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991.
收集并整理内蒙古自治区宝昌地震台VP型垂直摆倾斜仪数字化观测资料,通过调查各种干扰因素特征,分析认为,雷电和强降雨、温度与气压、标定与校准、仪器故障是影响倾斜仪观测的主要因素。对干扰因素进行识别,进一步增加垂直摆观测数据可用性,对于准确抓取短临地震异常信息具有一定实用意义。  相似文献   
992.
乌吉线沙害整治措施探讨   总被引:3,自引:0,他引:3  
王锡来 《中国沙漠》1996,11(2):204-206
乌吉铁路穿越乌兰布和沙漠边缘, 平沙地区段路基积沙严重, 影响线路正常运营。为了保护路基免受沙埋, 铁道部科学研究院西北分院自1982年起在该线K85地段(本井)建立了防沙试验工点, 通过多年的研究工作, 取得了若干成果。  相似文献   
993.
Detrital zircon multi‐chronology combined with provenance and low‐grade metamorphism analyses enables the reinterpretation of the tectonic evolution of the Cretaceous Shimanto accretionary complex in Southwest Japan. Detrital zircon U–Pb ages and provenance analysis defines the depositional age of trench‐fill turbidites associated with igneous activity in provenance. Periods of low igneous activity are recorded by youngest single grain zircon U–Pb ages (YSG) that approximate or are older than the depositional ages obtained from radiolarian fossil‐bearing mudstone. Periods of intensive igneous activity recorded by youngest cluster U–Pb ages (YC1σ) that correspond to the younger limits of radiolarian ages. The YC1σ U–Pb ages obtained from sandstones within mélange units provide more accurate younger depositional ages than radiolarian ages derived from mudstone. Determining true depositional ages requires a combination of fossil data, detrital zircon ages, and provenance information. Fission‐track ages using zircons estimated YC1σ U–Pb ages are useful for assessing depositional and annealing ages for the low‐grade metamorphosed accretionary complex. These new dating presented here indicates the following tectonic history of the accretionary wedge. Evolution of the Shimanto accretionary complex from the Albian to the Turonian was caused by the subduction of the Izanagi plate, a process that supplied sediments via the erosion of Permian and Triassic to Early Jurassic granitic rocks and the eruption of minor amounts of Early Cretaceous intermediate volcanic rocks. The complex subsequently underwent intensive igneous activity from the Coniacian to the early Paleocene as a result of the subduction of a hot and young oceanic slab, such as the Kula–Pacific plate. Finally, the major out‐of‐sequence thrusts of the Fukase Fault and the Aki Tectonic Line formed after the middle Eocene, and this reactivation of the Shimanto accretionary complex as a result of the subduction of the Pacific plate.  相似文献   
994.
Four-component borehole strainmeter (FCBS) is one kind of high-precision borehole strain observation instruments invented in China. As a kind of near-surface deformation observation instrument, FCBS is also easily disturbed by the external environment factors. As a common factor, pumping has significant influence on FCBS observation. Existing studies mostly identify the pumping interference from the perspective of observation curve morphology, relatively few studies focus on its interference mechanism. In order to truly capture earthquake precursor information, it is necessary to study the interference mechanism. In recent years, RZB-3 type FCBS at Tai'an seismic station has been seriously affected by pumping, so it is necessary and also feasible to study the interference mechanism of pumping. Since the influence of pumping interference on borehole strainmeter is common, this work would be very practical and be used for reference by other borehole strain observation stations. We find that the original observation curves and observed surface strain, shear strain from RZB-3 type FCBS at Tai'an seismic station have the characteristics of synchronous change with the borehole water level, in which the linear correlation coefficient between the two observed shear strain curves and borehole water level reached 0.70 and 0.82 respectively. We further find that the principal strain direction of borehole and borehole water level after normalization meet the nonlinear function as y=1.217arctan(x)0.224-0.284. The above phenomenon indicates that the observation of RZB-3 type FCBS at Tai'an seismic station is significantly affected by the borehole water level, and the influence is more obvious and the gradient is larger at the stage of low water level. Pumping interference often appears in low water level stage and changes the rock pore pressure state. Statistics show that pumping interference affects the borehole strain state. To investigate the interference mechanism of pumping to RZB-3 type FCBS at Tai'an seismic station, we take a known pumping as an example, in which we study the principal strain state of the borehole in three periods of normal pumping, interruption of pumping and resuming pumping respectively. During each period, we solve 3 parameters of the principal plane strain state, i.e. the maximum principal strain rate, the minimum principal strain rate and the maximum principal strain direction from four observation equations of FCBS by nonlinear iterative least squares algorithm. On the other hand, concentrated load model (CLM) is used to simulate the mechanical mechanism of pumping. Firstly, the depth of FCBS relative to pumping source and the concentrated load at pumping source are inversed, then, the strain state surrounding the pumping well, including the state at RZB-3 borehole, is simulated by forward modeling. By comparing these results, we find that: (1)The concentrated load at pumping source inversed by CLM during periods of normal pumping and resuming pumping are both located at or near the bottom of the pumping well, which is consistent with the actual situation, indicating that mechanism and degree of the influence of pumping on borehole strain are well simulated by CLM. (2)The observed strain state is consistent with the simulation result of pumping interference by forward modeling, indicating that the principal strain state of borehole calculated based on observation of FCBS reflects the true strain state of borehole under different pumping states.(3)The inversed concentrated load at pumping source during pumping periods is significant greater than the load of the pumped water, indicating that the pumping process has more significant influence on the pore pressure of rocks than the load of the pumped water. Even though CLM is an approximate simulation since it's based on some elastic assumptions, the interference mechanism of pumping on RZB-3 type FCBS at Tai'an seismic station is well explained, which is maybe very helpful for studying the influence of pumping interference on other deformation instruments, locating the unknown pumping source and studying the characteristics of pore pressure of rocks.  相似文献   
995.
铁岭地震台SS-Y型伸缩仪2018年6月起出现NS分量的持续拉张和EW分量的小幅压性变化,经初步分析,发现仪器工作状态良好,并排除各类干扰因素。采用三点线性平滑滤波,对NS、EW分量进行趋势项、周期项提取处理,发现自2018年6月起,NS分量趋势性拉张且年变增加,EW分量趋势性压缩且年变减小,与以往相比,趋势和年变周期变化特征差异性较大,结合同一山洞的水管倾斜仪和垂直摆倾斜仪同时段产生同步转折变化及历史震例,分析认为,铁岭SS-Y型洞体应变NS分量变化为震前异常的可能性较大,后续应跟踪分析该异常的趋势性走向变化。  相似文献   
996.
介绍了都兰地震台地电场观测的基本情况,选取2014-2017年的观测数据,对地电场观测中遇到的干扰进行调研分析。结果表明,在日常观测中,都兰地震台地电场观测资料可以真实的反映地下介质变化,干扰源也可以通过数据不同变化形态、幅度快速进行判断,并提出相应的措施,为地震预报做好基础工作。  相似文献   
997.
泉州地区目前存在的三套TJ-2C钻孔体应变仪整点值都能清晰地记录到应变固体潮汐,分钟值能记录到部分远大震应变波、震前异常阶跃等动态信息。由于不同的测点因其所处地质构造和钻孔自身岩性、岩石完整性、埋深等情况不同,其受干扰的影响程度和监测地震前兆异常的能力都可能存在着不同,并且观测曲线表现为较复杂的异常形态。对2015年这三套仪器观测资料进行对分析,从中找出更能真实反映地球内部应力变化的测点。  相似文献   
998.
随着国家电网建设规模的不断扩大,越来越多的高压直流输电工程陆续投入使用,对线路两侧的地磁观测资料造成了不可避免的影响。目前有5条高压直流输电线路对甘肃地磁台站的观测造成一定程度的干扰。通过单台及多台观测资料对比的方法,识别高压直流输电线对地磁观测资料的影响,研究干扰特征,对正确预处理观测资料有重要的意义。结果表明:①高压直流输电对地磁Z分量影响明显,D、H分量不明显;②对地磁观测影响产生的形态主要表现为方波型、缓变型、梯形型、复合型等。通过总结高压直流输电对地磁观测资料影响特征及形态,有助于正确预处理观测资料及为今后实现计算机自动化处理提供依据。  相似文献   
999.
地震短临跟踪黑龙江地磁台阵的架设   总被引:2,自引:1,他引:1  
介绍了黑龙江省地震局短临跟踪项目中的地磁台阵及运行情况,在该地区选定大庆,富裕,泰来,望奎和肇源5个观测点形成地磁台阵,利用GM4-LDG型流动磁通门磁力仪对地磁场三分量进行测量,并利用GPRS和CDMA无线网络技术,实现数据远程无线传输与仪器监控。  相似文献   
1000.
海南岛是南海地块的重要组成部分,其构造演化很大程度上能够反映整个南海的构造活动特征。新生代,海南岛在新构造运动作用下,断块差异升降比较明显,形成了大致以王五 文教断裂为界,北为沉降区,南为断隆区的构造格局。对断隆区隆升过程的研究能够帮助揭示海南岛新构造活动历史,但至今为止,琼中南山地隆升的原因和时限仍存在争议。为了厘清海南岛中部的剥露隆升事件,本文选择琼中南地区海拔最高、高差最大的五指山为研究区,采集8组高程岩石样品,高程范围为203. 55~1153. 52 m。对采集的样品进行了磷灰石裂变径迹测试和热历史模拟分析,结果表明海南岛五指山地区新生代主要经历了两期快速隆升剥露。第一期为渐新世—中新世(32~17 Ma):隆升速率较快,此时期太平洋板块向欧亚板块俯冲后撤,南海正经历第二次扩张,使得海南岛拉张,活动强烈,造成琼中山地区快速隆升,直到中中新世转为缓慢隆升。第二期为中新世末期(5 Ma)的快速剥蚀隆升阶段:南海扩张已经结束,随着菲律宾板块俯冲亚洲板块,南海北部陆缘整体处于加速热沉降阶段,且全球气候变化加快,造成了海南岛广泛的隆起和加速剥蚀。  相似文献   
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