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961.
962.
Flooding hazards for nuclear power plants may be caused by various external geophysical events. In this paper the hydrologic hazards from flash floods, river floods and heavy rain at the plant site are considered. Depending on the mode of analysis, two types of hazard evaluation are identified: (a) design hazard which is the probability of flooding over an expected service period, and (b) operational hazard which deals with real-time forecasting of the probability of flooding of an incoming event. Hazard evaluation techniques using flood frequency analysis can only be used for type (a) design hazard. Evaluation techniques using rainfall-runoff simulation or multi-station correlation can be used for both types of hazard prediction. 相似文献
963.
C. S. Lee Z. M. Lin Z. M. Yen C. H. Lin 《Nuclear instruments & methods in physics research. Section B, Beam interactions with materials and atoms》2002,190(1-4):141-145
Ion beam induced light emission is used to investigate the sputtering yield, SO, of oxygen atoms on the surfaces of a polycrystalline copper and an Al(1 1 1) target. Under Ar+ and Ne+ ion bombardment of Al(1 1 1) and polycrystalline copper targets, spectral lines of Cu I and Al I emitting from sputtered excited atoms are measured as a function of the oxygen partial pressure, wavelength and beam energy. The light emission for two Al I lines (3082 and 3962 Å) and Cu I lines (3247 and 3274 Å) are proportional to the oxygen partial pressure (1×10−4 Torr). Above 2×10−4 Torr, the light intensities start to decrease which is consistent with other measurements. From saturated-oxygen covered target surfaces, light intensities of Al I and Cu I lines are measured as a function of time and oxygen partial pressures. The sputtering yields could be determined from the curves of spectral lines directly. For 10 and 20 keV Ar+ ions bombarding the copper surface, the oxygen sputtering yields are 0.34 and 0.22 (atoms/ion), respectively. The same copper target was bombarded by Ne+ ions at 5 and 10 keV, the oxygen sputtering yields are 0.87 and 0.59, respectively. For 10, 15, and 20 keV Ar+ bombarding an Al(1 1 1) target, the obtained sputtering yields are 0.44, 0.31, and 0.2 (atoms/ion), respectively. 相似文献
964.
965.
966.
967.
968.
Interactions between inclusions and various types of cracks 总被引:2,自引:0,他引:2
The problems of a crack inside, outside, penetrating or lying along the interface of an anisotropic elliptical inclusion are considered in this paper. Because the crack may be represented by a distribution of dislocation, integrating the analytical solutions of dislocation problems along the crack and applying the technique of numerical solution on the singular integral equation, we can obtain the general solutions to the problems of interactions between cracks and anisotropic elliptical inclusions. Since there are no analytical solutions existing for the general cases of interactions between cracks and inclusions, the comparison is made with the numerical results obtained by other methods or with the analytical results for the special cases which can be reduced from the present problems. These results show that our solutions are correct and universal 相似文献
969.
Recently Hui and Lam announced that they had developed a new technique for improving the performance of RSA computation based on the square-and-multiply exponentiation [see ibid., vol. 30, no. 17, p. 1396-7, 1994]. In fact, their proposed algorithm is a well-known approach to exponentiation termed the m-ary method which essentially is a modification of the standard square-and-multiply algorithm 相似文献
970.
Stochastic Inference to Sediment and Fluvial Hydraulics 总被引:2,自引:0,他引:2
Ben C. Yen 《Canadian Metallurgical Quarterly》2002,128(4):365-367