以便与表面地形学为震波地建模,我们在场转变的一个方法在二个不同坐标系统弄弯格子进矩形的格子。然后,在转变坐标系统的 3D 波浪方程被导出。波浪地在转变坐标系统用有限差别的方法被建模。模型计算证明这个方法能与波动的表面地形...以便与表面地形学为震波地建模,我们在场转变的一个方法在二个不同坐标系统弄弯格子进矩形的格子。然后,在转变坐标系统的 3D 波浪方程被导出。波浪地在转变坐标系统用有限差别的方法被建模。模型计算证明这个方法能与波动的表面地形学为震波地建模并且完成好结果。最后,直接、反映的波浪的精力曲线被分析证明表面地形学在震波的动态性质上有大影响。展开更多
Topography effects on the vertical vibration responses of pile group are revealed though numerical analysis and model tests.First,a series of model tests with different topography of ground and bedrock are conducted.T...Topography effects on the vertical vibration responses of pile group are revealed though numerical analysis and model tests.First,a series of model tests with different topography of ground and bedrock are conducted.The results indicate that displacement amplitude of the pile head in sloping ground topography is larger than in horizontal ground.Differential displacement at various positions of the pile cap is observed in non-horizontal topography.Afterwards,a numerical algorithm is employed to further explore the essential response characteristics in group piles of different topography configurations,which has been verified by the test results.The lengths of the exposed and frictional segment,together with the thickness of the subsoil layer,are the dominant factors which cause non-axisymmetric vibration at the pile cap.展开更多
Abstract Accurate simulation of seismic wave propaga- tion in complex geological structures is of particular interest nowadays. However conventional methods may fail to simulate realistic wavefields in environments wi...Abstract Accurate simulation of seismic wave propaga- tion in complex geological structures is of particular interest nowadays. However conventional methods may fail to simulate realistic wavefields in environments with great and rapid structural changes, due for instance to the presence of shadow zones, diffractions and/or edge effects. Different methods, developed to improve seismic model- ing, are typically tested on synthetic configurations against analytical solutions for simple canonical problems or ref- erence methods, or via direct comparison with real data acquired in situ. Such approaches have limitations,especially if the propagation occurs in a complex envi- ronment with strong-contrast reflectors and surface irreg- ularities, as it can be difficult to determine the method which gives the best approximation of the "real" solution, or to interpret the results obtained without an a priori knowledge of the geologic environment. An alternative approach for seismics consists in comparing the synthetic data with high-quality data collected in laboratory experi- ments under controlled conditions for a known configuration. In contrast with numerical experiments, laboratory data possess many of the characteristics of field data, as real waves propagate through models with no numerical approximations. We thus present a comparison of laboratory-scaled measurements of 3D zero-offset wave reflection of broadband pulses from a strong topographic environment immersed in a water tank with numerical data simulated by means of a spectral-element method and a discretized Kirchhoff integral method. The results indicate a good quantitative fit in terms of time arrivals and acceptable fit in amplitudes for all datasets.展开更多
Anomalous topographic swells and Cenozoic volcanism in east Africa have been associated with mantle plumes.Several models involving one or more fixed plumes beneath the northeastward migrating African plate have been ...Anomalous topographic swells and Cenozoic volcanism in east Africa have been associated with mantle plumes.Several models involving one or more fixed plumes beneath the northeastward migrating African plate have been suggested to explain the space-time distribution of magmatism in east Africa.We devise paleogeographically constrained global models of mantle convection and,based on the evolution of flow in the deepest lower mantle,show that the Afar plume migrated southward throughout its lifetime.The models suggest that the mobile Afar plume provides a dynamically consistent explanation for the spatial extent of the southward propagation of the east African rift system(EARS),which is difficult to explain by the northeastward migration of Africa over one or more fixed plumes alone,over the last≈45 Myr.We further show that the age-progression of volcanism associated with the southward propagation of EARS is consistent with the apparent surface hotspot motion that results from southward motion of the modelled Afar plume beneath the northeastward migrating African plate.The models suggest that the Afar plume became weaker as it migrated southwards,consistent with trends observed in the geochemical record.展开更多
利用WRF(Weather Research Forecast)中尺度模式对2006年6月5—7日福建地区出现的一次大暴雨过程进行了数值模拟,根据模式输出的物理量进行了诊断分析,并通过地形敏感性试验讨论福建地形对此次暴雨的影响。结果表明:中尺度WRF模式成功...利用WRF(Weather Research Forecast)中尺度模式对2006年6月5—7日福建地区出现的一次大暴雨过程进行了数值模拟,根据模式输出的物理量进行了诊断分析,并通过地形敏感性试验讨论福建地形对此次暴雨的影响。结果表明:中尺度WRF模式成功模拟出了这次暴雨的雨况及高低空流场分布。这是建立在静止锋、低空切变线和低空急流等系统基础上的一次典型的华南准静止锋降水。冷暖气流在底层交汇并产生强烈的垂直上升运动,不稳定能量的释放是暴雨发生和维持的机制之一,位温的垂直分布有利于低层涡度的发展。福建北部的喇叭口地形和武夷山迎风坡共同作用,导致西南气流的转向辐合,触发了中尺度切变线和中尺度涡旋的形成,加速了上升运动和中层对流发展,有利于位于迎风坡的建瓯、邵武、蒲城等地区降水的增强。展开更多
基金This research is sponsored by the Scientific Research Project of the China Geological Survey "Basic Theory, Special Collection and Special Process Method Research on Metal Mineral Seismic Exploration" (Project Number: 2000201 0002146).
文摘以便与表面地形学为震波地建模,我们在场转变的一个方法在二个不同坐标系统弄弯格子进矩形的格子。然后,在转变坐标系统的 3D 波浪方程被导出。波浪地在转变坐标系统用有限差别的方法被建模。模型计算证明这个方法能与波动的表面地形学为震波地建模并且完成好结果。最后,直接、反映的波浪的精力曲线被分析证明表面地形学在震波的动态性质上有大影响。
基金National Science Foundation of China under Grant Nos.51622803 and 51778092Innovation Group Science Foundation of the Natural Science Foundation of Chongqing,China under Grant No.cstc2020jcyjcxttX0003China Scholarship Council(File No:201806050121)for financial support to visit Purdue University。
文摘Topography effects on the vertical vibration responses of pile group are revealed though numerical analysis and model tests.First,a series of model tests with different topography of ground and bedrock are conducted.The results indicate that displacement amplitude of the pile head in sloping ground topography is larger than in horizontal ground.Differential displacement at various positions of the pile cap is observed in non-horizontal topography.Afterwards,a numerical algorithm is employed to further explore the essential response characteristics in group piles of different topography configurations,which has been verified by the test results.The lengths of the exposed and frictional segment,together with the thickness of the subsoil layer,are the dominant factors which cause non-axisymmetric vibration at the pile cap.
基金the INSIS Institute of the French CNRS,Aix-Marseille Universitythe Carnot Star Institute,the VISTA Projectthe Norwegian Research Council through the ROSE Project for financial support
文摘Abstract Accurate simulation of seismic wave propaga- tion in complex geological structures is of particular interest nowadays. However conventional methods may fail to simulate realistic wavefields in environments with great and rapid structural changes, due for instance to the presence of shadow zones, diffractions and/or edge effects. Different methods, developed to improve seismic model- ing, are typically tested on synthetic configurations against analytical solutions for simple canonical problems or ref- erence methods, or via direct comparison with real data acquired in situ. Such approaches have limitations,especially if the propagation occurs in a complex envi- ronment with strong-contrast reflectors and surface irreg- ularities, as it can be difficult to determine the method which gives the best approximation of the "real" solution, or to interpret the results obtained without an a priori knowledge of the geologic environment. An alternative approach for seismics consists in comparing the synthetic data with high-quality data collected in laboratory experi- ments under controlled conditions for a known configuration. In contrast with numerical experiments, laboratory data possess many of the characteristics of field data, as real waves propagate through models with no numerical approximations. We thus present a comparison of laboratory-scaled measurements of 3D zero-offset wave reflection of broadband pulses from a strong topographic environment immersed in a water tank with numerical data simulated by means of a spectral-element method and a discretized Kirchhoff integral method. The results indicate a good quantitative fit in terms of time arrivals and acceptable fit in amplitudes for all datasets.
基金supported by ARC grants IH130200012 and DP130101946supported by the National Science Foundation under award EAR-1645775undertaken with the assistance of resources from the National Computational Infrastructure(NCI),which is supported by the Australian Government。
文摘Anomalous topographic swells and Cenozoic volcanism in east Africa have been associated with mantle plumes.Several models involving one or more fixed plumes beneath the northeastward migrating African plate have been suggested to explain the space-time distribution of magmatism in east Africa.We devise paleogeographically constrained global models of mantle convection and,based on the evolution of flow in the deepest lower mantle,show that the Afar plume migrated southward throughout its lifetime.The models suggest that the mobile Afar plume provides a dynamically consistent explanation for the spatial extent of the southward propagation of the east African rift system(EARS),which is difficult to explain by the northeastward migration of Africa over one or more fixed plumes alone,over the last≈45 Myr.We further show that the age-progression of volcanism associated with the southward propagation of EARS is consistent with the apparent surface hotspot motion that results from southward motion of the modelled Afar plume beneath the northeastward migrating African plate.The models suggest that the Afar plume became weaker as it migrated southwards,consistent with trends observed in the geochemical record.
基金supported by the Natural Science Foundation of China(No.41574127)the China Postdoctoral Science Foundation(No.2017M622608)the project for the independent exploration of graduate students at Central South University(No.2017zzts008)
文摘利用WRF(Weather Research Forecast)中尺度模式对2006年6月5—7日福建地区出现的一次大暴雨过程进行了数值模拟,根据模式输出的物理量进行了诊断分析,并通过地形敏感性试验讨论福建地形对此次暴雨的影响。结果表明:中尺度WRF模式成功模拟出了这次暴雨的雨况及高低空流场分布。这是建立在静止锋、低空切变线和低空急流等系统基础上的一次典型的华南准静止锋降水。冷暖气流在底层交汇并产生强烈的垂直上升运动,不稳定能量的释放是暴雨发生和维持的机制之一,位温的垂直分布有利于低层涡度的发展。福建北部的喇叭口地形和武夷山迎风坡共同作用,导致西南气流的转向辐合,触发了中尺度切变线和中尺度涡旋的形成,加速了上升运动和中层对流发展,有利于位于迎风坡的建瓯、邵武、蒲城等地区降水的增强。