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2010年墨西哥BajaM_W7.2地震与中国玉树M_W6.9地震强地震动特征的对比研究 被引量:2
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作者 孟令媛 史保平 《地震学报》 CSCD 北大核心 2012年第1期1-19,共19页
2010年4月4日墨西哥Baja地区发生MW7.2地震,2人遇难;同年4月14日中国青海省南部玉树地区发生MW6.9地震,截至2010年4月25日,已造成2220人遇难.有报道指出,玉树地震矩震级小于Baja地震,人员伤亡却远大于后者,主要原因在于玉树地区抗震设... 2010年4月4日墨西哥Baja地区发生MW7.2地震,2人遇难;同年4月14日中国青海省南部玉树地区发生MW6.9地震,截至2010年4月25日,已造成2220人遇难.有报道指出,玉树地震矩震级小于Baja地震,人员伤亡却远大于后者,主要原因在于玉树地区抗震设防标准低、建筑物抗震性能差.地震造成破坏程度的大小并非仅仅取决于矩震级的大小,而同时与其释放的地震波辐射能及发震后造成的强地面运动的大小有关.玉树地震释放的地震波辐射能约相当于Baja地震的10倍,目前玉树地震尚无实测的强震记录.针对玉树地震和Baja地震建立动态复合震源模型,分别模拟基岩上及浅层速度结构(V30,地下30m平均剪切波速)下近断层区域的强地面运动.结果表明,基岩上及V30下玉树地震近断层区域强地面运动整体约相当于Baja地震的2倍.因此,玉树地震造成发震区域内建筑物损毁程度及人员伤亡情况均严重于Baja地震,重要原因之一在于其地震波辐射能大,且强地面运动较强.本文中所应用的动态复合震源模型,在地震矩守恒和地震波辐射能守恒的条件约束下,可以作为地震发生后补充强地面运动数据的有效手段之一. 展开更多
关键词 玉树地震 baja地震 矩震级 地震波辐射能 强地面运动
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Preliminary results of strong ground motion simulation for the Lushan earthquake of 20 April 2013,China 被引量:2
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作者 Gengshang Zhu Zhenguo Zhang +2 位作者 Jian Wen Wei Zhang Xiaofei Chen 《Earthquake Science》 2013年第3期191-197,共7页
The earthquake occurred in Lushan County on 20 April, 2013 caused heavy casualty and economic loss. In order to understand how the seismic energy propagates during this earthquake and how it causes the seismic haz- ar... The earthquake occurred in Lushan County on 20 April, 2013 caused heavy casualty and economic loss. In order to understand how the seismic energy propagates during this earthquake and how it causes the seismic haz- ard, we simulated the strong ground motions from a rep- resentative kinematic source model by Zhang et al. (Chin J Geophys 56(4):1408-1411, 2013) for this earthquake. To include the topographic effects, we used the curved grids finite difference method by Zhang and Chen (Geophys J Int 167(1):337-353, 2006), Zhang et al. (Geophys J Int 190(1):358-378, 2012) to implement the simulations. Our results indicated that the majority of seismic energy con- centrated in the epicentral area and the vicinal Sichuan Basin, causing the XI and VII degree intensity. Due to the strong topographic effects of the mountain, the seismic intensity in the border area across the northeastern of Boxing County to the Lushan County also reached IX degree. Moreover, the strong influence of topography caused the amplifications of ground shaking at the moun- tain ridge, which is easy to cause landslides. These results are quite similar to those observed in the Wenchuan earthquake of 2008 occurred also in a strong topographic mountain area. 展开更多
关键词 Lushan earthquake strong groundmotion Topographic effects Seismic intensity
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Strong ground motion simulation for the 2013 Lushan M_W6.6 earthquake, Sichuan, China, based on the inverted and synthetic slip models 被引量:1
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作者 Wenhao Shen Qiu Zhong Baoping Shi 《Earthquake Science》 2014年第4期377-389,共13页
It is well known that quantitative estimation of slip distributions on fault plane is one of the most important issues for earthquake source inversion related to the fault rupture process. The characteristics of slip ... It is well known that quantitative estimation of slip distributions on fault plane is one of the most important issues for earthquake source inversion related to the fault rupture process. The characteristics of slip distribution on the main fault play a fundamental role to control strong ground motion pattern. A large amount of works have also suggested that variable slip models inverted from longer period ground motion recordings are relevant for the prediction of higher frequency ground motions. Zhang et al. (Chin J Geophys 56:1412-1417, 2013) and Wang et al. (Chin J Geophys 56:1408-1411,2013) published their source inversions for the fault rupturing process soon after the April 20, 2013 Lushan earthquake in Sichuan, China. In this study, first, we synthesize two forward source slip models: the value of maximum slip, fault dimension, size, and dimension of major asperities, and comer wave number obtained from Wang's model is adopted to constrain the gen- eration of k-2 model and crack model. Next, both inverted and synthetic slip models are employed to simulate the ground motions for the Lushan earthquake based on the stochastic finite-fault method. In addition, for a comparison purpose, a stochastic slip model and another k-2 model (k 2 model II) with 2 times value of comer wave number of the original k-2 model (k 2 model I) are also employed for simulation for Lushan event. The simulated results characterized by Modified Mer- calli Intensity (MMI) show that the source slip models based on the inverted and synthetic slip distributions could capture many basic features associated with the ground motion patterns. Moreover, the simulated MMI distributions reflect the rupture directivity effect and the influence of the shallow velocity structure well. On the other hand, the simulated MMI bystochastic slip model and k 2 model II is apparently higher than observed intensity. By contrast, our simulation results show that the higher frequency ground motion is sensitive to the degree of slip roughness; therefore, we suggest that, for realistic ground- motion simulations due to future earthquake, it is imperative to properly estimate the slip roughness distribution. 展开更多
关键词 Stochastic finite-fault model strong groundmotion -2013 Lushan Mw6.6 earthquake Corner wavenumber k -2 model Crack model
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应用动态复合震源模型模拟汶川M_w 7.9地震强地面运动 被引量:15
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作者 孟令媛 史保平 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2011年第4期1010-1027,共18页
2008年5月12日中国汶川地区发生M_w7.9地震,震中位置103.4°E,31.0°N.主要发震断层空间展布长达300多公里,由南西方向到北东方向呈现明显的分段性,汶川—映秀段逆冲为主兼有少量的右旋走滑分量;安县—北川段为逆冲-右旋走滑的... 2008年5月12日中国汶川地区发生M_w7.9地震,震中位置103.4°E,31.0°N.主要发震断层空间展布长达300多公里,由南西方向到北东方向呈现明显的分段性,汶川—映秀段逆冲为主兼有少量的右旋走滑分量;安县—北川段为逆冲-右旋走滑的断层错动;青川段以右旋走滑为主兼有少量逆冲分量.采用改进后的复合震源强地面运动预测模型,建立了长为320km,宽为20km的断层破裂运动学模型,实现了断层分段、空间倾角、滑动方向连续变化的动态设定.数值模拟结果给出了近断层两侧(上、下盘)的地面加速度的分布特征,并同卧龙、郫县走石由及绵竹清平强震观测记录进行了对比分析.模拟加速度时程曲线无论在波形、持续时间、频率分量、峰值大小同观测记录都具有较好的相似性.利用现有83个已知经纬度台站的强震实测数据及数值模拟的结果同Boore等的新一代衰减关系(NGA)进行比较,对比模拟与实际观测水平峰值加速度的一致程度.近断层峰值加速度分布特征则进一步显示了在汶川、北川和青川附近明显的高值分布区域,同野外地质调查相一致.进一步的分析结果也表明,汶川—映秀段逆冲为主的断层上盘的运动量远大于断层下盘,在距离断层地表出露位置5km处,峰值加速度N-S、E-W及UP方向分量的比值分别为1.72:1、2.5:1及1.77:1.本文中给出的动态复合震源模型和近断层区域强震模拟的计算方法,对大震强地面运动的预测及实现近实时强地面运动分布特征的圈定(Shaking Map)有着重要的实际意义. 展开更多
关键词 汶川地震 断层分段 复合震源模型 强地面运动 NGA 峰值加速度 SHAKING MAP
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相似矩震级下地震近断层强地面运动的差异性比较 被引量:1
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作者 孟令媛 史海霞 周龙泉 《地球物理学进展》 CSCD 北大核心 2014年第2期529-534,共6页
2010年1月12日海地(Haiti)地区发生Mw 7.0地震,最终造成约31万人遇难,同年4月4日墨西哥南加州Baja地区发生Mw 7.2地震,2人遇难.Haiti地震的矩震级与Baja地震的矩震级相当,人员伤亡却远大于后者,其原因只是Haiti地区经济不发达,建筑物抗... 2010年1月12日海地(Haiti)地区发生Mw 7.0地震,最终造成约31万人遇难,同年4月4日墨西哥南加州Baja地区发生Mw 7.2地震,2人遇难.Haiti地震的矩震级与Baja地震的矩震级相当,人员伤亡却远大于后者,其原因只是Haiti地区经济不发达,建筑物抗震设防标准低、抗震性能差吗?地震造成建筑物倒塌及人员伤亡程度并非仅仅取决于建筑物的抗震程度,一方面与其释放的地震波辐射能相关,另一方面则主要与发震后造成的强地面运动的大小有关.目前尚无两个地震完整的强震观测记录,尤其是Haiti地震,针对二者构建几何尺度相同的动态复合震源模型(DCSM),选取两个地震中分别主要人员伤亡的城市太子港及Mexicalia城作为强地面运动模拟的特征城市,对比其近断层强地面运动的差异.模拟结果表明,Haiti地震近断层区域强地面运动显著高于Baja地震的强地面运动,两个地震模拟的烈度特征分布图也显示出了明显的强地面运动的差异性.因此,Haiti地震造成发震区域内建筑物损毁程度及人员伤亡情况均严重于Baja地震,重要原因之一在于Haiti地震地震波辐射能大且造成的强地面运动强. 展开更多
关键词 haiti地震 baja地震 强地面运动 模拟烈度分布图
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