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2004年印尼8.7级强震前昌黎台的远场电性异常特征探讨 被引量:12
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作者 张学民 翟彦忠 +2 位作者 郭建芳 郭学增 韩和平 《地震》 CSCD 北大核心 2006年第4期82-93,共12页
分析了在2004年12月26日印尼8.7级地震前河北昌黎台记录到的自然电位及电场异常,结果显示昌黎台自电位、电场正常时段观测到的半日、半月潮汐波周期变化在震前1个多月发生畸变,周期消失,变化幅度相应减小,震后快速恢复,且潮汐波记录比... 分析了在2004年12月26日印尼8.7级地震前河北昌黎台记录到的自然电位及电场异常,结果显示昌黎台自电位、电场正常时段观测到的半日、半月潮汐波周期变化在震前1个多月发生畸变,周期消失,变化幅度相应减小,震后快速恢复,且潮汐波记录比震前正常时段更加清晰。该台地电阻率的观测结果显示起始下降变化比较平缓,震前一周左右,变化加剧,出现多次阶变。究其原因,在强震发生前断层的蠕滑作用导致孔隙压力变化,产生一种可以在岩石中传播的应变波,由于台站下方岩土层对小应变信号具有很好的放大作用,所以记录到了这种小幅度的应变波,也就是远场的静态应变效应。随着地震临近,应力作用加强,远程应变波引起台站下方水位、水化学性质以及岩石孔隙度、渗透率等的改变,导致电阻率、电场大幅度的阶变,这反映了远场应变波的动态效应。当然就异常幅度而言,应变波的效应还嫌弱一些,因此昌黎台异常变化可能还叠加了震源区激发的电磁波。 展开更多
关键词 印尼8.7级地震 静态应变 动态应变波 地电场 地电阻率
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Dynamic Response of Structure under Blast Load
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作者 Daniel Makovicka Jr. Daniel Makovicka 《Journal of Civil Engineering and Architecture》 2016年第4期421-429,共9页
The paper follows from the theory of explosion and interaction of an impact wave formed by the explosion and a structure. Firstly, the paper determines the parameters of the blast wave excited by a small charge explos... The paper follows from the theory of explosion and interaction of an impact wave formed by the explosion and a structure. Firstly, the paper determines the parameters of the blast wave excited by a small charge explosion. The empirical formulas on the basis of our own experimental results are shown and used for the structure analysis. Evaluations of structures loaded by an explosion based on dynamic response in rotations round the central line of plate or beam systems during the dynamic load of this type is discussed in the paper and comparison of own limit values and published ones is presented. Blast loads typically produce very high strain rates in the range of 102 to 10-4 s-1. The effect of strain rate for concrete material is discussed. The formulas for increased compressive strength of concrete and steel reinforcement are presented. The ductility of structural members is influenced by the corresponding values under high strain rate of reinforcement, Damage to the structure is assessed accordingly firstly by the angle of rotation of the middle axis/surface, and secondly by the limit internal forces of the selected structure. The extreme nature of blast resistance makes it necessary to accept that structural members have some degree of inelastic response in most cases. This enables the application of structure dissipation using the ductility factor and increased of concrete strength. The limits are correlated with qualitative damage expectations. The methodology of dynamic response assessment and its application to the simple bridge structure is discussed. 展开更多
关键词 Explosion blast wave dynamic load RESPONSE ASSUMPTION bridge structure.
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