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长江下游?南黄海地震带位于华北地震区东南部,带内地震主要受长江下游和南黄海海域内一系列断裂的控制,以中强地震活动为主,是地震活动较强的地区。本文充分利用了该带最新的区域地震台网资料,历史地震复核资料以及地震构造等资料,统计和计算了b值、V4和中小地震能量密度值,探讨了带内b值空间分布与历史强震、中小地震能量密度值空间分布的关系,进一步研究了长江下游?南黄海地震带的地震活动性特征。通过本文的研究,获得了长江下游?南黄海地震带的地震活动性参数,为概率危险性分析提供计算参数;探讨了该带未来百年地震发展趋势,初步判定了该带潜在地震危险区,为地震活动中长期预测提供参考依据和方法;其研究结果对地震区划、工程场地地震安全性评价、地震活动中长期预测均有重要意义。 相似文献
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通过对江苏地区及南黄海海域历史地震资料特点分析,将研究区历史地震类型分为相对安全类和相对危险类,并对地震类型的统计结果、地理分布特征及构造进行探讨. 结果表明:① 江苏及南黄海地区绝大多数中强以上历史地震类型为相对安全类,仅有13.8%的中强以上历史地震为相对危险类;② 江苏陆地、长江口以东海域和南黄海北部坳陷地区以相对安全类地震为主,苏中沿海南黄海海域地震类型分布较为复杂,相对安全类和相对危险类地震类型比例基本相当;③ 研究区历史地震类型统计结果和空间分布特征与现代地震序列类型实况非常吻合,反映本区地震活动具有继承性的特点.研究结果可以作为江苏省地震应急工作中震后早期趋势判定的参考依据. 相似文献
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汾渭地震带是我国东部一个强震活动带,其分段特征及地震活动趋势一直是研究热点,过去利用历史地震和地震地质资料,已得到许多有价值的结果.本文以第五代区划图中最新划分的汾渭地震带为研究区域,收集整理1970至2010年ML2.0~5.0级的现代地震资料,计算中小地震能量密度值,定量分析了该带中小地震空间分布图像特征,据此,确定了汾渭地震带的分区,并给出了各分区的地震活动性参数.对比分析表明,对汾渭地震带进行精细分区,可以更加真实地反映区域的地震活动水平,同一地震带的精细分区,可得到代表不同地震活动水平的地震活动性参数.同时,本研究也为地震带的精细划分提供了一种定量分析方法,对地震区划、工程场地地震安全性评价、地震活动中长期预测均有重要意义. 相似文献
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M. A. Nesterkina S. I. Sergeev I. A. Sanina N. L. Konstantinovskaya T. V. Danilova K. S. Sergeev 《Seismic Instruments》2018,54(4):408-416
A large number of events with sources in the immediate vicinity of an array are usually detected during seismological observations with seismic arrays. These events should be detected and correctly interpreted during processing of seismic array records in order to avoid clogging up the event catalog. This problem can be solved by classifying records of local events by genetic features and creating a databank with the most representative samples. The present paper considers local events recorded using a unique scientific setup, the Mikhnevo small aperture seismic array. Epicenters of local seismic events are located less than 5 km from the center of the array. Seismic responses of acoustic shock waves are also examined. Seismic events caused by anthropogenic sources are identified and classified using cluster, cross-correlation, and wavelet analysis. Events accompanied only by the arrival of surface waves, as well as events represented by body, surface, and acoustic waves, are identified. Shock wave events are classified as a separate category. A small group of supposedly natural weak events is also found. As a result, a databank of waveforms of local seismic events for the Mikhnevo seismic array is established. In the future, this will make it possible to automate their identification when investigating the seismicity of the East European Platform. 相似文献
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依据地震地热说原理,搜集国内外地震层析成像研究的成果.揭示了地震柱的物理属性。得出全球24个地震柱中已有资料的20个地震柱的深部地幔圆锥体均具有P波高速异常体特征,相反,只有火山和浅源地震活动而无中、深源地震活动的地区,比如冰岛和夏威夷,其地幔深部则为P波低速异常体。为解释这个重要的物理现象和构造现象,引入空化理论解释并提出了3个假设。地震柱概念是地震地热说赖以生存的物质基础和构造基础,是与当今流行的地质学派板块构造、地质力学和地幔柱理论的最大区别。深入解读地震柱的物理属性及其构造学意义.或许能为构造地质学和地球动力学带来革命性的大讨论。 相似文献
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提高地震安全,减轻地震灾害造成的经济损失和人员伤亡,地震信息社会服务是不可缺少的途径。地震信息主要包括法规建设、地震监测、震害防御和应急救援资料,服务内容包括法规宣传和普及、地震灾害影响服务、工程建设监管服务和防灾避震服务等。通过地震信息社会服务,可以增强社会防灾意识,提高建设工程安全,减轻地震灾害损失。 相似文献
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Bartolome C. Bautista 《中国地震研究》2002,16(3):236-242
It has taken more than a hundred years for seismic observations in the Philippines to evolve to a modern observation system.The responsibility of seismic observations was likewise transfeered from one agency to another during this same period of time.At present,the mandate of conducting seismic observatins in the Philippines rests with the Philippine Institute of Volcanology and Seismology(PHIVOLCS),In 2000,through a grant aid from the Japan International Cooperation Agency(JICA),the Philippine Seismic netowrk was upgraded to a digital system.As a result,a new set of seismic monitoring equipments was installed in all of the 34 PHIVOLCS seismic stations all over the country,Digital waveforms are now available for high level seismic data processing.and data acquisition and processing are now automated.Included in the upgrade is the provision of strong motion accelerographs in all stations whose data can now be used for studying ground motion and intensity attenuation relations,The new setup is now producing high-resolution data that can now be used for conducting basic seismological researches,Earthquake locations have now improved allowing for the modeling and delineation of earthquake source regions necessary for earthquake hazard studies.Current seismic hazard studies in the Philippines involve the estimation of ground motion using both probabilitstic and deterministic approaches,seismic microzonation studies of key cities using microtremor observations,paleoseismology and active faults mapping ,and identification of liquefaction-prone,landslide-prone nd tsunami-affected areas.The earthquake database is now being reviewed and completed with the addition of historical events and from data from regional databases,While studies of seismic hazards were primarily concentrated on a regional level ,PHIVOLCS is now focusing on doing these seismic hazard studies on a micriolevel.For Metro Manila,first generation hazard maps showing ground rupture,ground shaking and liquefaction hazards have recently been completed.Other large cities that are also at risk from large earthquakes are the next targets.The elements at risk such as population,lifelines,and vertical and horizontal structures for each of these urban centers are also being incorporated in the hazard maps for immediate use of planners,civil defense officials,policy-makers and engineers.The maps can also now be used to describe possible scenarios during times of strong events and how appropriate socio-economic and engineering responses could be designed.In addition,a rapid earthquake damage assessment system has been started which will attempt to produce immediate or rapid assessments identification of elements at risk durin times of strong earthquakes 相似文献
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管道抗震设计规范有关地震作用的综述 总被引:2,自引:0,他引:2
本文通过介绍中国、日本、美国、英国、挪威的相关管道抗震规范,阐述了目前管道应变设计和性能设计的理念、方法以及对地震作用输入的要求。通过比较各国管道抗震设计规范,保证震后管道维持其服务功能的抗震设计理念已经得到了全世界范围的认可。现在的管道设计正向性能设计的方向发展,并提出了两级抗震设防的方法。其中,第二级以管道不发生泄漏为抗震设防目标,对管道的地震安全性评价工作提出了更高的要求,管道设计需要的地震动和地面永久变形参数也越来越多。在目前管道工程的地震安全性评价工作中,存在概率方法和确定性方法这两种方法并举的局面。针对管道的抗液化和滑坡设计,地面永久位移可以利用分解的地震安全性评价概率方法得到。针对管道的抗断设计,断层未来位错量的估计方法现在仍以确定性方法为主,概率方法因为断层位错量沿着破裂带的分布较为复杂仍有待进一步研究。 相似文献
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针对当前混凝土结构建筑抗震性能测试方法存在的测试结果准确率较低的问题,提出一种新的测试方法,利用小波函数的伸缩平移操作得到一个函数族,对模拟地震信号进行小波变换。当函数族组成一个标准的正交基时,从连续小波变换中对地震信号进行重构,将去噪后的地震信号作为检测混凝土结构建筑抗震性能的信号样本。利用单自由度体系的动力平衡方程对地震的位移反应、速度反应加速度反应以及恢复力进行求解,通过强度折减系数计算公式和结构最大弹性反应计算公式,计算混凝土结构建筑的强度折减系数和结构最大弹性反应,最后在震动台上对混凝土结构建筑抗震性能进行测试。测试实验结果表明,所提方法可以实现对混凝土结构建筑抗震性能的测试,且测试结果准确程度较高。 相似文献