华北地区地下流体中期和转折型短期异常成因分析
详细信息 本馆镜像全文    |  推荐本文 | | 获取馆网全文
摘要
结合观测井孔的水文地质条件、大气降水资料 ,深入剖析了华北地区水位、水氡的中期和转折型短期异常变化的直接原因 ,认为水位异常是由于降水量的增大与减少造成的 ,其形成机制主要为降水渗入补给 ;水氡异常的形成原因主要为降水渗入 -混合机制。进而提出“深浅构造的互动作用” ,用以解释流体异常与地震的关系 ,其论点是 :降水、地下水变化可诱发 (活化 )浅层的构造变动 ,而浅层构造活动又引发深部构造活动和地震的发生 ;反之 ,深部构造的活动和地震的孕育 ,使浅层岩石的应力增强 ,在降水、地下水的诱发作用下 ,可导致浅层的构造活动。降水引起的地下水异常是一种广义的地震前兆
On the basis of the hydrogeologic setting and atmospheric rainfall of the observation well,the direct causes of medium-term and broken line-type short-term anomalies of groundwater level and radon in North China are analyzed in this paper.It is suggested that the occurrence of water level anomalies might be at-tributed to the increase and decrease of rainfall amount,and the formation mechanism of these anomalies depends mainly on rainfall infiltration supply.The direct cause of radon anomalies is rainfall infiltration and mixing.It is proposed,therefore,that the relation between fluid anomalies and earthquakes can be ex-plained by the mutual action of deep and shallow structures.The main arguments are as follows:the rain-fall and the change of groundwater level may induce tectonic deformation of the shallow structures,which may activate the deep structures and hence cause the occurrence of earthquake;conversely,the activities of deep structures and the generation of earthquake may cause the increase of stress in shallow structures,while the effect of rainfall and groundwater may induce the activities of shallow structures.Therefore,groundwater anomaly induced by rainfall can be assigned to a kind of earthquake precursor in a broad sense.
引文
车用太,鱼金子,高维安.1997.唐山地震前兆场形成与演化的坚固体体膨胀-热物质涌落(DR)模式〔A〕.见:中国地震局地质研究所编.地震监测预报的新思路与新方法.北京:地震出版社.10—23.CHEYong tai,YUJin zi,GAOWei an.1997.Themodeloffirmbodyexpansion hotmattergushanddrop(DR)fortheformationanddevelopmentoftheprecursoryfieldofTangshanearthquake〔A〕.In:InstituteofGeology,ChinaSeismo logicalBureau(ed).NewConceptionandMethodofEarthquakePrediction.SeismologicalPress,Beijing.10—23(inChinese).
    车用太,鱼金子,王吉易,等.1998.晋冀蒙交界地区大气降水—地下水异常—地震活动关系试探〔A〕.见:中国地震学会流体专业委员会,云南省地震局地方处编.地下流体前兆研究.北京:地震出版社.16—21.CHEYong tai,YUJin zi,WANGJi yi,etal.1998.PreliminarystudyontherelationbetweenatmosphericprecipitationandgroundwateranomaliesandearthquakeactivitiesinShanxiHebeiNeiMongolborderregion〔A〕.In:CommitteeoftheUndergroundFluidofChinaSeismologicalAssociation,SeismologicalBureauofYunnanProvince(eds).TheStudyonUndergroundFluidPrecursor.SeismologicalPress,Beijing.16—21(inChinese).
    郭增建,秦保燕.1989.灾害物理学〔M〕.西安:陕西科学技术出版社.126—129.GUOZeng jian,QINBao yan.1989.DisasterPhysics〔M〕.ShaanxiScienceandTechnologyPress,Xi’an(inChinese).
    平建军,张子广,陈建国,等.2003.华北地区地下流体的两类短期前兆异常〔J〕.西北地震学报,25(3):253—257.PINGJian jun,ZHANGZi guang,CHENJian guo,etal.2003.Twokindsofshort termprecursoranomalyofundergroundfluidinNorthChina〔J〕.NorthwesternSeismologicalJournal,25(3):253—257(inChinese).
    汪成民,车用太,万迪,等.1988.地下水微动态研究〔M〕.北京:教育科学出版社.142—148.WANGCheng min,CHEYong tai,WANDi kun,etal.1988.StudyofMicro behaviorofGroundwater〔M〕.EducationSciencePress,Beijing.142—148(inChinese).
    王吉易,宋贯一,曹志成,等.2002a.地下水诱发的浅层前兆异常及其机理与有关的地震预报问题(1)〔J〕.华北地震科学,20(2):27—41.WANGJi yi,SONGGuan yi,CAOZhi cheng,etal.2002a.Themechanismofshallowlayersanomalycausedbyground wateranditsrelatedquestioninearthquakeprediction(1)〔J〕.NorthChinaEarthquakeSciences,20(2):27—41(inChinese).
    王吉易,宋贯一,曹志成,等.2002b.地下水诱发的浅层前兆异常及其机理与有关的地震预报问题(2)〔J〕.华北地震科学,20(3):1—13.WANGJi yi,SONGGuan yi,CAOZhi cheng,etal.2002b.Themechanismofshallowlayersanomalycausedbyground wateranditsrelatedquestioninearthquakeprediction(2)〔J〕.NorthChinaEarthquakeSciences,20(3):1—13(inChinese).
    王吉易,宋贯一,曹志成,等.2003.地下水诱发的浅层前兆异常及其机理与有关的地震预报问题(3)〔J〕.华北地震科学,21(1):1—10.WANGJi yi,SONGGuan yi,CAOZhi cheng,etal.2003.Themechanismofshallowlayersanomalycausedbygroundwa teranditsrelatedquestioninearthquakeprediction(3)〔J〕.NorthChinaEarthquakeSciences,21(1):1—10(inChinese).
    张炜,王吉易,鄂秀满,等.1988.水文地球化学预报地震的原理与方法〔M〕.北京:教育科学出版社.113—132,170—172,252—285.ZHANGWei,WANGJi yi,EXiu man,etal.1998.ThePrincipleandMethodofEarthquakePredictionbyHydrogeo chemistry〔M〕.EducationSciencePress,Beijing.113—132,170—172,252—285(inChinese).

版权所有:© 2023 中国地质图书馆 中国地质调查局地学文献中心