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基于标准结构熵的Internet健壮性研究 被引量:2
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作者 徐峰 赵海 +1 位作者 哈铁军 张永庆 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2006年第11期1208-1211,共4页
针对Internet路由级拓扑所呈现出的高度有序的问题,根据香农信息熵的基本原理,并利用CAIDA提供的数据,计算了Internet网络结构熵和标准结构熵·并通过仿真实验,计算了Internet在受到随机攻击和有针对性的恶意攻击的情况下,其服务效... 针对Internet路由级拓扑所呈现出的高度有序的问题,根据香农信息熵的基本原理,并利用CAIDA提供的数据,计算了Internet网络结构熵和标准结构熵·并通过仿真实验,计算了Internet在受到随机攻击和有针对性的恶意攻击的情况下,其服务效率、平均最短路径和标准结构熵的变化,从而指出Internet的拓扑呈现出无尺度特征是影响其健壮性的主要因素·实验结果表明,Internet具有无尺度特性,随机攻击对其影响较小,而少数集散节点遭受恶意攻击时,Internet将会受到较大的影响· 展开更多
关键词 因特网 标准结构熵 健壮性 攻击 无尺度效应 节点度 网络半径
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Scale effects on non-cavitation hydrodynamics and noise of highly-skewed propeller in wake flow 被引量:1
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作者 杨琼方 王永生 张明敏 《Journal of Southeast University(English Edition)》 EI CAS 2013年第2期162-169,共8页
Regarding the scale effects on propeller's noncavitation hydrodynamics and hydroacoustics, three similar 7bladed highly-skewed propellers in the wake flow are addressed with diameters of 250, 500 and 1 000 mm, respec... Regarding the scale effects on propeller's noncavitation hydrodynamics and hydroacoustics, three similar 7bladed highly-skewed propellers in the wake flow are addressed with diameters of 250, 500 and 1 000 mm, respectively. The discrete line-spectrum noise and its standardized spectrum level scaling law, together with the total sound pressure level are analyzed. The non-cavitation noise predictions are completed by both the frequency domain method and the time domain method. As a fluctuated noise source, the time-dependent fluctuated pressure and normal velocity distribution on propeller blades are obtained by the unsteady Reynolds-averaged Navier-Stokes ( URANS ) simulation. Results show that the pressure coefficient distribution of three propellers on the 0.7R section is nearly superposed under the same advance ratio. The periodic thrust fluctuation of three propellers can exactly reflect the tonal components of the axial passing frequency (APF) and the blade passing frequency (BPF), and the fluctuation enhancement from the small to the middle propeller at the BPF is greater than that from the middle to the big one. By the two noise prediction methods, the increment of the total sound pressure level from the small to the big propeller differs by 2.49 dB. Following the standardized scaling law, the spectrum curves of the middle and big propellers are nearly the same while significantly differing from the small one. The increment of both the line-spectrum level and the total sound pressure increases with the increase in diameter. It is suggested that the model scale of the propeller should be as large as possible in engineering to reduce the prediction error of the empirical scalin~ law and weaken the scale effects. 展开更多
关键词 highly skewed propeller non-cavitation noise scale effects frequency domain time domain
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