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1.
四川中西部地区地壳结构与重力均衡   总被引:15,自引:4,他引:11       下载免费PDF全文
汶川MS8.0地震的“孕育”、发生和发展是深部物质分异、调整和运移的产物.为此,在四川中西部地区(松潘—甘孜,龙门山断裂系和四川盆地)应用重力布格异常场资料并通过两条典型剖面的地壳厚度(Moho界面深度)分布与依据Airy均衡理论给出的理论均衡地壳厚度做对比分析,探讨四川盆地、龙门山造山带、邛崃山等川西地域的地壳均衡状态,得到龙门山及其以西地带的深部地壳结构.龙门山造山带恰处于很不均衡的状态,即与其西北和东南部相比差异明显,故地壳处于不稳定状态.为探讨该区重力场均衡与强烈地震活动之间的关系,还必须进行新一轮的高精度观测,以对该区深部精细结构、重力场效应和均衡补偿深入研究.此外,本文研究结果有益于震后确定城镇布局和为不同类型建筑物重建选址提供深部要素.  相似文献   

2.
重力剖面金川—芦山—犍穿越芦山震区,近垂直于龙门山断裂带南段,长约300km,测点距平均2.5km,采用高精度绝对重力控制下的相对重力联测与同址GPS三维坐标测量,获得了沿剖面的自由空气异常和布格重力异常,并对布格重力异常进行了剩余密度相关成像和密度分层结构正反演研究.结果表明,芦山地震所在的龙门山断裂带南段存在垂直断裂走向的宽广的巨型重力梯级带,重力变化达252×10-5 m·s-2以上(龙泉山以西),反映出四川盆地与松潘—甘孜地块地壳厚度陡变(约14.5km)性质;四川盆地与松潘—甘孜地块过渡区(龙门山断裂带与新津—成都—德阳断裂之间)存在(30~50)×10-5 m·s-2的剩余异常"凹陷",可能与上地壳低密度体、山前剥蚀与松散堆积和推覆体前缘较为破碎有关;剩余密度相关成像显示地壳密度呈现分段性特征,在芦山地震位置出现高低密度变化;地壳呈现三层结构,四川盆地上、中、下地壳底界面平缓,反映其稳定阻挡作用,而松潘—甘孜块体上、中、下地壳底界面明显往盆地逐步抬升,反映出青藏高原往东的强烈挤压作用;松潘—甘孜块体往东推覆变形主要集中在上地壳范围内,推覆深度随离龙门山断裂带愈近而越浅.本文通过对密度分布及结构特征的研究,分析了芦山地震及龙门山地区地壳构造背景和当前活动性的深部动力环境特征.  相似文献   

3.
喜玛拉雅“东构造结”地区特异重力场的探讨   总被引:4,自引:6,他引:4       下载免费PDF全文
跨越中、印、缅三国交界的青藏高原东南的喜玛拉雅“东构造结”地区(92°E~97°E,26°N~30°N)一半以上的面积尚没有重力测点,是重力数据空白区,故无法直接研究其重力场特征与深部地壳结构(构造).本文分析了卫星重力异常的特性,提出应用卫星重力异常作为近似空间重力异常,并作布格改正后,得到的布格重力异常具有与该地区地形高程呈镜像相关的特征,可用以研究深部地壳结构.据三条重力剖面计算得到该地区三个地壳深部结构剖面的结果,给出青藏高原地壳厚度>70 km;喜马拉雅造山带为55 km左右;布拉马普特拉河谷盆地为33~35 km;那加山山脉地区为40~45 km,显示出三者为三个不同的构造单元.同时给出布拉马普特拉构造单元为相对高密度的刚性物质构成,随着印度洋板块向北运移,在碰撞、挤压下,插入青藏高原东南缘一带.导致该地带的强烈构造运动,和频发大、小地震.最后提出了几点认识和建议.  相似文献   

4.
龙门山造山带重力场研究表明它处于不均衡的状态,为此,构建了横贯松潘-甘孜块体、龙门山造山带和四川盆地的二维剖面的数值模型,采用黏弹性模型对重力场响应对研究区构造演化过程及动力学效应进行探讨.研究结果表明:(1)重力均衡调整导致了深部物质的垂向复杂动力学响应.在印度板块碰撞挤压效应与青藏高原东缘重力势能差的共同作用下,使得高原东缘深部物质在龙门山深处向东运移时潜入地幔,构成了青藏高原物质向东运移的另一种补偿方式;(2)流变结构及应变能的计算结果表明,龙门山上、中地壳层能量集中危险度较高的地段与汶川大震的孕震及发震方式基本一致,龙门山两侧介质属性、构造格局和流变属性的差异对汶川大地震的孕育和发生均起到了重要作用;(3)进一步开展由包含地表剥蚀的重力均衡调整效应与挤压缩短共同作用下的动力学模型,可以为合理地解释龙门山及周缘地带动力学响应提供重要的参考依据.  相似文献   

5.
在云南省西部,跨越中、缅两国交界的横断山系地区(97°E~102°E,24°N~30°N)有近一半的面积尚没有重力测点、即重力数据空白区和重力测点稀少的普查级测区.以前的有关文献、图集中所给出对此地区的重力场都是十分模糊的结果与图件.因此应用这些资料无法详细地研究该地区重力场特征与深部地壳结构(构造).本文应用卫星重力异常资料作为“近似空间重力异常”,经中间层改正后给出的“计算布格重力异常”,其分布特征与该地区的地形高程呈很好的镜像相关.对相应山脉、河谷以及断裂构造都有所反映.特别是在横断山系地区该布格重力异常呈现为近南北的走向.为此,据该“计算布格重力异常”,并选定对该区有代表性的一条重力异常剖面作正反演计算,以得到其地壳深部结构剖面.结果表明,在横断山脉地区的地壳厚度在51~56 km间起伏变化;滇西北云岭山系以及玉龙山区的地壳厚度约在60 km以上. 最后,对所得结果与图件进行了讨论,并提出了几点认识和纠正的建议.  相似文献   

6.
跨越中、印、缅三国交界的喜马拉雅“东构造结”地区(92°E~97°E,26°N~30°N)有一半以上的面积尚没有重力测点,是重力数据空白区,故无法直接研究其重力场特征与深部地壳结构(构造).本文应用卫星重力异常资料作为近似空间重力异常,经计算给出的布格重力异常,其特征与该地区的地形高程呈很好的镜像相关.据此得到该区不同方位的3个地壳深部结构剖面.重力异常反演求得青藏高原地壳厚度>70 km;喜马拉雅造山带为55 km左右;布拉马普特拉河谷盆地为33~35 km;那加山山脉地区为40~45 km,即呈现出3个不同构造单元的展布.同时求得“东构造结"区由高密度的刚性物质构成,在印度洋板块的碰撞、挤压作用下呈向北运移,并插入青藏高原东缘.基于这样的构造格局和深层动力过程,导致了青藏高原东南缘和东北缘的强烈构造运动,大、小地震的频频发生和矿产资源的聚集.  相似文献   

7.
2008年5月12日汶川MW7.9地震发生在龙门山断裂带。龙门山断裂带及其邻域的地壳上地幔三维速度结构的研究对于理解汶川大地震的动力学背景具有重要的意义。2006年10月至2009年10月,在国家重大基础研究项目(973)的支持下,中国地震局地质研究所地震动力学国家重点实验室在川西地区(26°~32°N,100°~105°E)布设了由297台宽频带数字地震仪组成的流动观测台阵(简称川西台阵)。根据川西台阵记录的环境噪声和远震波形数据,利用噪声成像技术和接收函数方法,我们研究了川西地区(29°~32°N,100°~105°E)地壳上地幔100km深度范围内的三维S波速度结构。本文得到的结果为研究川西高原和四川盆地的地壳结构提供了新的高分辨率观测证据。我们的结果表明:1)观测台阵覆盖的川滇地块、松潘-甘孜地块和四川盆地的地壳上地幔S波速度结构具有显着差异,龙门山断裂和鲜水河断裂带,作为地块间的边界断裂带,对两侧地壳结构具有明显的控制作用。2)观测台阵覆盖区域的地壳厚度存在明显差异,川滇地块的地壳厚度为60~64km,松潘-甘孜地块的地壳厚度为52~56km,四川盆地前陆的地壳厚度为46~52km,沿龙门山断裂带松潘-甘孜地块和四川盆地形成镶嵌结构,汶川地震震中处南北两侧的壳幔边界存在约6km的断错。3)四川盆地前陆低速特征表明相应区域存在厚度8~10km的沉积盖层,松潘-甘孜地块和川滇地块的中下地壳具有大面积分布的S波低速区,松潘-甘孜地块地壳平均泊松比高达0.29~0.31,汶川地震余震绝大多数分布在低速区上方的高速介质区域内,而四川盆地的中下地壳呈现整体性的高速特征,以汶川地震的震中为界,龙门山断裂带北段和南段的S波速度结构显示了明显的速度分段特征,其北段的S波速度总体上高于南段。4)本文给出的研究区地壳三维S波速度结构表明,川西高原中下地壳较为软弱,而四川盆地中下地壳的强度应明显高于松潘-甘孜地块,意味着四川盆地坚硬中下地壳可以阻挡松潘-甘孜地块向东的逃逸;另一方面,川西高原和川滇地块的中下地壳虽然均存在大面积的S波低速区,但松潘-甘孜地块内的地壳速度结构相对来说较为复杂,并形成了高、低速相间的结构特征,表明在四川盆地的阻挡作用下,该地块形成了折皱变形的结构。5)与S波低速区相应,松潘-甘孜地块和川滇地块中下地壳应处于部分熔融的状态,这对该区域存在中下地壳通道流(Channelflow)的推断是一个支持;但是,松潘-甘孜地块内是否存在中下地壳通道流仍有待进一步的深入研究。6)接收函数方位各向异性的偏振分析表明,以汶川地震震中为界,龙门山断裂西南侧处于挤压状态,而其东北侧的主压应力方向与断层走向大体平行,推断先存应力场可能驱动了汶川地震逆冲破裂之后沿龙门山断裂向北东方向的走滑破裂。  相似文献   

8.
对龙门山及其邻近地区20个宽频带地震台站的记录提取远震P波接收函数,并应用H-k叠加方法,求得每个台站下方的地壳厚度和波速比.以此为约束,进一步作接收函数反演,获得各个台站下方的S波速度结构.后龙门山与松潘-甘孜地块的地壳速度结构相似,而前龙门山的地壳速度结构则与四川盆地相似.由此说明,中央主断裂带是青藏高原东部与扬子地块之间主要的边界断裂.松潘甘孜地块至后龙门山中南部地区存在下地壳低速层,有利于中上地壳物质的滑脱作用.远震接收函数和布格重力异常的分析结果支持龙门山断裂带深部构造为滑脱-逆冲型的论断.在松潘-甘孜地块内可能具有双层的滑脱构造.上层滑脱发生在10~15km的深度上,该滑脱带表现为高温韧性滑脱剪切带.下层滑脱则发生在30km左右的深度上,其下方为青藏高原东部广泛存在的下地壳流.布格重力异常的分析表明,在中上地壳,四川盆地的密度较高,松潘-甘孜地块密度相对较低.龙门山断裂带位于密度较高的一侧,是松潘-甘孜地块向东南方的四川盆地逆冲的结果.在地壳下部,四川盆地为高P波速度和高密度区,表明地壳物质是坚硬的.松潘-甘孜块体是低S波速度和低密度区,表明物质比较软弱.高密度块体阻挡了青藏高原东部下地壳物质向四川盆地下方的流动.受印度板块往北运动的影响,青藏高原下地壳物质向东流动.中上地壳物质向东运动受到刚性强度较大的扬子地块的阻挡,在龙门山断裂带上产生应力集中,导致中央断裂带上应力突然释放,产生汶川Ms8.0级地震.  相似文献   

9.
川滇地区重力场与深部结构特征   总被引:4,自引:0,他引:4  
川滇地区地处青藏高原东缘强烈变形区,区内的龙门山断裂带、安宁河断裂带与鲜水河断裂带构成了华南块体、川滇块体与松潘-甘孜块体的重要分界.为研究川滇地区深部地壳结构特征,本文利用布格重力数据,并应用小波多尺度分析方法对重力场进行了分离,进而对该区地壳介质密度结构进行了分析.研究结果表明:川滇块体与松潘-甘孜块体中上地壳密度...  相似文献   

10.
龙门山断裂带地壳密度结构   总被引:3,自引:1,他引:2  
研究龙门山及邻区地壳密度结构对于认识该地区地震活动性具有重要意义.根据龙门山及邻区( 100°~105°E,28°~33°N)的布格重力异常资料,选取了跨越龙门山断裂带的6条重力测线,在深地震测深资料约束下,使用Geosoft软件分别反演出了龙门山地区地下的沉积层、康拉德界面和莫霍面的深度分布.研究结果表明:龙门山断裂带两侧的地壳结构明显不同,西面高原地区沉积层较薄,大部分为基岩出露;而东边盆地沉积层明显较厚,多在6km以上.莫霍面和康拉德面在两侧均相对平缓,康拉德面从东部的大约24km增加到青藏高原山区的35km左右;莫霍面深度从东部盆地的大约42km增加到西部青藏高原的67km左右.龙门山断裂带整体表现为一条近SN向的陡变重力梯度带,并在其地壳内各界面均发生错断,莫霍面和康拉德面错断距离分别达6 ~ 7km和3~ 5km.该区地壳的这种陡变和不均匀性是导致地震活动性强烈的主要原因之一.  相似文献   

11.
东、南洞庭湖的径流、泥沙特征及冲淤规律   总被引:4,自引:2,他引:2  
通过实地调查并对1957年以来水文、泥沙观测资料做系统分析和计算,探讨东、南洞庭湖出、入湖水量、沙量的年际和年内变化特征,以及长江下荆江段裁弯对湖区径流和泥沙的影响。提出了湖区泥沙汛淤枯冲的变化规律及水位升降与湖区泥沙冲淤的关系;论证了丰、平、枯年湖区淤积严重,面积日益缩小对径流的调节作用正在减弱。  相似文献   

12.
燕郊等测点迁移优化与地磁观测研究   总被引:1,自引:2,他引:1  
为优化地磁观测条件,开展了燕郊、夏垫等测点迁移工作;按照测眯迁移原则与实施技术方案,完整地收集并整理了地质构造与地球物理等方面的基本资料;进行了野外实地勘察,磁场梯度的测量,确定了新测点,在新老测点上进行了较长时间的地磁场对比观测;应用多种方法分析研究了地磁对比观测资料,结果表明,新老测点与有关测点的地磁变化具有良好的一致性,并得到了新老测点之间的地磁数据的按点差。  相似文献   

13.
The patterns of temporal variations of precipitation (P), streamflow (SF) and baseflow (BF) as well as their nitrate-nitrogen (nitrate) concentrations (C) and loads (L) from a long-term record (28 years) in the Raccoon River, Iowa, were analyzed using variogram and spectral analyses. The daily P is random but scaling may exist in the daily SF and BF with a possible break point in the scaling at about 18 days and 45 days, respectively. The nitrate concentrations and loads are shown to have a half-year cycle while daily P, SF, and BF have a one-year cycle. Furthermore, there may be a low-frequency cycle of 6–8 years in C. The power spectra of C and L in both SF and BF exhibit fractal 1/f scaling with two characteristic frequencies of half-year and one-year, and are fitted well with the spectrum of the gamma distribution. The nitrate input to SF and BF at the Raccoon watershed seems likely to be a white noise process superimposed on another process with a half-year and one-year cycle.  相似文献   

14.
GIS与防灾减灾   总被引:3,自引:0,他引:3  
地理信息系统(GIS)在我国已得到广泛的应用。在简要介绍G1S的发展历程、特点和发展趋势的基础上,重点从防灾减灾的角度介绍了GIS在气象灾害、地震灾害、地质灾害等领域的应用成果。  相似文献   

15.
Summary This paper discusses the influence of system stiffness on the dynamic instability of fault surfaces under laboratory conditions for a number of test modes. In conjunction with shear load stiffness, the normal load stiffness, often neglected, is shown to have a considerable effect on the stick-slip process —its presence or absence and its characteristics. Also appropriate stiffnesses are suggested for an earthquake sequence modeled as a growing dislocation.  相似文献   

16.
Introduction Hilbert-Huang transform (HHT) is a great break in processing nonlinear and non-stationary data and can be successfully used in many science domains. There are mainly two parts in this method. The first part is to decompose the original data into several intrinsic mode functions (IMF) with the empirical mode decomposition (EMD). IMF components are derived from the original data directly according to the local characteristics in the data under some rules, so that IMF are poste…  相似文献   

17.
A close correlation in spatial distribution of local seismic activity and energy release patterns before and after the 1979 Petatlan, Mexico earthquake suggests heterogeneity within the fault plane of this major low-angle thrust event associated with subduction along the Middle America Trench. A simple two-asperity model is proposed to account for the complexity. Foreshocks and aftershocks of the neighboring 1981 Playa Azul earthquake showed a similar pattern. As both events occurred at the junction of the Orozco Fracture Zone and the Middle America Trench, we speculate that the observed complex fault plane is caused by subduction of the rugged ocean floor of the Orozco Fracture Zone. Short-term precursory seismicity prior to the Petatlan earthquake can be explained by using the asperity model and migration of a slip front from the south-east to the north-west across the main shock source region.  相似文献   

18.
本文探索了网络化环境下,利用现代化的信息技术,对地震科技信息资源集成整合以及共建共享等问题。  相似文献   

19.
This study investigated the seasonal and spatial dynamics of nutrients and phytoplankton biomass at 12 stations in Hong Kong (HK) waters during a three year period from 2004 to 2006 after upgraded sewage treatment and compared these results to observations before sewage treatment. Pearl River estuary (PRE) discharge significantly increased NO(3) and SiO(4) concentrations, particularly in western and southern waters when rainfall and river discharge was maximal in summer. Continuous year round discharge of sewage effluent resulted in high NH(4) and PO(4) in Victoria Harbour (VH) and its vicinity. In winter, spring and fall, the water column at all stations was moderately mixed by winds and tidal currents, and phytoplankton biomass was relatively low compared to summer. In summer, the mean surface phytoplankton chl biomass was generally > 9 microL(-1) in most areas as a result of thermohaline stratification, and high nutrients, light, and water temperature. In summer, the potential limiting nutrient is PO(4) in the most productive southern waters and it seldom decreased to limiting levels ( approximately 0.1 microM), suggesting that phytoplankton growth may be only episodically limiting. The mean bottom dissolved oxygen (DO) remained > 3.5 mg L(-1) at most stations, indicating that the eutrophication impact in HK waters was not as severe as expected for such a eutrophic area. After the implementation of chemically enhanced primary sewage treatment in 2001, water quality in VH improved as indicated by a significant decrease in NH(4) and PO(4) and an increase in bottom DO. In contrast, there were an increase in chl a and NO(3), and a significant decrease in bottom DO in southern waters in summer, suggesting that hypoxic events are most likely to occur in this region if phytoplankton biomass and oxygen consumption keep increasing and exceed the buffering capacity of HK waters maintained by monsoon winds, tidal mixing and zooplankton grazing. Therefore, future studies on the long-term changes in nutrient loading from PRE and HK sewage discharge will be crucial for developing future strategies of sewage management in HK waters.  相似文献   

20.
Geochemical analysis of fine grained (<20 μm) tephra found in ice cores is inherently difficult, due to the typically low number and small size of available particles. Ice core tephra samples require specialized sample preparation techniques to maximize the amount of information that can be gained from these logistically limited samples that may provide important chronology to an ice record, as well as linking glacial, marine and terrestrial sediments. We have developed a flexible workflow for preparation of tephra and cryptotephra samples to allow accurate and robust geochemical fingerprinting, which is fundamental to tephrochronology. The samples can be prepared so that secondary electron imagery can be obtained for morphological characterization of the samples to ensure that the sample is tephra-bearing and then the sample can be further prepared for quantitative electron microprobe analysis using wavelength dispersive techniques (EMP-WDS), scanning electron microscopy with energy dispersive spectrometry (SEM-EDS), laser ablation inductively coupled mass spectrometry (LA-ICP-MS) or secondary ion mass spectrometry (SIMS). Some samples may be too small for typical instrumentation conditions to be used (i.e. 20 μm beam on the EMP) to analyze for geochemistry and we present other techniques that can be employed to obtain accurate, although less precise, geochemistry. Methods include analyzing unpolished tephra shards less than 5 μm in diameter with a 1 μm beam on an SEM; using the “broad beam overlap” EMP method on irregular particles less than 20 μm in diameter, and analyzing microlitic shards as well as aphyric shards using EMP to increase the number of analyzed shards in low abundance tephra layers. The methods presented are flexible enough to be employed in other geological environments (terrestrial, marine and glacial) which will help maximize and integrate multiple environments into the overall tephra framework.  相似文献   

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