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首页> 外文期刊>Basin research >Slump folds as estimators of palaeoslope: a case study from the Fisherstreet Slump of County Clare, Ireland
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Slump folds as estimators of palaeoslope: a case study from the Fisherstreet Slump of County Clare, Ireland

机译:坍塌褶皱是古坡度的估计:爱尔兰克莱尔郡Fisherstreet坍塌的案例研究

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摘要

Folds and faults preserved within slump horizons are thought to be the only sedimentary structures that primarily reflect palaeoslope direction. By evaluating methods for the analysis of slump folds, the robustness of many palaeoslope and palaeogeographical reconstructions can be tested. Five methods for estimating palaeoslope direction from slump fold orientation data are tested with reference to the Upper Carboniferous Fisherstreet Slump horizon of County Clare, Ireland. These methods are the Mean Axis Method, the Separation Arc Method, the Downslope Average axis Method, the Axial-planar Intersection Method and the Fold Hinge Azimuth and Interlimb Angle Method. Transport determination techniques have mixed success when applied to this example and reveal a mean downslope transport direction of 067 degrees. This result reflects the varied boundary conditions that are possible during slumping, resulting from variations in initial fold geometries, progressive fold formation, spatial and temporal changes in velocity, material properties, pore fluid pressures and the local slope. Without a comprehensive analysis of slump data - using all available techniques - large errors in interpreted transport direction can exist and may invalidate palaeogeographic reconstructions. It is essential to use as many transport determination techniques as possible to determine slip direction accurately. With this in mind, a general procedure for determining palaeoslope directions is suggested and used to examine existing palaeogeographic models for the Clare Basin.
机译:坍落度范围内保留的褶皱和断层被认为是唯一主要反映古斜坡方向的沉积构造。通过评估坍落褶皱的分析方法,可以测试许多古坡和古地理重建的稳健性。参照爱尔兰克莱尔郡的上石炭纪Fisherstreet坍落度地平线,测试了根据坍落度褶皱方位数据估算古斜坡方向的五种方法。这些方法是平均轴方法,分离弧方法,下坡平均轴方法,轴-平面相交方法和折叠铰链方位角与交角方法。当应用于本示例时,传输确定技术取得了混合成功,并且揭示了067度的平均下坡传输方向。该结果反映了坍塌过程中可能发生的边界条件变化,这是由于初始褶皱的几何形状,渐进褶皱的形成,速度,材料特性,孔隙流体压力和局部斜率的时空变化引起的。如果不使用所有可用技术对坍落度数据进行全面分析,则可能会在解释的运输方向上出现大错误,并可能使古地理重建无效。必须使用尽可能多的传输确定技术来准确确定滑移方向。考虑到这一点,提出了确定古斜坡方向的一般程序,并将其用于检查克莱尔盆地的现有古地理模型。

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