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1.
齐玉妍  孙丽娜  邱玉荣  李姜  金学申 《地震》2015,35(2):101-110
地震空间分布非均匀性指标Cv值作为一种有效的预测指标近几年来得到了广泛应用。然而受空间分布的事件样本数大小的影响,Cv值会有所改变。本文采用Cv值标准化后的Kcv值,统计了河北及邻区的地震事件空间非均匀性分布,并与地震时空概率增益综合预测模型相结合,进行研究区地震预测。依据河北及邻区40多年的地震观测资料进行了Kcv值扫描和震例统计,研究了该方法应用于河北地区的预测效能及最优时间尺度。对研究区2008—2012年M5及以上地震的概率增益、地震发生概率预测与实际地震发生情况的回溯性检验结果表明,此方法应用于河北地区地震发生概率的预测是可行的。依据上述方法,对2013—2017年河北及邻区M5及以上地震发生的概率增益和地震发生概率进行了预测。  相似文献   

2.
王晓青 《地震》2004,24(4):126-130
Cv值是描述前兆分布非均匀性的一个有效指标。不同观测指标获取的震前Cv值异常证明了该方法预测地震的有效性。然而Cv值与观测指标的时间(或空间)分布形式(如周期分布、准周期分布、泊松分布、成丛分布等)并不是简单的对应关系。中在回顾Cv值研究与应用进展的基础上,对Cv值与其分布特征的关系进行了深入分析,指出了应用中存在的问题,从而加深对Cv值物理意义的理解。并给出了Cv值识别前兆群体异常的判别法则。  相似文献   

3.
地震前兆时空非均匀性指标Cv值的实验检验   总被引:1,自引:1,他引:1  
在双向加载条件下,对两种构造和介质不同的岩石标本进行变形实验,测量了标本表面不同部位的应变.在此基础上,利用王晓青和陈学忠等提出的描述地震前兆非均匀分布的参量————Cv值,分析了标本变形失稳过程中应变异常的分布,以期从实验角度检验Cv值方法并探讨其物理意义.研究表明,Cv值的变化与岩石变形特征的变化有关,是描述前兆分布非均匀性的一种有效指标;Cv值在失稳发生前先异常上升,然后下降,并在Cv值恢复过程中或恢复后伴随着失稳事件的发生.因此,Cv值是一种有效的预报指标.   相似文献   

4.
结合地震空间分布非均匀性指标Kcv值预测方法和图像信息学算法对河北及邻区2013~2017年ML≥5.0地震发生概率增益进行预测。根据河北及邻区40多年的地震观测资料,对地震空间分布非均匀性指标Kcv值进行了空间扫描和震例统计,得到了此方法应用于河北地区的预测效能,并对河北及邻区2013~2017年ML≥5.0地震发生概率增益进行了预测;对图像信息学算法在研究区进行了地震危险性概率预测的回溯性检验,得到了此方法应用于研究区的预测效能R值及概率增益K值,并进行了5年尺度的地震危险性预测。在上述2个单项预测方法的基础上,基于概率增益综合预测模型,得到了5年尺度河北及邻区ML≥5.0地震发生概率增益的综合预测结果。  相似文献   

5.
介绍了Allegre的地壳介质破裂的尺度理论和根据该理论建立一种预测地震发生时间方法的可能性. 作为震例研究了甘肃山丹——民乐6.1级地震的地震学前兆(地震空间相关长度和尾波Qc值)特征. 结果表明,地震空间相关长度和尾波Qc值在震前都呈增长趋势,用幂次率关系拟合了这两种参数的上升变化形态. 这为利用地震空间相关长度和尾波Q值的监测资料建立一种预测地震发生时间的方法和找到预测指标打下了基础.   相似文献   

6.
川滇地区强震活动前b值的时空分布特征   总被引:5,自引:0,他引:5  
王辉  曹建玲  荆燕  李振 《地震地质》2012,(3):531-543
由于地震活动性参数b值能够反映地壳环境应力的大小,因此基于b值的地震活动性图像研究成为地震预测研究和实践最直观明了的方法之一。川滇地区地震活动频繁,是检验各种地震预测方法的理想实验场。为了研究川滇地区b值分布与强震活动的关系,利用过去40多年的小震资料分析了该区域1981年以来19次M6.5地震与b值的时空分布关系。结果表明:虽然川滇地区b值空间分布特征与强震活动之间关系并不显著,不到50%的强震发生在b值小于区域平均值的地区,但是震前b值的时间分布呈现系统地下降,58%的震源区的b值在强震前出现显著下降趋势。结合其他的地震、地质资料,较短时间内的地震活动性资料可以为特定地区的地震潜在危险性的判定提供一定的启示。  相似文献   

7.
研究了2003年甘肃岷县5.5级地震的地震学前兆的变化特征,显示尾波Qc值和地震空间相关长度在震前都呈增长趋势,用幂次率关系对这种变化进行了拟合。结果为利用尾波Q值和地震空间相关长度的监测资料建立预测地震发生时间的方法和指标打下了基础。  相似文献   

8.
地震力标度σ值及其在地震短期预测中的应用   总被引:1,自引:0,他引:1  
基于地震波能量,利用数字地震波形资料,提出地震力标度σ值定量预测指标,详细介绍了σ值计算方法,研究了强震前σ值时间和空间变化规律。结果表明:①地震力标度σ值与震级ML存在lgσ=0.98ML+6.93标度关系,σ值是一个表征地震时震源处断层平均驱动力的物理量,其大小介于地震频度和能量之间;②云南地区σ值会出现类似于正弦波的高低起伏周期变化,发生于波峰附近的强震绝大多数以连发的形式发生,而波谷附近则以单个地震发生为主,以σ值曲线从谷底上升1.5个月为起报时间点,则3个月及其以内发生强震的可能性为78%;③σ值空间分布表明,主震前2~4个月σ值在较大范围内会出现高值异常,随着主震的临近,σ高值会向未来主震震中及附近迁移、集中和收缩,主震发生前很短时间(1个月内),σ值会迅速变小,临震前地震活动异常平静现象明显。  相似文献   

9.
地震形势的模糊综合评判   总被引:1,自引:0,他引:1       下载免费PDF全文
由中国大陆板块内部地震活动与其周缘地震活动的相关性,可以确定我国大陆未来地震活动的主体和地震活动高潮时间.在此基础上,本文进一步探讨用长时间、大面积的地震活动信息,对重点监测区未来地震作出时、空、强综合评判.全文分为三部分: 1.地震强度的预报.对于确定的能有效地估计未来地震强度的5项地震活动性指标,选择加权平均型的模糊综合评判方法,对监测区未来地震的震级给出明确的结果. 2.发震地点预报.对于扫描单元定义了反映b值时空变化的二项指标:b值异常次数A_y;和b值异常均值b_(yi).通过对二项指标空间分布的综合分析,可以估计未来地震发生的地点. 3.发震时间预报.把缺震时间T_l与b值回升时间T_(bu)作为描述大震前平静过程的二项定量指标.在对未来地震强度作出模糊综合评判后,可用T_l,T_(bu)二项指标综合推断监测区未来地震发生的时间. 总结的九个震例结果表明,该方法可使地震预报定量化、实用化,可以用于地震形势的预测和中、短期地震预报.  相似文献   

10.
震级-频度关系lgN = a-bM是统计地震学研究中最基础的规律之一.b值是地震活动水平的重要参数,也是判定地震危险性区的重要指标,它可以为地震危险性方面的研究提供依据,目前被广泛应用于地震预测和地震危险性研究中.本文总结了 b值研究中的关键问题,通过全面的分析和研究将b值随时间变化的特征归纳为以下4类:(1)在大震发生前几年,b值升高,主震后,b值下降;(2)在大震发生前几年,b值降低,主震后,b值升高;(3)大震前b值会明显下降,并在回升过程中发生大震;(4)在大震前,b值升高,但在主震前短时间内有前兆下降.本文认为地震前b值的时间变化是地震预测的重要前兆,进一步探讨了 b值随时间变化应用于地震预测中的可能性,但是b值异常作为地震前兆的多样性说明根据b值异常进行地震预测仍然需要深入研究.另外,本文总结归纳了 b值的空间分布特征:(1)正断层的b值最高,走滑断层次之,逆断层的b值最低;(2)沿着不同断层段b值的变化:在断层的蠕滑段b值较高,在凹凸体段b值较低;(3)b值随着深度变化:在浅深度处b值较高,在较深的地壳深度处b值较低.并进一步指出异常低b值区指示高应力积累,能够判识强震危险性区.最后基于上述内容,讨论了在b值研究中存在的问题以及未来研究中应努力的方向.  相似文献   

11.
Introduction Many earthquake cases indicate that there exists obvious heterogeneity in temporal-spatial distribution of earthquake precursors (FENG, 1983; MEI, et al, 1993). Therefore, it is very crucial for the study of earthquake prediction to describe the heterogeneity in temporal-spatial distribution of earthquake precursors and to understand its physical mechanism. Up to now, a lot of useful researches have been done in this field. Recently, WANG, et al (1999) and CHEN, et al (2000)…  相似文献   

12.
强震前水氡异常台站时空分布非均匀性变化特征   总被引:4,自引:1,他引:3  
陈学忠  王晓青  李志雄 《地震》2000,20(1):39-44
研究了华北地区6级左右强震前水氡观测值异常的时空非均匀分布变化特征。结果表明,在强震前水氡观测异常台站的空间分布非均匀性发生显变化,Cv值明显的和蔼同过程。这说明,强震前短临地震前兆异常空间分布的非均匀性增强,变得更加不均匀,这可能邮地壳应力场的增强过程。  相似文献   

13.
Scale effects of hydrostratigraphy and recharge zonation on base flow   总被引:2,自引:0,他引:2  
Uncertainty regarding spatial variations of model parameters often results in the simplifying assumption that parameters are spatially uniform. However, spatial variability may be important in resource assessment and model calibration. In this paper, a methodology is presented for estimating a critical basin size, above which base flows appear to be relatively less sensitive to the spatial distribution of recharge and hydraulic conductivity, and below which base flows are relatively more sensitive to this spatial variability. Application of the method is illustrated for a watershed that exhibits distinct infiltration patterns and hydrostratigraphic layering. A ground water flow model (MODFLOW) and a parameter estimation code (UCODE) were used to evaluate the influence of recharge zonation and hydrostratigraphic layering on base flow distribution. Optimization after removing spatial recharge variability from the calibrated model altered base flow simulations up to 53% in watersheds smaller than 40 km(2). Merging six hydrostratigraphic units into one unit with average properties increased base flow residuals up to 83% in basins smaller than 50 km(2). Base flow residuals changed <5% in watersheds larger than 40 and 50 km(2) when recharge and hydrostratigraphy were simplified, respectively; thus, the critical basin size for the example area is approximately 40 to 50 km(2). Once identified for an area, a critical basin size could be used to guide the scale of future investigations. By ensuring that parameter discretization needed to capture base flow distribution is commensurate with the scope of the investigation, uncertainty caused by overextending uniform parameterization or by estimating extra parameter values is reduced.  相似文献   

14.
M. Barrios  F. Francés 《水文研究》2012,26(7):1022-1033
Nonlinear dynamics and spatial variability in hydrological systems make the formulation of scaling theories difficult. Therefore, the development of knowledge related to scale effects, scaling techniques, parameterization and linkages of parameters across scales is highly relevant. The main purpose of this work is to analyse the spatial effect of the static storage capacity parameter Hu and the saturated hydraulic conductivity parameter ks from microscale (sub‐grid level) to mesoscale (grid level) and its implication to the definition of an optimum cell size. These two parameters describe the upper soil water characteristics in the infiltration process conceptualization of the TETIS hydrological model. At microscale, the spatial heterogeneity of Hu and ks was obtained generating random parameter fields through probability distribution functions and a spatial dependence model with pre‐established correlation lengths. The effective parameters at mesoscale were calculated by solving the inverse problem for each parameter field. Results indicate that the adopted inverse formulation allows transferring the nonlinearity of the system from microscale to the mesoscale via non‐stationary effective parameters. Their values at each cell and time step are in the range of zero to the mean value of the parameter at microscale. The stochastic simulations showed that the variance of the estimated effective parameters decreases when the ratio between mesoscale cell size and correlation length at microscale increases. For a ratio greater than 1, we found cell sizes having the characteristics of a representative elementary area (REA); in such case, the microscale variability pattern did not affect the system response at mesoscale. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

15.
The spatial variability of each parameter affecting storm runoff must be accounted for in distributed modelling. The objective of the work reported here is to assess the effects of using distributed versus lumped hydraulic roughness coefficients in the modelling of direct surface runoff. A spatially variable data set composed of Manning roughness coefficients is used to model direct surface runoff. To assess the information content (as measured by entropy) of spatially variable data and its significance in distributed modelling, various degrees of smoothing are applied. The error resulting from smoothing the hydraulic roughness coefficients is determined by modelling overland flow using a finite element solution. The Manning roughness coefficients were taken from field measurements of the Manning roughness coefficient at 0.6 m on a 14 m hillslope. These values were then used in a numerical simulation of outflow hydrographs to investigate the dependence of error on spatial variability. Our study focuses on the characteristics of spatial data used in distributed hydrological modelling. The field sites have fractal dimensions of ≈? 1.4, which is close to a Brownian variation. The sampling interval that captures the essential spatial variability of the Manning roughness coefficient does not seem to matter due to its Brownian variation in the field sites. Hence due to the nearly uniform random distribution, measurements at 0.6 m intervals are not necessary and larger intervals would yield results that are just as acceptable provided the mean value together with a uniformly random distribution is maintained for any size of finite element or sampling resolution. Because detailed measurements of hydraulic roughness are not practically available for deterministic catchment modelling, it is important to know that larger sampling resolutions may be used than 0.6 m.  相似文献   

16.
In this article, we are concerned with the statistics of steady unsaturated flow in soils with a fractal hydraulic conductivity distribution. It is assumed that the spatial distribution of log hydraulic conductivity can be described as an isotropic stochastic fractal process. The impact of the fractal dimension of this process, the soil pore-size distribution parameter, and the characteristic length scale on the variances of tension head and the effective conductivity is investigated. Results are obtained for one-dimensional and three-dimensional flows. Our results indicate that the tension head variance is scale-dependent for fractal distribution of hydraulic conductivity. Both tension head variance and effective hydraulic conductivity depend strongly on the fractal dimension. The soil pore-size distribution parameter is important in reducing the variability of the unsaturated hydraulic conductivity and of the fluxes.  相似文献   

17.
Upper-truncated Power Laws in Natural Systems   总被引:1,自引:0,他引:1  
—?When a cumulative number-size distribution of data follows a power law, the data set is often considered fractal since both power laws and fractals are scale invariant. Cumulative number-size distributions for data sets of many natural phenomena exhibit a “fall-off?” from a power law as the measured object size increases. We demonstrate that this fall-off is expected when a cumulative data set is truncated at large object size. We provide a generalized equation, herein called the General Fitting Function (GFF), that describes an upper-truncated cumulative number-size distribution based on a power law. Fitting the GFF to a cumulative number-size distribution yields the coefficient and exponent of the underlying power law and a parameter that characterizes the upper truncation. Possible causes of upper truncation include data sampling limitations (spatial or temporal) and changes in the physics controlling the object sizes. We use the GFF method to analyze four natural systems that have been studied by other approaches: forest fire area in the Australian Capital Territory; fault offsets in the Vernejoul coal field; hydrocarbon volumes in the Frio Strand Plain exploration play; and fault lengths on Venus. We demonstrate that a traditional approach of fitting a power law directly to the cumulative number-size distribution estimates too negative an exponent for the power law and overestimates the fractal dimension of the data set. The four systems we consider are well fit by the GFF method, suggesting they have properties characterized by upper-truncated power laws.  相似文献   

18.
童冰星  姚成  李致家  黄小祥 《湖泊科学》2017,29(5):1238-1244
对于分布式水文模型而言,如何获得参数的空间分布是模型应用的重点和难点问题.本文将分水源参数中的敏感参数——自由水蓄水容量为研究对象.建立地形指数与自由水蓄水容量的函数关系,以此提取流域内的自由水蓄水容量空间分布.最后利用本方法提取了陕西省陈河流域的自由水蓄水容量空间分布,并将之作为栅格型新安江模型的参数进行洪水模拟演算.应用结果表明本文提出的方法得到了理想的模拟结果.该方法以物理规律为基础能较为准确地计算出流域内自由水蓄水容量的空间分布,为分布式模型的发展奠定了坚实的基础.  相似文献   

19.
Approximate copula-based estimation and prediction of discrete spatial data   总被引:1,自引:1,他引:0  
The present paper reports on the use of copula functions to describe the distribution of discrete spatial data, e.g. count data from environmental mapping or areal data analysis. In particular, we consider approaches to parameter point estimation and propose a fast method to perform approximate spatial prediction in copula-based spatial models with discrete marginal distributions. We assess the goodness of the resulting parameter estimates and predictors under different spatial settings and guide the analyst on which approach to apply for the data at hand. Finally, we illustrate the methodology by analyzing the well-known Lansing Woods data set. Software that implements the methods proposed in this paper is freely available in Matlab language on the author’s website.  相似文献   

20.
The choice of spatial grid size has been being a crucial issue in all kinds of numerical algorithms. By using BIEM (Boundary Integral Equation Method) to calculate the rupture process of a planar fault embedded in an isotropic and homogeneous full space with simple discretization scheme,this paper focuses on what grid size should be applied to control the error as well as maintaining the computing efficiency for different parameter combinations of (Dc,Te),where Dc is the critical slip-weakening dis-tance and Te is the initial stress on the fault plane. We have preliminarily found the way of properly choosing the spatial grid size,which is of great significance in the computation of seismic source rup-ture process with BIEM.  相似文献   

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