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Variations of shear-wave splitting parameters in the source region of the 2023 Türkiye doublet earthquakes 被引量:2
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作者 Xuelai Cao Lijun Chang 《Earthquake Science》 2024年第2期174-187,共14页
In this study,the shear-wave splitting parameters of local seismic events from the source regions of the 2023 Türkiye MW7.7 and MW7.6 doublet earthquakes(event 1 and event 2,respectively)were measured from June 1... In this study,the shear-wave splitting parameters of local seismic events from the source regions of the 2023 Türkiye MW7.7 and MW7.6 doublet earthquakes(event 1 and event 2,respectively)were measured from June 1,2022,to April 25,2023,and their spatiotemporal characteristics were analyzed.The results revealed clear spatial and temporal differences.Spatially,the dominant fast-wave polarization direction at each station shows a strong correlation with the direction of the maximum horizontal principal compressive stress,as characterized by focal mechanism solutions of seismic events(MW≥3.5)near the station.The dominant fast-wave polarization direction and the regional stress field also showed a strong correlation with the intermovement of the Arabian Plate,African Plate,and Anatolian Block.Along the Nurdagi-Pazarcik fault zone,the seismic fault of event 1,stations closer to the middle of the fault where the mainshock occurred exhibited notably greater delay times than stations located towards the ends of the fault and far from the mainshock.In addition,the stations located to the east of the Nurdagi-Pazarcik fault and to the north of the Sürgüfault also exhibited large delay times.The spatial distribution of shear-wave splitting parameters obtained from each station indicates that the upper-crust anisotropy in the source area is mainly controlled by the regional stress field,which is closely related to the state of the block motion.During the seismogenic process of the MW7.7 earthquake,more stress accumulated in the middle of the Nurdagi-Pazarcik fault than at either end of the fault.Under the influence of the MW7.7 and MW7.6 events,the stress that accumulated during the seismogenic process of the earthquake doublet may have migrated towards some areas outside the aftershock intensive area after the earthquakes,and the crustal stress and its adjustment range near the outer stations increased significantly.With the exception of two stations with few effective events,all stations showed a consistent change in shear-wave splitting parameters over time.In particular,each station showed a decreasing trend in delay times after the doublet earthquakes,reflecting the obvious intensification of crustal stress adjustment in the seismogenic zone after the doublet earthquakes.With the occurrence of the earthquake doublet and a large number of aftershocks,the stress accumulated during the seismogenic process of the doublet earthquakes is gradually released,and then the adjustment range of crustal stress is also gradually reduced. 展开更多
关键词 Türkiye doublet earthquakes shear-wave splitting upper crustal anisotropy stress field
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Algebraic processing technique for extracting frequency-dependent shear-wave splitting parameters in an anisotropic medium 被引量:1
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作者 韩开锋 曾新吾 《Applied Geophysics》 SCIE CSCD 2011年第2期134-140,177,共8页
Based on the dual source cumulative rotation technique in the time-domain proposed by Zeng and MacBeth(1993),a new algebraic processing technique for extracting shear-wave splitting parameters from multi-component V... Based on the dual source cumulative rotation technique in the time-domain proposed by Zeng and MacBeth(1993),a new algebraic processing technique for extracting shear-wave splitting parameters from multi-component VSP data in frequency-dependent medium has been developed.By using this dual source cumulative rotation technique in the frequency-domain(DCTF),anisotropic parameters,including polarization direction of the shear-waves and timedelay between the fast and slow shear-waves,can be estimated for each frequency component in the frequency domain.It avoids the possible error which comes from using a narrow-band filter in the current commonly used method.By using synthetic seismograms,the feasibility and validity of the technique was tested and a comparison with the currently used method was also given.The results demonstrate that the shear-wave splitting parameters frequency dependence can be extracted directly from four-component seismic data using the DCTF.In the presence of larger scale fractures,substantial frequency dependence would be found in the seismic frequency range,which implies that dispersion would occur at seismic frequencies.Our study shows that shear-wave anisotropy decreases as frequency increases. 展开更多
关键词 Algebraic processing technique ANISOTROPY shear-wave splitting frequency dependence
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Shear-wave splitting in the crust:Regional compressive stress from polarizations of fast shear-waves 被引量:21
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作者 Yuan Gao Yutao Shi +1 位作者 Jing Wu Lingxue Tai 《Earthquake Science》 CSCD 2012年第1期35-45,共11页
When propagating through anisotropic rocks in the crust, shear-waves split into faster and slower components with almost orthogonal polarizations. For nearly vertical propagation the polarization of fast shear- wave ... When propagating through anisotropic rocks in the crust, shear-waves split into faster and slower components with almost orthogonal polarizations. For nearly vertical propagation the polarization of fast shear- wave (PFS) is parallel to both the strike of the cracks and the direction of maximum horizontal stress, therefore it is possible to use PFS to study stress in the crust. This study discusses several examples in which PFS is applied to deduce the compressive stress in North China, Longmenshan fault zone of east edge of Tibetan plateau and Yunnan zone of southeast edge of Tibetan plateau, also discusses temporal variations of PFS orientations of 1999 Xiuyan earthquake sequences of northeastern China. The results are consistent to those of other independent traditional stress measurements. There is a bridge between crustal PFS and the crustal principal compressive stress although there are many unclear disturbance sources. This study suggests the PFS results could be used to deduce regional and in situ principal compressive stress in the crust only if there are enough seismic stations and enough data. At least, PFS is a useful choice in the zone where there are a large number of dense seismic stations. 展开更多
关键词 polarization of fast shear-wave shear-wave splitting compressive stress in the crust seismic anisotropy
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Variational characteristics of shear-wave splitting on the 2001 Shidian earthquakes in Yunnan, China 被引量:9
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作者 GAO Yuan LIANG Wei +5 位作者 DING Xiang XUE Yan CAI Ming-jun LIU Xi-qiang SU You-jin PENG Li-guo 《Acta Seismologica Sinica(English Edition)》 CSCD 2004年第6期635-641,共7页
In 2001 three earthquakes occurred in Shidian in Yunnan Province, which were the MS=5.2 on April 10, the MS=5.9 on April 12 and the MS=5.3 on June 8. Based on the data from the station Baoshan of Yunnan Telemetry Digi... In 2001 three earthquakes occurred in Shidian in Yunnan Province, which were the MS=5.2 on April 10, the MS=5.9 on April 12 and the MS=5.3 on June 8. Based on the data from the station Baoshan of Yunnan Telemetry Digital Seismograph Network, the variational characteristics of shear-wave splitting on these series of strong earthquakes has been studied by using the systematic analysis method (SAM) of shear-wave splitting. The result shows the time delays of shear-wave splitting basically increase with earthquake activity intensifying. However the time delays abruptly decrease immediately before strong aftershocks. It accords with the stress relaxation before earthquakes, which was found recently in study on shear-wave splitting. The result suggests it is significant for reducing the harm degree of earthquakes to develop the stress-forecasting on earthquake in strong active tectonic zones and economic developed regions or big cities under the danger of strong earthquakes. 展开更多
关键词 shear-wave splitting temporal change earthquake stress-forecasting Shidian earthquakes SAM analysis
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Preliminary analysis of the shear-wave splitting observations from the Qiaojia seismic array 被引量:2
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作者 Hao Liang Zhen Fu +1 位作者 Chunlai Li Lisheng Xu 《Earthquake Science》 2020年第2期82-97,共16页
A total of 351 shear-wave splitting results at 25 stations were obtained from the seismic data recorded in period of January,2013 to December,2016,by a broadband seismic array deployed in the northern segment of Xiaoj... A total of 351 shear-wave splitting results at 25 stations were obtained from the seismic data recorded in period of January,2013 to December,2016,by a broadband seismic array deployed in the northern segment of Xiaojiang Fault Zone(n-XJFZ).Meanwhile,the stress field of the n-XJFZ was determined by inverting 140 focal mechanism solutions of the small earthquakes within the study area which were recorded in the same period.This determination confirmed a compressive stress in NW-SE orientation and an extensional stress in the NE-SW orientation,with little difference from those released by previous studies.The shear-wave splitting results show a spatial complexity in polarization orientation,different from one site to another.How-ever,the polarization orientations integrated for the subareas suggest that the fault trends seemingly played important roles.All the subareas bear two dominant orientations,N10°E and N90°E,both of which are different from the azimuths of the principal compressive stress,due to the fault distribution.The time delay averaged over the entire region is 4.56 ms/km,close to that of the upper boundary of the generally accepted interval worldwide but larger than those in most of the investigated regions in the Chinese mainland,which probably implies an alignment of more micro-cracks in the n-XJFZ.Interestingly,the 2014 Ms6.5 Ludian earthquake was found to have caused a variation in the time delays of the slow shear waves within the study area though its epicenter was outside.This earthquake resulted in an evident drop of the time delays remaining for 4 months,however,lifted a bit the time-delay level with respect to that prior to the earthquake. 展开更多
关键词 seismic array Xiaojiang fault zone shear-wave splitting polarization orientation time delay
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Systematic Analysis Method of Shear-Wave Splitting:SAM Software System 被引量:5
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作者 GaoYuan LiuXiqiang +1 位作者 LiangWei HaoPing 《Earthquake Research in China》 2004年第4期365-372,共8页
In order to make a more effective use of the data from regional digital seismograph networks and to promote the study on shear wave splitting and its application to earthquake stress-forecasting, SAM software system, ... In order to make a more effective use of the data from regional digital seismograph networks and to promote the study on shear wave splitting and its application to earthquake stress-forecasting, SAM software system, i.e., the software on systematic analysis method of shear wave splitting has been developed. This paper introduces the design aims, system structure, function and characteristics about the SAM software system and shows some graphical interfaces of data input and result output. Lastly, it discusses preliminarily the study of shear wave splitting and its application to earthquake forecasting. 展开更多
关键词 SAM software system shear-wave splitting Systematic analysis method Earthquake stress-forecasting
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The Character of Shear-wave Splitting in Marble in the Critical State of Rupture 被引量:2
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作者 Gao YuanCenter for Analysis and Prediction, China Seismological Burean, Beijing 100036, China 《Earthquake Research in China》 2001年第1期8-14,共7页
This paper mainly observed and analyzed the character of shear-wave splitting in rock specimens while they were in the critical state of rupture. The rock specimens for study are made of Laizhou marble from Shandong, ... This paper mainly observed and analyzed the character of shear-wave splitting in rock specimens while they were in the critical state of rupture. The rock specimens for study are made of Laizhou marble from Shandong, China. A series of records were obtained from two rock specimens when they were in the critical state of rupture. The result shows that, in the critical state just before rock rupture, there may be the phenomenon of rise and fall in the time delay of shear-wave splitting, even though the load was kept constant. That is to say, the time delay of shear-wave splitting may have a falling process before rock rupture. 展开更多
关键词 shear-wave splitting CRITICAL state RUPTURE Time delay MARBLE
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A seismological evidence for the northwestward movement of Africa with respect to Iberia from shear-wave splitting
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作者 Mohamed K.Salah 《Geoscience Frontiers》 SCIE CAS 2012年第5期681-696,共16页
Seismic anisotropy and its main features along the convergent boundary between Africa and Iberia are detected through the analysis of teleseismic shear-wave splitting. Waveform data generated by 95 teleseismic events ... Seismic anisotropy and its main features along the convergent boundary between Africa and Iberia are detected through the analysis of teleseismic shear-wave splitting. Waveform data generated by 95 teleseismic events recorded at 17 broadband stations deployed in the western Mediterranean region are used in the present study. Although the station coverage is not uniform in the Iberian Peninsula and north- west Africa, significant variations in the fast polarization directions and delay times are observed at stations located at different tectonic domains. Fast polarization directions are oriented predominantly NW-SE at most stations which are close to the plate boundary and in central Iberia; being consistent with the absolute plate motion in the region. In the northern part of the Iberian Peninsula, fast velocity direc- tions are oriented nearly E--W; coincident with previous results. Few stations located slightly north of the plate boundary and to the southeast of lberia show E--W to NE-SW fast velocity directions, which may be related to the Alpine Orogeny and the extension direction in lberia. Delay times vary significantly between 0.2 and 1.9 s for individual measurements, reflecting a highly anisotropic structure beneath the recording stations. The relative motion between Africa and lberia represents the main reason for the observed NW-SE orientations of the fast velocity directions. However, different causes of anisotropy have also to be considered to explain the wide range of the splitting pattern observed in the western Mediterranean region. Many geophysical observations such as the low Pn velocity, lower lithospheric Q values, higher heat flow and the presence of high conductive features support the mantle flow in the western Mediterranean, which may contribute and even modify the splitting pattern beneath the studied region. 展开更多
关键词 shear-wave splitting Seismic anisotropy Iberian Peninsula Northwest Africa Western Mediterranean
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Shear-wave Splitting in the Crust beneath Shandong and Its Adjacent Area
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作者 Miao Qingjie Liu Xiqiang +3 位作者 Shi Yuyan Qu Junhao Zheng Jianchang Tian Fengdong 《Earthquake Research in China》 CSCD 2016年第4期556-565,共10页
Based on the seismic data of near-field source from the Shandong Digital Seismic Network,this study obtained the shear-wave splitting parameters from multiple stations. The results show that dominant directions of pol... Based on the seismic data of near-field source from the Shandong Digital Seismic Network,this study obtained the shear-wave splitting parameters from multiple stations. The results show that dominant directions of polarizations of fast shear-waves reflect the spatial distribution characteristics of tectonic stress in this area,CHD and LIS stations show 2 dominant directions,and reveals that the crustal seismic anisotropy in the Shandong area is constrained by the regional stress background,local failure and structure. 展开更多
关键词 Shandong area shear-wave splitting POLARIZATION Seismic anisotropy Tectonic stress
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The Temporal Evolution of Shear-wave Splitting and Geoelectrical Anisotropy During Yongdeng Earthquake
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作者 RuanAiguo LiQinghe 《Earthquake Research in China》 2001年第2期134-145,共12页
The temporal evolution of shear-wave splitting and geoelectrical anisotropy of earth media during the preparation and occurrence of the Yongdeng MS5.8 earthquake is studied based on the digital seismic data and contin... The temporal evolution of shear-wave splitting and geoelectrical anisotropy of earth media during the preparation and occurrence of the Yongdeng MS5.8 earthquake is studied based on the digital seismic data and continuous magnetotelluric (MT) records. The results show that the direction of polarization of the fast S-wave gradually rotated from north by east to north by west before the Yongdeng earthquake and returned to north by east after the earthquake. Moreover, the time delay between the fast S wave and slow S wave increased to the largest until the earthquake occurred. On the other hand, the directions of geoelectrical principal axes also changed before earthquake, and exhibited identical characteristics in the frequency domain. The direction of the axis (pxy), which was originally perpendicular to the fault near station, varied from N17°to N15°before earthquake, and returned to north by east after the earthquake. Correspondingly, the change of pxy was most obvious in the period range of 160 s to 226 s, but the variation of pyx was less obvious. The focal mechanism solution of the earthquake showed that the direction of P-axis was N15°. Conclusions are: (1) The fast S-wave polarization, one of the geoelectrical principal axes and the P-axis were in agreement in orientation during earthquake preparation, which is the result of the alignment of EDA cracks; (2) The fact that the geoelectrical axes identically varied with frequency demonstrated that EDA is really widespread in the crust; (3) The variation of MT apparent resistivity also showed the existence of anisotropy and has its own features: The static anisotropy of resistivity is controlled by the tectonic conditions of the station, while the dynamic anisotropy is caused and affected by the seismic stress field; The resistivity along the axis parallel to the P-axis showed the most obvious variation, while the difference in variation with frequency shows that the variation of resistivity depends not only on direction but also on buried depth. 展开更多
关键词 Yongdeng earthquake shear-wave splitting Geoelectrical anisotropy
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Study on Correlation and Quantiative Error Estimation Method Among the Splitting Shear Wave Identification Methods
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作者 Liu Xiqiang Zhou Huilan +1 位作者 Li Hong Gai Dianguang 《Earthquake Research in China》 2000年第3期53-62,共10页
Based on the propagation characteristics of shear wave in the anisotropic layers,thecorrelation among several splitting shear-wave identification methods hasbeen studied.Thispaper puts forward the method estimating sp... Based on the propagation characteristics of shear wave in the anisotropic layers,thecorrelation among several splitting shear-wave identification methods hasbeen studied.Thispaper puts forward the method estimating splitting shear-wave phases and its reliability byusing of the assumption that variance of noise and useful signal data obey normaldistribution.To check the validity of new method,the identification results and errorestimation corresponding to 95% confidence level by analyzing simulation signals have beengiven. 展开更多
关键词 ANISOTROPY shear-wave splitting Identification methods CORRELATION ERROR estimation
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On Shear Wave Splitting in the Zhangjiakou-Bohai Sea Seismic Belt
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作者 Sun Jin Shi Yutao +1 位作者 Zhao Bo Gao Yuan 《Earthquake Research in China》 2014年第2期200-209,共10页
The Zhangjiakou-Bohai Sea seismic belt is an important seismic zone in North China. The direction of principal compressive stress is near EW in this region. According to digital seismic data from the Capital Region fr... The Zhangjiakou-Bohai Sea seismic belt is an important seismic zone in North China. The direction of principal compressive stress is near EW in this region. According to digital seismic data from the Capital Region from September 2005 to September 2010,and using the SAM method,the spatial distribution of the crust anisotropy characteristics are studied and discussed in the middle-eastern part of the Zhangjiakou-Bohai Sea seismic belt. The principal polarization direction,which is near EW direction,is obvious in the middleeastern Zhangjiakou-Bohai Sea seismic belt. The spatial distribution of polarization direction crossing the Zhangjiakou-Bohai Sea seismic belt shows that there is little difference among the Yanshan uplift area,inside of the seismic zone and North China basin,and the principal polarization direction is near EW. 展开更多
关键词 Crustal anisotropy shear-wave splitting POLARIZATION Time delay The Zhangjiakou-Bohai Sea seismic belt
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Evidence supporting New Geophysics 被引量:7
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作者 Stuart Crampin Yuan Gao 《Earth and Planetary Physics》 2018年第3期173-188,共16页
In the last decade a New Geophysics has been proposed,whereby the crust and uppermost ~400 km of the mantle of the Earth are so pervaded by closely-spaced stress-aligned microcracks(intergranular films of hydrated mel... In the last decade a New Geophysics has been proposed,whereby the crust and uppermost ~400 km of the mantle of the Earth are so pervaded by closely-spaced stress-aligned microcracks(intergranular films of hydrated melt in the mantle) that in situ rocks verge on failure by fracturing,and hence are critical-systems that impose a range of fundamentally-new properties on conventional sub-critical geophysics.Enough of these new properties have been observed to confirm that New Geophysics is a new understanding of fluid/rock deformation with important implications and applications.Evidence supporting New Geophysics has been published in a wide variety of publications.Here,for clarification,we summarise in one document the evidence supporting New Geophysics. 展开更多
关键词 EARTHQUAKES ERUPTIONS MICROCRACKS NEW GEOPHYSICS shear-wave splitting stress-forecasting
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Shear-wave splitting and anisotropy in crust of Dabieshan orogenic belt 被引量:1
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作者 Chunyong Wang Zhifeng Ding +2 位作者 Xiebo Chen Guangying Chen Guiyin Li 《Chinese Science Bulletin》 SCIE EI CAS 1998年第9期738-742,共5页
The shear-wave splitting was analyzed on the deep seismic sounding profile crossing the Dabieshan area. The direction difference between Sg and SmS fast wave polarization indicates that the modern regional tectonic st... The shear-wave splitting was analyzed on the deep seismic sounding profile crossing the Dabieshan area. The direction difference between Sg and SmS fast wave polarization indicates that the modern regional tectonic stress field in the Dabieshan area exists only in upper crust, while the crack alignment caused by the Triassic collision between the North China and the Yangtze blocks had been preserved in mid-lower curst. 展开更多
关键词 DABIESHAN OROGENIC belt deep seismic sounding profile shear-wave splitting ANISOTROPY crack alignment.
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Major methods of seismic anisotropy
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作者 Xinai Zhao Jing Wu 《Earthquake Research Advances》 CSCD 2024年第3期82-91,共10页
Seismic anisotropy reveals that seismic wave velocity, amplitude, and other physical properties show variations in different directions, which can be divided into lattice-preferred orientation(LPO) and shape-preferred... Seismic anisotropy reveals that seismic wave velocity, amplitude, and other physical properties show variations in different directions, which can be divided into lattice-preferred orientation(LPO) and shape-preferred orientation(SPO) according to its physical mechanisms. The main methods for studying seismic anisotropy include shearwave splitting analysis, P-wave travel time inversion and surface-wave tomography, etc. There are some differences and correlations among these methods. Seismic anisotropy is an important way to reveal the dynamic processes of crust-mantle evolution, and it is significant for monitoring crustal stress changes and improve seismic exploration studies. With the help of long-term observation, the application of machine learning techniques and combining inversion based on multiple phases would become potential developments in seismic anisotropy studies. This may improve the understanding of complex seismic anisotropic models, such as multiple layers anisotropy with an oblique axis of symmetry. 展开更多
关键词 Seismic anisotropy shear-wave splitting P-wave travel time inversion Surface-wave tomography
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山东乳山震群剪切波分裂参数的时间演化特征分析 被引量:3
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作者 苗庆杰 刘希强 《地震学报》 CSCD 北大核心 2016年第2期220-231,共12页
2013年10月1日山东乳山发生M_L3.8地震后,该地区的地震活动呈现出小震群特征,且持续至今,其中2014—2015年先后发生了4次M_L4.1—5.0显著性地震,造成了较大的社会影响.本文利用山东数字地震台网中乳山台记录的地震波形资料,测定了来自... 2013年10月1日山东乳山发生M_L3.8地震后,该地区的地震活动呈现出小震群特征,且持续至今,其中2014—2015年先后发生了4次M_L4.1—5.0显著性地震,造成了较大的社会影响.本文利用山东数字地震台网中乳山台记录的地震波形资料,测定了来自乳山震群中224次小地震的剪切波分裂参数.研究结果表明:快剪切波的偏振优势方向与山东半岛地区的主压应力方向基本一致;剪切波分裂时间延迟在这4次显著性地震发生前后均产生明显的变化,分裂时间延迟平均在震前1个月左右开始出现升高异常,在震前约12天出现下降异常变化.这些特征均可作为利用应力进行地震预测的前兆指标. 展开更多
关键词 乳山震群 应力积累 剪切波分裂 时间延迟
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利用超导重力数据检测汶川地震激发的球型地球自由振荡 被引量:11
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作者 许闯 罗志才 +1 位作者 周波阳 林旭 《测绘学报》 EI CSCD 北大核心 2013年第4期501-507,515,共8页
利用Canberra、Matsushiro、Membach和Metsahovi 4个台站2008年5月的超导重力数据对汶川8.0级大地震激发的球型地球自由振荡进行了研究。结果表明,0S0~0S48全部基频振型以及1S4、2S4和3S13个谐频振型与PREM模型的误差在0.02‰~1.93‰... 利用Canberra、Matsushiro、Membach和Metsahovi 4个台站2008年5月的超导重力数据对汶川8.0级大地震激发的球型地球自由振荡进行了研究。结果表明,0S0~0S48全部基频振型以及1S4、2S4和3S13个谐频振型与PREM模型的误差在0.02‰~1.93‰,且所有振型的信噪比均大于阈值3,表明本文的计算方法是有效的,计算结果是可信的;0S2、0S3和0S4存在谱线分裂现象,其谱线分裂率R为1.093 40、0.674 30和1.071 00,验证了地球自转和椭率是引起0S2、0S3和0S4谱线分裂的主要原因。 展开更多
关键词 球型地球自由振荡 汶川地震 超导重力 谱线分裂 PREM模型
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激光凹印制版设备及其关键技术分析 被引量:6
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作者 夏琴香 王甲子 +2 位作者 周思聪 秦学锋 王石子 《包装工程》 CAS CSCD 北大核心 2008年第7期37-39,45,共4页
阐述了国内外凹印制版技术的研究现状和发展状况,介绍了激光凹印制版的工艺过程、工作原理。对激光凹印制版设备中图形图像处理系统、控制系统、激光器和光学系统等进行了重点分析,指出制版图像文件数据无损压缩、嵌入式控制系统、高频... 阐述了国内外凹印制版技术的研究现状和发展状况,介绍了激光凹印制版的工艺过程、工作原理。对激光凹印制版设备中图形图像处理系统、控制系统、激光器和光学系统等进行了重点分析,指出制版图像文件数据无损压缩、嵌入式控制系统、高频高能以及分光分时等技术是当前开发激光凹印制版技术以及研制激光凹印制版设备的关键,最后对激光凹印制版设备的应用前景和发展方向进行了展望。 展开更多
关键词 激光 凹印制版 数据无损压缩 嵌入式系统 分光分时
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基于支路势能函数失步判据的华中电网失步解列策略 被引量:2
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作者 邵德军 徐友平 +3 位作者 奚江惠 张志强 张顺 孙海顺 《高电压技术》 EI CAS CSCD 北大核心 2017年第7期2410-2416,共7页
现有的失步解列装置缺乏信息共享,失步断面各支路常常不能同时解列,进而导致振荡中心迁移,无法正确解列。为了保证失步解列装置能准确解列失步断面,按照省间调度分区和省内同调分群的思路,提出首先通过离线数字仿真确定系统断面解列方... 现有的失步解列装置缺乏信息共享,失步断面各支路常常不能同时解列,进而导致振荡中心迁移,无法正确解列。为了保证失步解列装置能准确解列失步断面,按照省间调度分区和省内同调分群的思路,提出首先通过离线数字仿真确定系统断面解列方案策略表,然后以支路暂态势能指标作为断面两端系统失步的实时判据,在线查询系统断面解列方案策略表,从而确定系统解列方案,并对华中电网典型解列算例进行了仿真分析。仿真结果表明:支路势能函数作为解列判据能够有效识别系统失步断面,利用所提出的失步解列策略能够有效避免同一断面不同回路就地解列判据动作不一致造成的振荡中心迁移问题,也能保证振荡中心落在省内时解列装置正确动作。研究结果可为电网失步解列提供参考。 展开更多
关键词 华中电网 支路势能函数 失步解列 离线仿真 解列断面 在线决策
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碱矿渣粉煤灰混凝土的冲击损伤特性 被引量:2
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作者 罗鑫 许金余 +3 位作者 卢京平 白二雷 李为民 刘志群 《建筑材料学报》 EI CAS CSCD 北大核心 2014年第6期1087-1091,1101,共6页
以NaOH,Na2CO3为碱激发剂,制备了强度等级为C30的碱矿渣粉煤灰基混凝土(ASFC),运用改进后的100分离式霍普金森压杆(SHPB)试验装置开展了冲击劈裂拉伸和压缩试验,从能量角度分析了ASFC在冲击荷载下的损伤特性,并进行了对比研究.结果表... 以NaOH,Na2CO3为碱激发剂,制备了强度等级为C30的碱矿渣粉煤灰基混凝土(ASFC),运用改进后的100分离式霍普金森压杆(SHPB)试验装置开展了冲击劈裂拉伸和压缩试验,从能量角度分析了ASFC在冲击荷载下的损伤特性,并进行了对比研究.结果表明:ASFC的破坏形态均随着入射能量平均变化率的增加而趋于严重,ASFC的能量吸收量也随入射能量平均变化率的增大而增加,但增加速率逐渐变缓,总体规律可用二次多项式关系来表示;ASFC在冲击压缩状态下的破坏状况明显比冲击劈裂拉伸状态下严重,而且能量吸收量和增加速率均远大于冲击劈裂拉伸状态;ASFC的抗冲击损伤能力随着冲击力度的增大而增加,且与冲击作用形式有关,在压缩状态下的抗冲击损伤能力比劈裂拉伸状态更为优异. 展开更多
关键词 碱矿渣粉煤灰基混凝土 损伤特性 冲击劈裂拉伸试验 冲击压缩试验 分离式霍普金森压杆
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