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971.
972.
THE 3-D VELOCITY STRUCTURE OF CRUST AND UPPERMOST MANTLE AND ITS TECTONIC IMPLICATIONS IN FUJIAN PROVINCE 下载免费PDF全文
It is important to detect the fine velocity structures of the crust and uppermost mantle to understand the regional tectonic evolution, earthquake generation processes, and to conduct earthquake risk assessment. The inversion of uppermost mantle velocity and Moho depth are strongly influenced by crustal velocity heterogeneity. In this study, we collected first arrivals of Pg and Pn and secondary arrivals of Pg wave from the seismograms recorded at Fujian provincial seismic network stations. New 3-D P-wave velocities were inverted by multi-phase joint inversion method in Fujian Province. Our results show that the fault zones in Fujian Province have various velocity patterns. The shallow crust is characterized by high velocity that represents mountains, while the mid-lower crust shows low velocities. The anomalous velocities are correlated closely with tectonic faults in Fujian Province. Velocity anomalies mainly show NE-trending distribution, especially in the mid-lower crust and uppermost mantle, which is consistent with the NE-trending of the regional main fault zones. Meanwhile, a part of velocity patterns show NW trending, which is related to the secondary NW-oriented faults. Such velocity distribution also shows a geological structural pattern of "zoning in east-west direction and blocking in north-south direction" in Fujian area.
In the crust, a low velocity zone is found along Zhenghe-Dapu fault zone as mentioned by previous study, however our result shows the low velocity exists at depth of 20~30km in mid-lower crust. Compared with previous study, this low velocity zone is larger and deeper both in range and depth.
The crustal thickness of 28~35km from our joint inversion is similar to the results from the receiver functions of previous studies. The thinnest crust(28km)is observed at offshore in the north of Quanzhou; while the thickest crust(35km)is located west of Zhangzhou near the Zhenghe-Dapu fault zone. Generally, thinner crustal thickness is found in offshore of Fujian Province, and thicker crustal thickness is in the mainland. However, we also found that crustal thickness becomes thinner along the east side of Yongan-Jinjiang Fault.
The values of Pn velocities in the region vary from 7.71 to 8.26km/s. The velocity distribution of the uppermost mantle presents a large inhomogeneity, which is correlated with the distribution of the fault zone. High Pn velocity anomalies are found mainly along the west side of the Zhenghe-Dapu fault zone(F2), and the east side of the Shaowu-Heyuan fault zone(F1), which is strip-shaped throughout the central part of Fujian. Low Pn velocity anomalies are observed along the coast and Taiwan Straits, including the Changle-Zhaoan fault zone, the coastal fault zone, and the Fuzhou Basin. We also found a low Pn velocity anomaly zone, which extends to the coast, in the Shaowu-Heyuan fault zone at the junction of the Fujian, Guangdong and Jiangxi Provinces. In the west of Taiwan Straits, both high and low Pn velocity anomalies are observed.
Our results show that the historical strong earthquakes(larger than magnitude 6.0) are mainly distributed between positive and negative anomaly zones at different depth profiles of the crust, and similar anomalies distribution also exists at the uppermost mantle, suggesting that the occurrence of strong earthquakes in the region is not only related to the anomalous crustal velocity structure, but also affected by the velocity anomaly structure from the uppermost mantle. 相似文献
973.
郯庐断裂带中南段与西太平洋板块俯冲以及华北克拉通破坏密切相关,研究其深部结构对于了解郯庐断裂带构造演化过程、强震的孕震机制具有重要意义.本文利用密集台阵波形资料,采用接收函数H-κ叠加方法获得郯庐断裂带中南段的地壳厚度和泊松比.结果显示,郯庐断裂带中南段的地壳厚度分布以庐江和新沂为分段点呈现出与地质构造相关的南北向分段特征:南段的断裂带西侧的地壳厚度比东侧厚约5 km,中段的断裂带两侧厚度差异减小至约3 km,而北段则表现为断裂带下方隆起特征.郯庐断裂带沿线的地壳泊松比较高,推测是地幔物质的热侵蚀和化学侵蚀所致.根据艾里地壳均衡理论,南段地壳厚度与地表高程相关,基本符合艾里地壳均衡模型;而中段两侧地表高程基本相同,两侧地壳厚度差异表明不符合艾里地壳均衡模型,可能与断裂带西侧的华北克拉通岩石圈比东侧扬子克拉通岩石圈具有更高密度有关,高密度岩石圈产生向下拖拽力导致莫霍面相对理论值偏深;北段的莫霍面也偏深,与中段断裂带西侧情况类似,该区域基本位于华北克拉通块体.在郯城地震破裂范围内,存在莫霍面的不平滑过渡、活动块体的边界带以及断裂的分叉与交汇这三类结构特征.在上述结构特征的区域应力更集中,从而孕育产生了1668年郯城8.5级地震. 相似文献
974.
975.
研究中国大陆强震区岩石圈力学特性对理解该区强震孕育环境及发生机理具有重要意义。岩石圈有效弹性厚度(Te)及初始载荷比(F)与大陆岩石圈力学特征紧密相关。本文利用导纳和相关函数联合反演方法以及贝叶斯最优参数估计方法,基于全球最新的WGM2012重力异常数据、 ETOPO1地形数据和CRUST1.0模型的Moho面深度数据,计算中国大陆岩石圈有效弹性厚度(Te)和初始载荷比(F)。通过对比分析,探索该地区岩石圈Te、F、Te梯度和F梯度对强震孕育环境的影响作用。本文发现,强震构造区岩石圈一般具有较低的Te值、较高的Te和F梯度值。结果表明,岩石圈综合力学强度较低且力学强度和内部载荷变化剧烈的地区,往往更有利于强震的孕育。 相似文献
976.
977.
Ground penetrating radar (GPR) is often used for investigating peat thickness. The quality of GPR measurements depends on electromagnetic wave (EMW) velocity estimates. The objective of this study is to determine the number of manual measurements required to minimize EMW velocity error in peatlands. A total of 175 manually measured peat thicknesses are used with a depth‐to‐target method to assess EMW velocity in two southern Quebec peatlands. Mean measured EMW velocities are 0·040 and 0·039 m ns–1 with standard deviations of 0·013 and 0·008 m ns–1. Statistical analyses show that at least 30 calibration points are required to minimize the EMW velocity error, regardless of the geological setting. Copyright © 2008 John Wiley & Sons, Ltd. 相似文献
978.
长输油气管道的设计参数和计算方法与一般工程有较大区别,本文着重从抗震设防标准、管道液化反应和活动断裂三个方面阐述本人的一些看法和建议,给设计人员设计埋地管道时作参考。 相似文献
979.
The Curie depth map of India compiled from MAGSAT data has been used for preparing the lithosphere thickness and the surface
heat flow density maps of the Indian Craton, utilizing the concept of magnetothermometry. The lithosphere thicknesses of the
major Indian geological units/provinces, as obtained from the prepared map, are found to be in reasonably good agreement with
the previously published values for these regions. Also, the surface heat flow density values obtained from the prepared maps
closely follow the previously published results. The maps are useful in providing first order estimates of lithosphere thickness
and surface heat flow density of the important geological units/provinces of India. 相似文献
980.