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61.
鄂尔多斯地区南部和东秦岭北部是华北稳定陆块与秦岭海槽之间的过渡带.早古生代可划分为5个中层序(mesosequence).MS-1.包括下寒武统及中寒武统徐庄组,为混水台地沉积体系,时间跨度在35Ma;MS-2.包括下寒武统张夏组、上寒武统和下奥陶统冶里—亮甲山组,为清水台地沉积体系,时间跨度近37.9Ma;MS-3.包括下奥陶统马家沟组和峰峰组,为蒸发型台地沉积体系,时间跨度近31Ma.三者组成显生宙第一大层序(megasequence),形成一巨大沉积旋回,为地壳动力伸张所成;MS-4.包括赵老峪组,为弧后盆地形成的斜坡沉积体系和盆地沉积体系,时间跨度17Ma;MS-5.系上奥陶统,包括背锅山组、上店组、两岔口组等,为残留海台地型沉积体系.这两个中层序形成显生宙第二大层序的主体,形成一巨大沉积旋回,为地壳动力挤压所成.  相似文献   
62.
Numerical modeling of 3-D terrain effect on MT field   总被引:1,自引:0,他引:1  
Using the boundary element method, the numerical modeling problem of three-dimensional terrain effect on magnetotelluric (MT) field is solved. This modeling technique can be run on PC in the case of adopting special net division. The result of modeling test for 2-D terrain by this modeling technique is basically coincident with that by 2-D modeling technique, but there is a great difference between the results of 3-D and 2-D modeling for 3-D terrain. Project supported by the National Natural Science Foundation of China.  相似文献   
63.
中国东部寒武系与奥陶系界线地层的碳氧同位素研究   总被引:12,自引:0,他引:12  
对我国东部不同地层区一些代表性的寒武系-奥陶系界线层位开展了碳?氧同位素研究?结果表明,由于沉积环境差异和成岩蚀变影响,界线层位的δ18O值变化较大,规律性不明显,δ13C值变化虽小,但在界线处均发生不同程度漂移?漂移的层位与寒武纪-奥陶纪主要生物群面貌变化的界线相一致?综合各方面资料分析,笔者认为,碳同位素组成的漂移很可能由晚寒武世到早奥陶世时期内海平面的升降所引起.  相似文献   
64.
深海二叠——三叠系界线研究现状   总被引:4,自引:0,他引:4  
综述了深海二叠(P)--三叠系(T)界线研究现状,介绍了深海P-T界线附近岩石地层,生物地层、缺氧事件及生物绝灭和复苏的研究进展,指出了深海P-T界线,缺氧事件和生物绝灭研究的分歧、不足及其症结。  相似文献   
65.
从层序地层学研究试论华北地区寒武系与奥陶系分界   总被引:8,自引:4,他引:8  
季强  章雨旭 《地质论评》1997,43(3):241-248
华北地区寒武系-奥陶系过渡沉积可划分为三个层序:凤山层序、两河口-红花园层序和大湾层序,凤山层序与两河口-红花园层序之间的界面为Ⅱ型层序界面(SB2),而两河口-红花园层序与大湾层序之间的界面为I型层序界面(SB1)。华北地区寒武系-奥陶系界线应置于两河口-红花园层序的海侵体系域的下界面,在徐州地区为三山子组(狭义)与韩家组之间,在北京西山为韭园组微晶丘与冶里组之间。  相似文献   
66.
从综合地层学观点论华南浅海相泥盆系—石炭系的分界   总被引:1,自引:0,他引:1  
王训练 《地质论评》1997,43(4):394-402
生物地层学、事件地层学和层地层学综合研究表明,华南浅海相区与Siphonodellapraesulcata带和S.sulcata带之间的界线相当的泥盆系-石炭系的界线不仅高于Cystophrentis带楔界,而且还应高于引起Cystophrentis绝灭的海退事件层的顶界。  相似文献   
67.
Introduction The surface rupture and aftershocks of the February 3, 1996 Lijiang earthquake are basically distributed along the N-S-trending Lijiang-Daju fault, which is boundary fault between Lijiang Quaternary, fault controlled basin and Yulong-Haba range (ZHANG, et al, 1997). Corresponding to the surface geological features, the focal rupture of the Lijiang earthquake also shows large component of dip-slip. It is of great difference from that of other earthquakes in west Yunnan, in w…  相似文献   
68.
Geologic marks related to extraterrestrial impact events, such as impact split gravels, impact brecciate layers, impact dikes, microirghizites, microtektites, especially meteoritic residues, were discovered on the boundary between Sinian/Cambrian at Tianmenshan of Western Hunan, which may possibly demonstrate that an extraterrestrial impact event has ever occurred there on the S/C boundary.  相似文献   
69.
Lijiang-Daju fault, the seismogenic fault of the 1996 Lijiang M=7.0 earthquake, can be divided into Lijiang-Yuhu segment in the south and Yuhu-Daju segment in the north. The two segments show clear difference in geological tectonics, but have the similar dynamic features. Both normal dip-slip and sinistral strike-slip coexist on the fault plane. This kind of movement started at the beginning of the Quaternary (2.4~2.5 Ma B.P.). As to the tectonic types, the detachment fault with low angle was developed in the Early Pleistocene and the normal fault with high angle only after the Mid-Pleistocene (0.8 Ma B.P.). Based on the horizontal displacements of gullies and the vertical variance of planation surfaces cross the Lijiang-Daju fault at east piedmont of Yulong-Haba range, the average horizontal and vertical slip rates are calculated. They are 0.84 mm/a and 0.70 mm/a since the Quaternary and 1.56 mm/a and 1.69 mm/a since the Mid-Pleistocene. The movements of the nearly N-S-trending Lijiang-Daju fault are controlled not only by the regional stress field, but also by the variant movement between the Yulong-Haba range and Lijiang basin. The two kinds of dynamic processes form the characteristics of seismotectonic environment of occurring the 1996 Lijiang earthquake.  相似文献   
70.
In this paper, the process of oasis-desert circulation (ODC) is simulated by MM5V3.5 model through designing an ideal oasis-desert scheme and assuming that initial atmosphere is at rest (V = 0). The findings showed that the key of forming special oasis boundary structure is the difference of energy and water between oasis and desert. The evaporation of oasis surface consumes heat energy, and the low temperature of oasis causes an oasis breeze circulation (OBC), which drives an ODC with a downdraft over the oasis and an updraft over the desert. Later, the cold, dry and stable boundary over oasis is gradually formed, on the contrary,the atmospheric boundary over desert on the edge of oasis is hot, humid and unstable and its height is about 600 hPa. The updraft over the desert forms a wet ring that acts as a vertical wall weakening the low-level moisture exchange between the oasis and desert. The downdraft of OBC increases the atmospheric stability that reduces the oasis evaporation. The low-level outflow from the oasis (into the desert) prevents the dry, hot air flowing from the desert into the oasis.Thus an oasis self-preservation mechanism may be formed due to OBC. The horizontal area influenced by oasis is twice as oasis area and the vertical range is four times as oasis. The ODC is strong in the daytime and reaches the strongest at 17:00, and the influenced area is the largest at 20:00.  相似文献   
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