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31.
Gravity anomaly and crustal density structure in Jilantai rift zone and its adjacent region
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This paper deals with the interpretation of Bouguer gravity anomalies measured along a 250 km long Suhaitu-Etuokeqi gravity profile located at the transitional zone of the Alxa and Ordos blocks where geophysical characteristics are very complex. The analysis is carried out in terms of the ratio of elevation and Bouguer gravity anomaly, the normalized full gradient of a section of the Bouguer gravity anomaly (G h ) and the crustal density structure reveal that (1) the ratio of highs and lows of elevation and Bouguer gravity anomaly is large between Zhengyiguan fault (F4) and Helandonglu fault (F6), which can be explained due to crustal inhomogeneities related to the uplift of the Qinghai-Tibet block in the northeast; (2) the main active faults correspond to the G h contour strip or cut the local region, and generally show strong deformation characteristics, for example the Bayanwulashan mountain front fault (F1) or the southeast boundary of Alxa block is in accord with the western change belt of G h , a belt about 10 km wide that extends to about 30 km; (3) Yinchuan-Pingluo fault (F8) is the seismogenic structure of the Pingluo M earthquake, and its focal depth is about 15 km; (4) the Moho depth trend and Bouguer gravity anomaly variation indicates that the regional gravity field is strongly correlated with the Moho discontinuity. 相似文献
32.
利用宜川-泰安剖面高精度重力观测和GPS数据测量结果,对观测数据进行各项改正和处理,得到剖面的布格重力异常,并采用高斯低通滤波获得剩余重力异常。以诸城-宜川深地震测深(DSS)速度剖面为约束,对沿该剖面得到的高精度布格重力异常数据进行拟合,获得剖面地壳密度结构。结果表明,趋势异常主要反映该剖面地壳厚度的变化,太行山重力梯级带是地壳厚度的陡变带。结合前人相关研究,对剩余重力异常结合剖面经过的隆起、凹陷等地质问题进行讨论,进一步揭示出,剩余重力异常主要反映浅部地质构造和低密度地质体,剩余重力异常与地质构造不仅具有良好的对应关系, 而且其幅值能体现地质体的基本特征,比布格重力异常反映得更清晰、更细致。 相似文献
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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
36.
To improve our knowledge of the structural pattern of Mt. Vesuvius and its magmatic system, which represents one of the three
volcanoes located in the Neapolitan area (together with Campi Flegrei and Ischia; southern Italy), we analyze here the Bouguer
gravity map that is already available through its interpretation by means of 2.5-dimensional modelling. We have carried out
a three-dimensional interpretation using a new and original algorithm, known as ‘Layers’, that has been especially processed
for this purpose. Layers works in an automatic and non-subjective way, and allows the definition of the structural settings
in terms of several layers, each representing a specific geological formation. The same data are also interpreted in terms
of isolated and shallow anomalous density bodies using a well tested algorithm known as ‘Growth’. We focus our inversions
on the Mt. Vesuvius volcano, while globally analyzing the entire Neapolitan area, in order to investigate the deep structures,
and in particular the deep extended ‘sill’ that has been revealed by seismic tomography.
The final models generally confirm the global setting of the area as outlined by previous investigations, mainly for the shape
and depth of the carbonate basement below Mt. Vesuvius. The presence of lateral density contrasts inside the volcano edifice
is also shown, which was only hypothesized in the 2.5-dimensional inversion. Moreover, the models allow us to note a high
density body that rises from the top of the carbonate basement and further elongates above sea level. This probably represents
an uprising of the same basement, which is just below the volcano and which coincides with the VP and VP/VS anomalies detected under the crater. The three-dimensional results also reveal that the two inversion methods provide very
similar models, where the high density isolated body in the Growth model can be associated with the rising high density anomaly
in the Layers model. Taking into account the density of these modelled bodies, we would also suggest that they represent solidified
magma bodies, as suggested by other studies. Finally, we did not clearly detect any deep anomalous body that can be associated
with the sill that was suggested by seismic tomography. 相似文献
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Abstract The basement complex of Bohol Island consists of the Southeast Bohol Ophiolite Complex (SEBOC), Cansiwang Melange and Alicia Schist. The SEBOC is a complete, but dismembered ophiolite with outcrops generally trending northeast– southwest and dipping north-west. The harzburgite units of the SEBOC are almost always observed to be thrusted onto the Cansiwang Melange, which in turn is thrusted onto the Alicia Schist. Bouguer gravity values on Bohol range from about +60 mGal in the west to +120 mGal in the east, in the region to the north-east of the SEBOC outcrops. Based on the present distribution of the SEBOC units and their thrust fault relationship with the Cansiwang Melange and Alicia Schist, it is proposed that the SEBOC was emplaced by onramping towards the south-eastward direction. However, the orientation of the Bouguer highs suggests that the thrusting direction of the ophiolite units is towards the south-west and not towards the south-east. 相似文献
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