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11.
The authors obtained the magnetostratigraphic division of Quaternary from the palaeomagnetic records of 7 cores taken from the northern plain of Jiangsu Province. The depositional characteristics of this area are now described. The core near the coastal region of the Yellow Sea showed the sedimentary rate was higher during Brunhes chron, but lower or nearly zero during Matuyama chron. The core located in the middle of the northern plain of Jiangsu Province showed the depositional formation was thin during Brunhes chron, but thicker in Matuyama. This depositional difference indicated obvious differences in the tectonic units, geological basement, and depositional environments of the two periods. This study provides information for the subdivision of Quaternary magnetostratigraphy.  相似文献   
12.
长江三角洲地区上新世以来的古地理变化   总被引:4,自引:0,他引:4  
为研究江苏东部沿海平原区第四纪环境变迁,查明第四纪期间的海侵、海退过程,寻求海面变动与湖面变动间的关系,并试图以地磁地层学的方法对当地的第四纪地层进行划分与对比.近年来,中国科学院海洋研究所曾对江苏盐城孔、弶港孔、启东孔和位于长江南岸的嘉定孔(上海市)地层进行了系统分析,包括微体化石群的定性分析(有孔虫、海陆相介形类)、软体动物群鉴定、古地磁系统测量和少量样品的C~(14)测年.为配合沉积环境  相似文献   
13.
渤海地区近20万年以来的海面变化   总被引:7,自引:0,他引:7  
早在1888年.狄格尔 (Dc Gccr) 曾提出,斯堪的纳维亚半岛是典型的冰川均衡区,冰川负荷的消失引起了当地地壳的均衡抬升,形成了具有椭圆形的窍形隆起区,并用实际测量的资料进一步证叫了杰米逊(Jamieson,1865)所阐述过的“冰川均衡”论。自那时以来,冰川均衡论几乎统治了一个世纪,直到现  相似文献   
14.
We got two cores from 10 miles east of Zhoushan islands about 29 m in water depth in 1979 and 1980.Dc1 core, 26 m long, can be divided into two layers; 0-19.4 m, brown-yellow, silty-clay, rich in foraminifera, 19.3-26 m, grey silt. DC1 core, 91 m long, 7 miles south of DC1 core. The colour for 0-16.6 m is the same as for 0-19.4 m of Dc2 core, brown silty-clay, rich in foraminifera too. The results of paleomagnetic measurements show: there are 464 specimens in DC1 and Dc2 cores altogether; AF demagnetization often shows that 95 % of all the specimens belong to normal polarity epoch, and the others are reversal ones.We consider that more stranger intensity may represent the warming period and transgression period, and vice versa. At least DC, and Dc2 cores provide such an evidence for this. It is obvious that glacial period should be low peak period of intensity, and interglacial period should be its high peak period.  相似文献   
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