinetic Theory of Slightly Strong Evaporation and Condensation-Hydrodynamic Equation and Slip Boundary Condition for Finite Reynolds Number-, J. Phys. Soc. Jpn., 47 (1979), pp. 1676-1685.
  • 5) Grad, H.: Singular and Nonuniform Limits of Solutions of the Boltzmann Equation, in Transport Theory, Bellman, R., Birkhoff, G. and Abu-Shumays, I., American Mathematical Society, Providence, R.I., 1969, pp. 269-308.
more...
Terms in the title (3):
Terms in the title
Keywords automatically extracted from the title.

Return to Previous Page