169 resultados para 389

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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The coupling of mesoscopic strength distribution and stress fluctuation on damage evolution and rupture are examined. The numerical simulations show that there is only weak stress fluctuation at the initial damage stage when the mean field approximation is in effect. As the damage fraction becomes larger than the threshold value, the fluctuation is amplified significantly, and damage localization appears. The coupling between stress fluctuation, disordered heterogeneity and the damage localization may play an essential role in catastrophic rupture. (C) 2003 Elsevier Ltd. All rights reserved.

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本文将“局部-整体分析法”(Local-global analy sis)推广到含裂纹球壳的断裂分析中,给出含裂纹球壳裂纹尖端应力应变场包括Ⅰ,Ⅱ,Ⅲ型的一般解.它类似于平面断裂问题中Williams展开式的作用,揭示了裂纹尖端附近的力学性质,为进行含裂纹球壳断裂分析提供良好的基础.平面断裂问题分析中一整套成熟的分析方法,诸如能量法,边界配置法,摄动法,有限元法等都可以移植到球壳的断裂分析中去. 作为算例,本文给出了几种边界条件下有限尺寸块球壳的应力强度因子数值并进一步对工程中实用的球壳鼓胀系数进行了计算,分析了现在常用的鼓胀系数的适用范围,并给出了简单实用的近似公式.本文获得的应力应变场也为复合型断裂分析提供了一个强有力的工具.

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<正> 在有限长环形管道中,粘性导电的流体在轴向磁场和径向电场的作用下,不仅产生环向流动(主流),而且由于轴向边界的影响还会产生子午面内的流动,称为二次流动。在哈特曼数很大,雷诺数较小或长管近似的情况下,二次流可以忽略。等对二次流进行了计算和讨论。从量纲分析理论可清楚知道,除几何参数外,只能有两个独立的无量纲参数。因此,他们采用α,β,Υ三个独立参数进行计算,在物理上是不合理的,其中Υ应等于β/α。

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改进了适合于高寒草甸生态系统的陆地生态圈模式,分析了模式中温度变化与水分运动分层的物理原因,说明了气候状况对地表面能量交换的影响,给出了净辐射和蒸散量新的计算方法,提出了有很差分计算中具有二阶精度的Euler隐式格式,介绍了中国科学院海北高寒草甸生态站的气候概况和野外观测情况。最后利用本模式对高寒草甸生态站地区的土壤-植被-大气间水热交换过程进行了数值模拟,模拟值与实测值吻合较好。

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求解Navier-Stokes方程组,一直是粘性流动计算的主导途径。但在计算中,都是在一定的网格单元上进行离散,而对不同的离散单元,流动的特征并不相同。该文通过离散单元上网格雷诺数的变化分析,采用耦合离散流体理论(CDFT)差分格式,对向后台阶底部超声速流动问题进行数值模拟,得到了满意的结果。

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采用MSC.Marc非线性有限元软件,对板料激光弯曲过程进行了数值模拟.试验与数值模拟的相互印证表明:数值模拟的模型正确,计算过程可靠,计算结果可为板料激光弯曲工艺参数的选择提供依据.通过模拟多道次直线照射的过程可知,变形效果受照射路径次序的影响很大,应选择从固定端向自由端方向交替的双向照射路径,以保证板料在宽度方向上变形的均匀.模拟结果可为带筋结构壁板激光弯曲成形提供实用方案.

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The damage morphologies, threshold fluences in ZnO films were studied with femtosecond laser pulses. Time-resolved reflectivity and transmissivity have been measured by the pump-probe technique at different pump fluences and wavelengths. The results indicate that two-phase transition is the dominant damage mechanism, which is similar to that in narrow band gap semiconductors. The estimated energy loss rate of conduction electrons is 1.5 eV/ps. (c) 2005 Elsevier Ltd. All rights reserved.

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