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首页> 外文期刊>Journal of the Geological Society >Sedimentological thickness variations within Silurian mudstone-dominated turbidite deposits and the effects on cleavage fanning (Anglo-Brabant Deformation Belt, Belgium)
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Sedimentological thickness variations within Silurian mudstone-dominated turbidite deposits and the effects on cleavage fanning (Anglo-Brabant Deformation Belt, Belgium)

机译:志留系泥岩为主的浊积岩沉积物中的沉积厚度变化及其对解理扇形的影响(比利时昂洛-布拉班特变形带)

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摘要

The effect of vertical changes in lithology on cleavage refraction and cleavage fanning is relatively well understood. In contrast, the control that lateral changes in bed thickness and related multilayer characteristics have on cleavage fanning has not been widely documented. Mudstone-dominated Wenlock-age turbidites of the Anglo-Brabant Deformation Belt, Belgium, exhibit pronounced lateral thickness changes, which we attribute to intraslope flow ponding during foreland basin development. The mudstone-dominated nature of the turbidites is considered to reflect a particularly fine-grained source area, rather than a distal origin. Formation boundaries and lateral changes in lithofacies unit thickness are reflected in the amount of cleavage fanning. The degree of convergent cleavage fanning increases with an increase in thickness of the less competent units and with a decrease in thickness and number of the more competent units. As such, a detailed analysis of changes in cleavage-bedding angle aids in the distinction of different lithostratigraphic units of similar appearance, the location of their boundaries and identification of subtle lateral sedimentological changes. The utilization of cleavage and bedding data to recognize and describe vertical and lateral changes in a semi-quantitative way allows the linkage of subtle changes in multilayer rheology to finite strain trajectories.
机译:相对而言,岩性的垂直变化对裂解折射和裂解成扇形的影响是相当了解的。相反,尚未广泛报道控制床厚度的侧向变化和相关的多层特征对解理扇形的作用。比利时盎格鲁-布拉班特变形带以泥岩为主的温洛克时代浊度显示出明显的侧向厚度变化,这归因于前陆盆地开发过程中的斜坡内流积。浊积岩的以泥岩为主的性质被认为反映了特别细粒度的源区,而不是远古起源。岩相单元厚度的地层边界和侧向变化反映在解理扇形的数量上。收敛分裂扇形的程度随着能力较低的单位的厚度的增加以及强度较高的单位的厚度和数量的减少而增加。因此,对裂隙-层理角度变化的详细分析有助于区分外观相似的不同岩石地层学单位,边界位置以及识别细微的横向沉积学变化。利用劈裂和层理数据以半定量方式识别和描述垂直和横向变化,可以将多层流变学中的细微变化与有限的应变轨迹联系起来。

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