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Magnetostratigraphy of Kamchatkan Holocene formations of soil and pyroclastics

机译:堪察加全新世土壤和火山碎屑岩地层的磁性地层学

摘要

An account is given of magnetostratigraphic studies of Kamchatkan Holocene formations: the cover of soil and pyroclastics and the rocks of the cinder cones from the flank eruptions of Klyuchevskoi Volcano. А study was made of seven sections of the soil and pyroclastics and of samples from 17 cinder cones. А detailed account is given of the data processing procedure. Consideration is given to the reasons for the established incompleteness of the paleomagnetic record in the sections and it is demonstrated that adequately detailed reconstruction of the history of the geomagnetic 1ield is possible only provided that а study is made of а series of рагаllеl sections. The trajесtory of the geomagnetic field vector over the last 4000 years is determined on the basis of the material on radiocarbon datings. Seven cycles of paleosecular variations are distinguished in the age range investigated; each of these cycles has individual features by which they can be recognised and used for stratigraphic correlation. The, features taken were the direction of rotation of the vector, the shape and size of its loops, and the length of the cycles. Correlation of the sections based on paleomagnetic data was found to be in good agreement with the tephrostratigraphic correlation and enabled corrections to be made to the age of some horizons, including the archeological layers of the primitive settlement at Zhupanovo and the cinder cones. The metachronous magnetization present in some tephra layers was found to be an obstacle to any improvement in the accuracy and detail of magnetochronological reconstructions.
机译:给出了堪察加全新世地层的磁地层学研究:Klyuchevskoi火山侧面爆发的土壤和火山碎屑的覆盖层以及煤渣锥的岩石。 А研究对土壤和火山碎屑的七个部分以及来自17个煤渣锥的样品进行了研究。 А详细说明了数据处理过程。考虑到这些断层中古磁记录不完整的原因,并且证明了只有对一系列的断面进行研究,才有可能对地磁1ield的历史进行足够详细的重建。过去4000年中地磁场矢量的轨迹是根据放射性碳年代测定的材料确定的。在所研究的年龄范围内,区分出七个周期的古眼变化。这些循环中的每一个都有各自的特征,通过这些特征可以识别它们并将其用于地层对比。所采用的特征是向量的旋转方向,其循环的形状和大小以及循环的长度。发现基于古磁数据的剖面相关性与前地层与地层学相关性很好,并且可以对某些层位的年龄进行校正,包括朱潘诺沃原始沉积的考古学层和煤渣锥。发现在某些特非拉层中存在的同步磁化是阻碍磁年​​代学重建的准确性和细节方面任何改进的障碍。

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