АВАРИЙНОЕ ОХЛАЖДЕНИЕ СБОРКИ ТВЭЛОВ БЫСТРОГО РЕАКТОРА ПРИ КИПЕНИИ В УСЛОВИЯХ ЕСТЕСТВЕННОЙ КОНВЕКЦИИ
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Kikuchi Y., Takahashi T., Haga K. Incipient boiling of sodium flowing in a single — pin annular channel. — J. Nucl. Sci. Tech., 1974, v. 11, № 5, p. 172— 186.
Kikuchi Y. Transien t boiling of sodium in seven—pin bundle under transient overpower conditions. — Ibid., 1979, v. 16, № 4, p. 287—294.
Kikuchi Y. Local sodium boiling behind local flow blockage in simulated LMFBR fuel subassembly. — Ibid., 1977, v. 14, № 11, p. 774—790.
Kikuchi Y. Sodium boiling experiments ina 19—pin bundle under loss—of—flow conditions. — Nucl. Engng Design, 1981, v. 66, № 3, p. 357—366.
Haga K. Temperature rise due to fission gas release in locally blocked LMFBR fuel subassembly simulators. — In: LMFBR Safety Topical Meeting, July 19—23, 1982, Lion—Eculyy, France, p. 291—300.
Hubert F. Loss of flow experiments in sodium in an electrically heated 37—pin bundle with sinusoidal axial heat flux distribution. — Ibid., p. 341—349.
Hubert F., Peppier W. Boiling and dry out behind local blockages in sodium cooled rod bundles. — Nucl. Engng Design, 1984, v. 82, № 3, p. 341—363.
Sealer J., Cognet G., Leborque Ee.a. French LMFBR core thermal h ydraulic studies for nominal and accident conditions. — Ibid., 1990, v. 124, № 3, p. 403—416.
Dwyer O. Incipient boiling superheat for sodium in turbulent channel flow effects of heat flux and flow rate. — J. Heat and Mass Transfer, 1973, v. 16, № 5, p. 971—984.
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