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Pragian-Emsian successions in Uzbekistan and Bohemia:magnetic susceptibility logs and their dynamic time warping alignment

机译:乌兹别克斯坦和波西米亚的Pragian-Emsian演替:磁化率测井及其动态时间扭曲排列

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摘要

High-resolution low-field magnetic susceptibility (MS) logs of the Lower Devonian limestone beds of the Zerayshan-Gissar Mountain Region (Uzbekistan in Central Asia) and Prague Synform (Barrandian area, Bohemia, Czech Republic, Europe) were stratigraphically correlated using dynamic time warping (DTW) alignment techniques that are sensitive to local variations in sediment accumulation rates. A method of adjustment of raw data before the actual DTW alignment was developed in order to eliminate multiple sources on the MS signal, and a successful MS-DTW correlation was performed between the Zinzilban Gorge section in Uzbekistan and the Pozar-3 section in Bohemia. The results basically corroborate some of the most recent biostratigraphic correlations, especially those suggested by P. Carls and J.I. Valenzuela-Rios, and provide a 10-to 100-fold better resolution. The projection of the basal Emsian Global Boundary Strati-graphic Section and Point (GSSP) in the Zinzilban Gorge (Uzbekistan) to the succession of Bohemian strata points to a level in the lower parts of the Lodenice Limestone, i.e., to the lowermost one-third of the Praha Formation. Hence, more than two-thirds of the original Pragian in Bohemia (??Praha Formation) remain above the basal Emsian GSSP level in Uzbekistan. This implies that the decision about this GSSP ratified by IUGS in August 1996 led to a significant reduction of the extent of the original Pragian to only its oldest strata. Many other stratigraphically correlatable levels were identified within the se-quences of MS stratigraphic patterns in these two widely separated sections in spite of the fact that the Pragian-Emsian palaeoclimatic conditions of the northern hemisphere were different from those of the southern hemisphere. The base of the Norbonak Beds at Zinzilban corresponds to a stratigraphic level lying ??3.6m below the base of the Zlichov Limestone in the Pozar-3 section. The Bohemian anoxic Graptolite Event correlates to a level about 3m below the boundary of the Zinzilban and Norbonak beds at Zinzilban.
机译:使用动力学将地层相关的Zerayshan-Gissar山区(中亚乌兹别克斯坦)和Prague Synform(Barrandian地区,波西米亚,捷克共和国,欧洲)的下泥盆纪石灰岩床的高分辨率低场磁化率(MS)测井对沉积物累积速率的局部变化敏感的时间扭曲(DTW)对准技术。开发了一种在实际DTW对齐之前调整原始数据的方法,以消除MS信号上的多个源,并在乌兹别克斯坦的Zinzilban峡谷段和波西米亚的Pozar-3段之间成功进行了MS-DTW关联。该结果基本上证实了一些最新的生物地层学相关性,特别是P.Carls和J.I. Valenzuela-Rios,并提供10到100倍的更好分辨率。 Zinzilban峡谷(乌兹别克斯坦)的基础Emsian全球边界地层剖面和点(GSSP)对波希米亚地层的演替的投影指向Lodenice石灰岩下部的水平,即最下部的-普拉哈组的三分之一。因此,波希米亚原始普拉格亚岩的三分之二(?? Praha地层)仍高于乌兹别克斯坦的基本Emsian GSSP水平。这意味着IUGS于1996年8月批准了有关GSSP的决定,从而使原始Pragian的范围大大缩小到仅最古老的地层。尽管北半球的Pragian-Emsian古气候条件与南半球的条件不同,但在这两个相距很远的地区的MS地层模式序列中还发现了许多其他地层相关的水平。 Zinzilban的Norbonak床的底部对应地层,位于Pozar-3断层的Zlichov石灰岩底部下方3.6m。波希米亚缺氧Graptolite事件与Zinzilban的Zinzilban和Norbonak床的边界以下约3m的高度相关。

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