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利用德令哈地震台DD—l记录到的746个近震,对其测定的震级偏差进行统计计算,发现DD—l测定的震级偏小。经过分析,指出了产生偏差的原因,并给出了校正值C= 0.15。 相似文献
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未来地震震级的定量计算 总被引:1,自引:0,他引:1
将某一地震带在强震前某一时期内发生的地震,按其面波震级大小自大到小排列,并以N=2、3、4、……来累计频度,采用公式logN=a-bM计算a、b,从而计算出第一个地震的震级M_1,这就是未来可能发生地震的震级。通过对川滇地区和华北地区的九次近期强震进行计算,结果表明,在震级测定误差范围(±0.3级)内,上述的M和logN之间具有很好的线性关系,这就为地震预报和地震区划中定量计算未来地震震级提出了一个新的方法。 相似文献
6.
D. Albarello A. Berardi C. Margottini M. Mucciarelli 《Pure and Applied Geophysics》1995,145(2):297-312
A multi-parametric study of empirical relationships between macroseismic data and magnitude is presented for the Italian region by the analysis of a new extended data set concerning 146 earthquakes. The available magnitude determinations include all of the most intense earthquakes which occurred in Italy in the last century and have been obtained by an accurate revision of original instrumental data. Intensity data have been revised and upgraded on the basis of the most recent studies: only local intensities directly documented have been used. Macroseismic determinations ofM
s
,m
B
andM
wa
magnitudes have been performed. The empirical relationships between maximum felt intensity (I
max
) and magnitude have been determined by the use of a distribution-free approach and a linear regression analysis. This last parameterization allows for the explanation of more than 60% of the variation in magnitude. In order to improve these results, the linear dependence between magnitude,I
max
and average distances (in logarithm) corresponding to fixed attenuation values has been explored. The comparison between instrumental magnitudes and corresponding macroseismic estimates obtained from empirical relationships shows that the respective uncertainties are comparable. 相似文献
7.
1500年宜良地震地表形变带的考证 总被引:2,自引:0,他引:2
据历史记载1500年在宜良一带发生了一次强烈地震,由前人对该次地震无较详细的现 场实地考查资料,因此对这次地震认识说法不一。1992年作者对该次地震进行了实地考证。发现和确认了这次地震十分丰富的地震地表形变带,现存长度达81公里,最大左旋水平位错量9至11米。研究结果表明该次地震的发震构造为小新街-徐家渡断裂,震级接近8级。 相似文献
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Lithologic control of debris torrent occurrence 总被引:1,自引:0,他引:1
A field-based investigation into the frequency and magnitude of debris torrent systems reveals that lithology controls the spatial and temporal occurrence of debris torrents in the Tsitika Watershed, Vancouver Island, British Columbia. We identified 125 debris torrent systems in the watershed; for half these basins we used dendrochronology, historical air photographs, and field surveys to estimate debris torrent frequency and magnitude for a 30 year period. We find that the volcaniclastic half of the watershed contains more than twice as many debris torrent systems, in which debris torrents occur over seven times more frequently, and the deposits have a higher rate of delivery of sediment to the mainstem river than the intrusive half. Lithologic differences in weathering rates, weathering product grain size, and rock texture can explain the observed differences in debris torrent behaviour. Because debris torrents are the main sediment transport path from hilltop to valley bottom in the region, these results confirm an important lithologic control on regional sediment transport. While the exact numbers are uncertain, we estimate that the sediment flux of volcaniclastic debris torrents in the watershed is five times higher than that of the intrusive debris torrents. 相似文献
10.
Lin Xiankan 《中国地震研究》2007,21(2):139-146
The author carefully selected earthquakes with M_L=4.0~5.0, 215 occurring in the crust in the Taiwan region. The attenuation characteristics of maximum displacement recorded by the Fujian digital network have been obtained by multi-analysis as follows:logA=2.07 231.1/Δ (150km≤Δ≤650km) And the corresponding expression of calibration function is, R(Δ)=3.45-231.1(1/Δ-0.01) (150km≤Δ≤650km) Then, the author determined the magnitude and its error with the data from the Fujian network using the calibration function brought forward in 1997 and the above formula for 790 earthquakes occurring in the crust in the Taiwan region from September 1997 ~ August 2005. The result indicates that the average error of the network is 0.20 with the former and 0.18 with the latter. The average error is 0.13 with the latter with station correction. Compared with the magnitude determined by Taiwan seismologists, the magnitude value with the former is lower by 0.50 on average and that with the latter is higher by 0.08 on average. 相似文献