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651.
This paper applies the Seismic Hazard Analysis method for the cities of China to research on the probability of earthquake occurrence in the Daduhe drainage area, where the cascade dam system is located. This research is based on the potential seismic source scheme of the Seismic Ground Motion Parameter Zonation Map of China (2001), and uses Poisson distribution as an earthquake occurrence model. Earthquake magnitude obeys truncated exponential distribution. The spatial distribution function of the potential seismic source zone is taken as the first-class spatial probability distribution, and the homogeneous probability distribution in the potential seismic source zone as the second-class spatial probability distribution. Considering the seismic intensity attenuation relationship of western China, we compute the occurrence probability of an earthquake around magnitude 6.0 (5.5 - 6.5), 7.0 (6.5 - 7.5) and over 7.5 in the Daduhe drainage area, where 22 series cascade dams will be built. The results can be used for hydropower plant planning, hydropower dam site selection and seismic fortification. 相似文献
652.
双差地震定位法在邯郸-邢台地区地震精确定位中的初步应用 总被引:3,自引:0,他引:3
采用双差地震定位方法,利用2001-2006年间邯郸数字台网记录到的413次M1≥1.0地震的P波和S波震相到时资料,对邯郸一邢台地区(35.0°~38.0°N,113.0°~116.0°E)的地震进行了重新精确定位.经重新定位后得到其中295次地震的基本参数.重新定位结果显示了比较精细的震中分布图像和有所收敛的震源深度剖面图像,震源深度的优势分布为12~18 km,平均深度为14.9 km,部分震中位置与震源深度变化较大的地震向断裂带靠近. 相似文献
653.
《China Geology》2019,2(1):40-48
Engineering construction actively occurs in coastal zones, and these areas have numerous potential geological hazard factors. Since 2009, the development of geological surveys in sea areas has promoted extensive geophysical surveys in Qingdao offshore. In the present study, the types and distribution of potential geological hazard factors were systematically revealed using sub-bottom profile data, side-scan sonar data, and single-channel seismic data, among others. Based on previous research findings, the potential geological hazard factors are classified, and control factors in Qingdao offshore are discussed. The research results show that the primary potential geological hazards include active faults, buried paleo channels, shallow gas, irregular bedrock, eroded gullies, estuary deltas, tidal sand ridges, and seawater intrusion. In addition, neotectonic movement, sea level changes and sedimentary dynamic processes were the main factors that affected the distribution of geological hazards in Qingdao offshore.©2019 China Geology Editorial Office. 相似文献
654.
酒西盆地为河西走廊西段的一个压陷性盆地,其内发育了多条晚第四纪活动逆断裂、褶皱带,是未来具有发生破坏性地震的潜在震源区.通过对酒西盆地和邻近地区9个潜在震源区的长期地震活动水平的对比研究,发现不同震级档的潜在震源区基本处于各自的一个地震活动水平档上.据此将玉门潜在震源区地震活动水平与其它潜在震源区对比,并结合区内活动构造及历史地震等活动特征,判定其震级上限为MS7.0.指出地震活动水平对比方法可作为潜在震源区划分中的一个辅助手段. 相似文献
655.
利用地震烈度资料定量估算历史地震震中区域和震级的方法是由Bakun和Wentworth于1997年首先提出的.该方法定量程度高,对烈度数据较少或发生在近海的历史地震的定位和震级估算尤为有效.按照Baku和Wentworth给出的思路,笔者尝试了对我国华北地区的历史和近代地震的震中和震级进行初步分析.首先,选取20世纪以来发生在该地区的10次有仪器记录的地震(5.3le;MSle;7.8),对该地区的烈度-震级-震中距衰减关系进行标定并给出了烈度衰减模型,表明华北地区烈度随震中距增大而衰减的速率明显小于美国加州地区(约50%).在此衰减模型的基础上,提出了确定震级和震中区域的网格搜索试算方法(GSTSL),并给出了适用于华北地区的圈定震中区域和烈度震级的等值线置信值.最后,讨论了计算震中区域等值线时所引进的权因子Wi及其中参数b对震中区域等值线圈闭性的影响.利用该方法,对发生在1668年莒县——郯城地震,1679年三河——平谷地震,以及1966年隆尧地震和1969年渤海地震进行了分析.需要指出的是,该方法也可推广应用于我国其它历史地震资料丰富的地区. 相似文献
656.
采用现代仪器地震记录和烈度资料,我们建立了用于定量估算历史地震震级和震中位置的烈度衰减模型和分析方法,并对我国西南川滇地区的历史和近代地震的震中和震级进行了重新分析.利用20世纪以来该地区十四个有仪器记录的地震(5.9≤Ms≤8.0)及相应的烈度数据,对其烈度-震级-震中距衰减关系进行标定,并建立了用于震中和震级估算的烈度衰减模型.结果表明,当震级一定时,川滇地区烈度随震中距增大而衰减的速率明显小于美国加州地区(~60%).在衰减模型基础之上,发展了确定震中区域和震级的网格搜索试算方法(GSTSL),并给出了确定震中位置和震级的等值线置信值.采用所建立的分析方法,对1786年康定地震,1850年西昌地震,1913年峨山地震和1970年通海地震进行了分析,给出了更为精确合理的结果. 相似文献
657.
1902年阿图什81/4级地震发生在西南天山山前推覆构造体中,逆冲推覆构造由推覆体的根部断裂、推覆体、滑脱断层和前缘逆断裂-褶皱等组成,大地震的发震断裂往往是推覆构造的根部断裂,而地震地表破裂和同震褶皱隆起则位于山前逆断层-褶皱带内。高震级的潜在震源区(MU7.5)对应于低速的天山地块和高速的塔里木地块之间的根带断裂,其长度对应于推覆体根带断裂的长度,宽度对应于根带隐伏逆冲断裂在地表的投影宽度。推覆体前缘的每个活动逆断裂-背斜对应于一个潜在震源(MU≤7.5),其长度与活动逆断裂-背斜的长度相等,宽度应覆盖活动褶皱的两翼。潜在震源的矩震级上限由W-C统计关系式确定,其中发震断裂的面积为活动褶皱的长度与隐伏断坡宽度的乘积。 相似文献
658.
L. E. Sjöberg 《Journal of Geodesy》2003,77(3-4):139-147
Assuming that the gravity anomaly and disturbing potential are given on a reference ellipsoid, the result of Sjöberg (1988, Bull Geod 62:93–101) is applied to derive the potential coefficients on the bounding sphere of the ellipsoid to order e
2 (i.e. the square of the eccentricity of the ellipsoid). By adding the potential coefficients and continuing the potential downward to the reference ellipsoid, the spherical Stokes formula and its ellipsoidal correction are obtained. The correction is presented in terms of an integral over the unit sphere with the spherical approximation of geoidal height as the argument and only three well-known kernel functions, namely those of Stokes, Vening-Meinesz and the inverse Stokes, lending the correction to practical computations. Finally, the ellipsoidal correction is presented also in terms of spherical harmonic functions. The frequently applied and sometimes questioned approximation of the constant m, a convenient abbreviation in normal gravity field representations, by e
2/2, as introduced by Moritz, is also discussed. It is concluded that this approximation does not significantly affect the ellipsoidal corrections to potential coefficients and Stokes formula. However, whether this standard approach to correct the gravity anomaly agrees with the pure ellipsoidal solution to Stokes formula is still an open question. 相似文献
659.
In an effort to quantify the geogenic radon soil–gas potential and appraise the use of radon technique as a geological mapping
tool in a crystalline basement rock terrain of Ile–Ife Nigeria, radon measurement concentration were made using a radon detector
instrument (EDA RD-200) that measures radon isotopes by a scintillator cell coupled to a photomultiplier tube. The data were
collected from soils derived from three different lithologic rock units. The observed values were then correlated with the
geology of the area. Significant differences in the radon soil–gas concentrations among the three geologic units were observed.
Granite gneiss has the highest concentration, followed by grey gneiss and mica schist in that order. The geometric mean (GM)
concentration of radon-222 measured in soils directly overlying the three different rock types were 301.4 pCi/l for granite
gneiss, 202.8 pCi/l for the grey gneiss, and 199.4 pCi/l for mica schist. Conversely, the average values for radon-220 averaged
1510.0, 815.4, and 733.0 pCi/l for granite gneiss, grey gneiss, and mica schist rocks, respectively. Statistical t test (α=0.05) results indicated that there was no significant difference in the geometric mean of radon soil–gas measured
between low and medium potential zones. However, significant differences were found between the low and high radon potential
zones, and between the medium and high zones. The low concentrations of radon soil–gas emission observed in this study is
explained in terms of the seasonal variation due to thermal convection fluid movement, while the radon concentrations were
found to be controlled by the lithology and geochemistry of the underlying bedrock. 相似文献
660.
地球固体内核(SIC)和地球其余部分之间的引力和压力的耦合作用引起了一个力矩,从而对地球的章动运动产生影响.由于SIC的转动惯量和整体地球转动惯量相比是非常小的,因此可以认为SIC的动力学效应只是导致一个新的章动本征模,其频率与自由核章动(FCN)相差不太远,且对地球章动产生了一个微弱的共振影响.本文在文献〔1〕理论的基础上,对内核地球自转动力学理论进行了更加深入和详细的研究,顾及到高阶引潮力位的影响,介绍了研究内核地球自转的基本假设和定义,引潮力位的复数球函数表示,复数矢量球函数的基本理论等. 相似文献