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在分析地电场测量电极的极化电位产生机理的基础上,通过同类电极组合试验和不同类电极对比试验,对极化电位在地电场观测中的影响形成几点认识:①由于电极和土壤介质之间的接触电位和扩散电位的影响,极化电位的存在具有普遍性;②当工作状态稳定后,电极极化电位可能使得观测结果产生固定偏差,但在误差允许的范围内;③正常情况下,电极极化电位的存在不影响对地电场变化特性的观测。 相似文献
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结合同台观测的水平地电场数据,研究坪城垂直地电场观测数据,结果表明:(1)采用固体不极化电极进行垂直地电场观测,同一极距的观测结果基本一致,而铅板电极与固体不极化电极之间存在较大的电位差;(2)垂直地电场日变化形态清晰,长极距测道(A1C1、A2C1和A3C1测道)日变幅为5.85 mV/km左右,短极距(B1C1、B2C1和B3C1测道)日变幅为10.02 mV/km左右;(3)垂直向观测的地电场日变化优势周期在12 h和24 h。 相似文献
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张家口地震中心台经过多次试验,成功研制了大地电场铅电极,采用新型的电极孔成孔方法及埋设技术进行了试验观测,从实验数据中可以明显看到地电场的日变形态。该电极具有制作工艺合理、电极差较小、稳定性能较好、噪声低、使用寿命长、易于保存和使用方便等特点,不仅可以满足大地电场长期定点观测的要求,还可以用于地电阻率观测,亦可作为地震电磁扰动观测中的电极传感器。铅电极应用前景广阔。 相似文献
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以南昌地震台2008年以来的地电场观测资料为研究对象,在对比分析观测数据质量的基础上,阐明影响地电场观测的主要干扰因素,并分析了造成观测资料质量不高的原因,主要是由于观测场地不平,6个电极所处的埋设环境存在较大差异引起的。 相似文献
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将现行的地震地电场前兆地表水平方向观测方法改为深井电极垂向地电场观测方法,可大大缩小观测场地范围,有效排除地表电磁环境的干扰影响,解决目前地电场观测场地选择困难、干扰影响严重的问题,更好地获得地震前兆信息。开展深井电极垂向地电场观测,可充分利用深井钻孔的条件,安装其他项目观测装置,开展综合观测,取得更丰富的观测资料。利用已有台站的深井钢管作电极,开展地电场前兆观测,可等同于深井电极垂向地电场观测,开辟地震前兆观测新途径,具有较好的观测效果;实现在老台站增设地电场观测项目而不需要太大的投资,值得推广。 相似文献
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利用延庆地震台2004年地电场的观测资料,研究其变化情况,分析引起其变化的具体原因,结果表明:延庆地震台地电场的观测容易受到磁暴、雷雨等干扰,电极的极化影响最为严重,这些因素给地电场震前中短期异常的识别带来了困难,但是从短期来看,地电场观测精度较高,对场地的电磁变化反映比较灵敏。 相似文献
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地电场数据观测干扰排查分析 总被引:1,自引:1,他引:0
以洛阳地震台地电数字化观测资料为基础,阐述了地电场数据测量原理及其在分析中的应用,并通过对地电暴、避雷装置和电极故障3个地电场数据异常案例研究分析,得出当出现故障时应该遵循“替换法”和“逐步逼近法”原则. 相似文献
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本文基于我国2015—2018年间地电暴事件,通过对筛选的数据曲线变化特征归纳分析,总结出以下快速准确判断地电暴事件的依据:(1)地电暴发生时,会压制地电场六道观测数据正常日变形态,且变幅是正常日变幅值2倍以上或更大;(2)地电暴事件具有广域同步性,可通过多台观测数据对比判断;(3)地电暴和地磁暴具有同源性,可通过地磁观测来判断;(4)经过上述初判后,还应排除观测系统、自然环境、人为干扰、场地环境事件影响,才能确认为单一地电暴事件。通过对地电暴波形特征的分析,发现一般情况下地电暴变幅与地磁磁情指数—K指数呈正比关系,但是同一台站地电暴变幅在同一K指数下差异较大。不同台站对同一地电暴事件幅度响应不同,仅从变幅来看纬度效应不明显,有局部区域性特点,可能与台站台址条件\,地电场布极方式方位等因素均有关。 相似文献
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对7个台的观测数据质量进行评价和分析,结果表明:郯城、菏泽、大山和陵阳地震台数据质量较好,精度较高,可为地震研究提供可靠的数据资料. 相似文献
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DIFFERENTIATION DIRECTION OF TELLURIC CURRENTS IN THE SOUTHERN SECTION OF THE TANLU FAULT ZONE 下载免费PDF全文
The Tancheng-Lujiang Fault is an important tectonic boundary in eastern China. The southern part of the Tancheng-Lujiang Fault is located south of Baohai Bay, which is an area with a dense population and frequent economic activities. It is worth conducting an in-depth study on the southern section of the fault, especially in the aspect of geophysical exploration and seismicity analysis. Electrical structure detection is an important way to interpret the structural activity of the fault. It can also analyze and explore the influence of the fault on the physical properties of both sides of the fault based on the geoelectrical observation data. In the study area, there are densely distributed stations of geoelectrical observation, including 27 fixed stations distributed along the fault zone from the southern Baohai Bay to Nanjing, Jinagsu Province. The continuous observations and recording of these stations provide a favorable condition for studying the tectonic activity of Tancheng-Lujiang Fault.
In the long-term observation of geoelectric observation network, the geoelectric field measurements of long- and short-spacing measuring tracks in the same direction at the same station vary significantly because of the effect of long-term stability of the observation system and the environment near the electrodes. Also, the data curve changes complicatedly and seems to be in a mess. However, there are three basic facts of observation existing in the geoelectric field change: 1)The variation amplitude of the geoelectric field changes observed on the long- and short-spacing measuring tracks in the same direction at the same station(including tidal response changes and the rapid change events such as short periods or pulses)is the same or very close; 2)The Ex and Ey components at the same station always show the same variation in the same time period, or the opposite, which is related to the anisotropy of the medium under the station; 3)The rapid changes of the minute values of the geoelectric field observed at different stations are synchronous in a wide spatial area. In this study, in order to take full advantage of these basic facts, we only use the amplitude variation of geoelectric field with time.
Based on the data of 27 geoelectric field observation stations in the study area, we used the current density vector and streamline to characterize telluric current with its divergence and vorticity calculated in the southern Tancheng-Lujiang Fault in this paper. The results show that: 1)the telluric current shows the phenomenon of opposite directional differentiation in the southern part of the fault zone, the direction of the current vector is NE on the east side, while the direction is NW to SW on the west side; (2)The divergence and vorticity of telluric current also show the differentiation phenomenon along the fault, the positive/negative maximum of vorticity and divergence mainly occurs near the fault zone and the direction of alternating positive and negative gradient(or negative gradient)of vorticity or divergence is consistent with the strike of the fault zone. By analyzing the current superposition simulation results and comparing them with previous studies, an interpretation model of the above phenomenon is established in this paper. The results agree with previous studies on the electrical structure of this region. Besides, the results that telluric current differentiates along the fault zone may improve our understanding of the process of deep electrical and material migration. 相似文献
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Study on the variation characteristics of the geoelectric field preceding earthquakes 总被引:2,自引:0,他引:2
Introduction Geoelectric field is one of the proper physical fields of the Earth. It is controlled by the vari-ous current systems originating outside of the Earth and the internal electrical structure of the Earth as well as the underground current origin. It carries a great amount of information coming from the Earths interior. At present, a lot of observations and studies about the geoelectric field have been made in the world. Many applications and studies of the geoelectric field in the… 相似文献
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2001年11月3日和12月25日江苏南通地区分别发生了ML3.8和ML4.1的地震群事件. 本文以上海崇明地电场台和南京地电场台ZD9A大地电场仪的观测资料为研究对象,在阐述了多极距地电场观测去噪音原理的基础上, 研究了这两个台站地电场多极距观测系统的资料在震前的异常变化特征. 结果表明: ① 多极距观测去噪音方法是一种很好的识别地电场噪音的方法;② 在震前20天、2天及42天离震中较近的崇明台NS和NE方向上分别接收到了地震电信号, 其持续时间最长的为9天,而较远的南京台出现的异常信号都是噪音信号而非地震电信号;③ 地电场多极距观测系统中公用电极的布极方式是不可取的. 相似文献