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1.
正地球化学是研究地球的化学组成、化学作用和化学演化的科学。基于研究目的的不同,地球化学目前有元素地球化学、气体地球化学、同位素地球化学、构造地球化学、水文地球化学等研究方向。近些年来随着便携式化学测试仪器的普及,又衍生出构造地震地球化学-依据气体地球化学、同位素地球化学及水文地球化学相关理论方法,通过流动观测网、温泉或热水井固定观测点,来观测断裂带不同区段的深浅部流体地球化学特征及不同组分的物质来源,构  相似文献   

2.
氡是揭示构造活动的重要化学示踪元素。研究断层土壤气氡及其同位素的地球化学特征,可以揭示流体在构造活动研究中的作用。本文简述了断层土壤气氡的地球化学特征及目前在断裂带上开展的土壤气氡观测的研究成果,归纳了氡的理论及实验研究以及形成运移机理等方面所取得的进展,分析了氡气在地壳中浓度变化的影响因素。探讨断裂带中氡浓度空间分布特征有助于深入理解地壳深部流体、构造活动与地震孕育之间的关系,对提高地震短临预报水平具有重要意义。  相似文献   

3.
随着新观测技术和理论的进一步发展,同位素地球化学方法在地震监测预测研究中发挥了越来越重要的作用。通过同位素地球化学方法确定地下流体来源,研究地下流体循环特征,分析地震前兆异常的成因,评估地质构造活动的程度,开展地震预测研究。同位素示踪技术还可以结合深源流体监测和地球物理方法,揭示地震孕育、流体与震源之间的关系。此外,同位素地球化学还可以构建断裂带流体地球化学背景特征,用于地震监测点映震效能的评估,提高地震监测预测的准确性,为地震新监测点的布设和震情跟踪提供技术支撑。通过对现今同位素在地震监测预测中所使用的方法、技术及国内外应用情况的总结分析,力图全面认识同位素地球化学在地震监测预测应用中的现状及发展趋势。  相似文献   

4.
流体包裹体成分代表了古代流体的成分和性质,通过对比鄂尔多斯盆地二叠系包裹体气体、煤成气及现今天然气藏中气体的组分及碳同位素,探讨了初次运移、成藏过程中及成藏后的次生变化对气体组分及碳同位素组成的影响.结果表明:气体在从煤系源岩运移到砂岩储层的初次运移过程中,气体的组分发生了明显的分馏,甲烷碳同位素比值未受明显影响;上古生界天然气在储层运移过程中发生了运移和扩散分馏;在天然气藏形成后的漫长历史过程中受各种次生作用的影响较小,天然气的组分和碳同位素组成均未发生明显变化.  相似文献   

5.
对五大连池火山区内主要露头泉点氦同位素进行了测定,根据检测结果对该区火山活动性进行了研究和探讨,并提出了对该火山区幔源气体运移和释放机制的认识。  相似文献   

6.
通过甘东南地震危险区地震宏观异常观测实例分析,系统研究CO_2气体在地震构造活动过程中的地球化学演化过程,以及发生的一系列酸碱平衡和氧化还原化学反应。结果表明地下深部CO_2气体不仅是其他微量气体Rn等向地表方向运移的载体,而且参与酸碱平衡和氧化还原反应,是地下深部生物化学反应的重要影响条件,地震前兆及宏观异常现象的发生常伴随着CO_2的异常变化。因此CO_2气体可以作为良好的示踪气体,在地震前兆观测及重大异常落实中尤其要重视对其进行监测。  相似文献   

7.
正2008年5月12日汶川M_S8.0大地震突发在现今并不活动的龙门山断裂带上,该地震的孕震机理及如何预报引起广泛关注。土壤气体浓度的变化是地震监测的有效手段,大量的地面观测表明大震前后活动断裂带会释放出大量的气体。有学者指出,2008年5月12日的汶川大地震是由地壳岩体中大量高压致密的甲烷气团快速运移和膨胀造成的。气体增强可能是由于断层  相似文献   

8.
2012年6月30日新源-和静MS6.6地震前后, 北天山泥火山出现了喷溢和地球化学异常变化. 该地震前、 后4天内两次观测了北天山泥火山, 采集了两批温泉和泥火山气体样品, 测定了样品的气体组分和He、 Ne同位素及CH4、 CO2的碳同位素组成. 结果表明, 泥火山发生了同震喷发, 气体排放量增加, 温泉和泥火山气体出现了不同程度的微量气体浓度异常, 独山子泥火山震前出现了3He/4He高值异常. 研究结果有利于确定利用泥火山和温泉监测地震活动的方法和指标.   相似文献   

9.
水文地球化学地震前兆观测与新灵敏组分的探索   总被引:4,自引:0,他引:4  
当前在地震前兆探索中,不少国家都开展了利用地下水或土壤中气体——化学组分变化预报地震的研究工作。中、苏、日、美等国开展了地下水中的常量组分、微量组分、气体组分、同位素组分及其它物理参量的观测和研究,观测项目可达数十种。 多年来,我国以观测地下水中氡含量为主,对氡的地震前兆机理、氡含量变化的影响因素,氡的地震观测点的环境条件、测试方法、预报效能等方面进行了较深入地研究,取得了不少有意义的科研成果。当前测氡仍是我国地震前兆观测中的主要项目,并将采取各种有效措施使其在地震监测预报中发挥更大的作用。  相似文献   

10.
秦岭北缘断裂带温泉水渗流特征与地震活动水平研究   总被引:1,自引:0,他引:1  
前人对秦岭北缘断裂带出露温泉水的氢氧同位素、He同位素和SiO2含量进行了计算,得到了温泉水的热储温度和循环深度。在此基础上,运用温度场作用下的热水垂向运移数学模型演算了循环深度和断层带渗透性之间的关系。根据1970~2008年的区域台网资料,对断裂带进行了分段地震活动多参数组合方法分析,并结合历史中强地震(公元前781年~公元2008年)的空间分布特点,分析总结了断层带不同区段渗透特征和地震活动的关系。最后对秦岭北缘断裂带的渗透性成因进行了解释。  相似文献   

11.
断层气氢浓度观测技术试验研究   总被引:1,自引:0,他引:1  
In order to explore the new technology and methods for seismic underground fluid observation, a test study on measurement of hydrogen concentration in fault gas is carried out at the piedmont fault zone of Zhongtiao Mountain. Through the experiment on observation positions, gas collection devices and sampling depths, the paper presents the observation method for fault gas hydrogen concentration by using an online automatic trace hydrogen analyzer. Comparative tests are conducted on the stability and optimum conditions of this type of instrument in the field environment, and the hydrogen concentrations at different measuring points of the same fault are observed. The results show that it is technically feasible to carry out continuous hydrogen concentration on a fault zone. The method proposed in this study could be a useful tool for setting the observation points, choosing a reasonable observation depth and scientific analysis of the observed data.  相似文献   

12.
为了解决我国地震地下流体流动监测网络布设中目前存在的一些问题,以“坚固体孕震模式”为理论基础,以西秦岭北缘断裂带为研究对象,通过高密度地下流体背景值探测,结合地壳垂直形变特征以及地震活动性特征,寻找区域活动断裂带流体与形变以及地震活动的耦合段及断层气响应的灵敏点,综合判断断裂带活动分段性。断层形变、地震活动与地下流体活动有着良好的对应性与耦合关系,震源区均表现为“断层闭锁区”特性,发震地点都显示出一种相对平静的状态。基于以上研究,形成从活动断裂带—“坚固体”闭锁段—近震区前兆场地的追踪思路,规划具有一定物理预报思想的标准化断层气流动观测方案,并建立研究区域观测网络的雏形。这对今后全国地震重点危险区流体流动监测台网布设提供技术思路,并为我国地震预报、震情跟踪及防震减灾工作提供重要依据。  相似文献   

13.
近年来在城市活断层探测中广泛开展了土壤气探测的工作.本文在合作市周边地区选择2个位于西秦岭北缘断裂西段具有典型断层露头的甘加、黄香沟场地开展了现场土壤气汞、氡浓度测试.主要结论有:(1)断层带存在明显汞、氡浓度异常,曲线的峰值能够很好地对应断层位置,而且其曲线形态能够较好的反映出断层性质与几何形态;(2)异常段上方氡、汞的峰值异常一般比背景值高出1.5倍以上,且具有成组特征(即在断层带上方超过背景值1.5倍以上的点2个以上),并具有典型正弓形曲线形态;(3)合作市地处草原,地表覆盖层匀一、稳定,外界干扰较小,植被覆盖好,不仅有利于土壤气汞、氡浓度地球化学方法进行隐伏断裂的控制性探测,同时也有利于对已知断裂活动性时空变化特征进行跟踪探测研究.  相似文献   

14.
It is very important to comprehensively interpret areal seismic data with geological data in a research area. For the structural interpretations in the middle depression of the eastern basin of Liaohe oilfield, we first analyze and study geological phenomena on outcrop pictures collected in the field and establish geological outcrop models. Second, we make fault and structural interpretations based on the structural characteristics of the outcrop pictures. Third, we analyze the migration, accumulation, and formation of oil and gas using characteristics of seismic profiles. By geologic and geophysical comprehensive interpretation, it is inferred that, in the research area, the dominant factor controlling oil and gas accumulation is strike-slip faults. Structural modes and the relationship of the oil and gas in the Huangshatuo and Oulituozi oil fields are also analyzed and investigated.  相似文献   

15.
地震资料解释一个地区时综合使用地震和地质资料非常重要。作者在辽河油田东部凹陷的构造解释中,首先,利用野外观察到的地质构造现象, 建立地质露头模型;然后根据典型露头照片所示的构造特征对断层进行组合和构造解释;进而结合地震剖面特征分析油气的运移、聚集和成藏特征。通过地震地质综合解释的研究,推断出研究区内的走滑断层为油气的主控因素,走滑断层发育地区为油气富集的有利地带,同时对黄沙坨和欧利坨子油田的构造样式以及和油气之间关系进行了分析和研究。  相似文献   

16.
地震P波震相到时与初动极性的精确读取是地震资料分析处理的重要步骤之一.本研究采用了一种新的高精度自动确定地震波P波震相到时与初动极性的概率分布的方法(POI方法,后同),在此基础上研究开发了一套自动化小震震源机制解的反演流程,并将其应用在云南小江断裂带周边区域的小震震源机制和构造应力场反演中.得到的震源机制与应力场反演结果与前人的研究一致,且与区域GPS观测结果和构造背景吻合度较好,显示该方法具有良好的应用前景,为高效分析密集台阵地震观测资料,开展小震震源参数测量与区域应力场反演提供了新的研究思路和技术手段.  相似文献   

17.
地震P波震相到时与初动极性的精确读取是地震资料分析处理的重要步骤之一.本研究采用了一种新的高精度自动确定地震波P波震相到时与初动极性的概率分布的方法(POI方法,后同),在此基础上研究开发了一套自动化小震震源机制解的反演流程,并将其应用在云南小江断裂带周边区域的小震震源机制和构造应力场反演中.得到的震源机制与应力场反演结果与前人的研究一致,且与区域GPS观测结果和构造背景吻合度较好,显示该方法具有良好的应用前景,为高效分析密集台阵地震观测资料,开展小震震源参数测量与区域应力场反演提供了新的研究思路和技术手段.  相似文献   

18.
基于祁连山断裂带中东段9个观测点2016—2021年的土壤气体氡浓度观测数据,深入分析其浓度强度时空分布特征。同时结合历史大震背景、现今地震活动与断裂带滑动速率的对比分析,从地球化学的角度对祁连山断裂带中东段进行地震危险区段判定。研究表明:祁连山断裂中东段土壤气体氡浓度强度的空间分布特征为东强西弱,其时间序列变化特征总体呈下降趋势;断层土壤气氡浓度强度的空间分布特征、历史及现今地震活动和断裂滑动速率具有较好的耦合性。研究结论可以提供研究区深部地下流体活动的证据,对进一步研究追踪未来可能发生地震的断层和活动段具有重要意义。  相似文献   

19.
Soil gas emission is closely related to tectonic and seismic activity and has been widely used to track active faults and monitor seismicity in the upper crust. Because active fault plays an important role as the channel of the earth's deep gas upward migration due to its high permeability and porosity, the geochemical characteristics of soil gas in fault zone is a good indicator of tectonic fracture and activity. In order to study the soil gas geochemical emission intensities and its correlation to fault activity, fluxes of Rn, Hg and CO2 in soil gas and the ground resistivity were surveyed across the Yuxian-Guangling Fault and Kouquan Fault which are both Quaternary active faults in the border area of Shanxi Province, Hebei Province and Inner Mongolia Autonomous Region. In 2017, soil gas fluxes were measured in 2 profiles consisting of 10 and 9 wells of depth of 3.0m across the fault scarps in Yuxian-Guangling Fault and Kouquan Fault, respectively. Resistivity tomography sections were attained by ground resistivity survey with electrode spacing of 5.0m along the profiles of soil gas measurement. The gas geochemical data show that there exist two abnormal flux peaks across the Yuxian-Guangling Fault and one in the Kouquan Fault. The high density resistivity measurement shows that fault breccia and fractured rocks zones are developed under the measured faults, where higher values of soil gas flux are also observed. Fractures with high gas permeability in the strata favor the transfer and migration upward of soil gases, which results in the anomalies of gas flux value. In addition, the anomalies of gas flux values are spatially identical with the occurrence of the fault scarps. The soil gas degassing rate of Yuxian-Guangling Fault is higher than that of Kouquan Fault. The research results of high density electrical prospecting and previous tectonic activity show that low-resistance bodies are more developed and the fault activity is stronger with higher slip rate, which leads to the more intense emission of soil gas in Yuxian-Guangling Fault. The conclusions can be made that soil gas geochemical characteristics and degassing rate in fault zone is closely correlated to the tectonic activity and fracture degree. Combination of geochemical and geophysical methods is an efficient way for the monitoring and study of fault activity to estimate the possible earthquake hazards.  相似文献   

20.
As the most basic geophysical field, the earth gravity field has achieved wide attention, and its spatial anomaly characteristics and dynamic variation can provide important scientific basis for studying the internal structure and dynamics of the Earth. Based on the mobile gravity observation data of the southeastern Tibetan plateau from 2013 to 2016, the dynamic variation tendency and anomaly characteristics of the regional gravity field in different temporal resolutions are obtained before and after the Ludian and Jinggu earthquakes in the study area respectively. The method of wavelet multi-scale decomposition is used to analyze the relationships of gravity field variation with the earth movement, material density change, and strong earthquake preparation. The deep material variation, dynamic process and the mechanism of earthquake inoculation in the southeastern Tibetan plateau are further discussed. Results indicate that the gravity field variation in the source region before the Ludian and Jinggu earthquake respectively is characterized by obvious positive and negative anomalous transition zone and gradient zone that are consistent with the direction of fault tectonics, suggesting the strong crustal movement and mass migration during the earthquake incubation period. The result of wavelet multi-scale decomposition of the gravity field during the period from September 2013 to April 2014 shows that the gravity field variation at different depth and space scale in the crust and upper mantle of the southeastern Tibetan plateau is significantly correlated with seismic distribution and the location of active fault zone. This indicates that the earthquake inoculation in the study area is closely related to the fault movement and the distribution of material density in the crust and upper mantle, which may be affected by the complex deep dynamic process of the material migration in the crust and mantle. The characteristic that strong earthquakes always occur near positive and negative anomaly transition zones and gradient zones of gravity field change is preliminarily explained, based on the dynamic process of material migration in the crust and upper mantle of the southeastern Tibetan plateau. The research results of this paper have some reference value to the study on the earth movement and seismogenic mechanism.  相似文献   

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