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Interaction between critical wedge geometry and sediment supply in a deep-water fold belt

机译:深水褶皱带临界楔形几何形状与沉积物供应之间的相互作用

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The late Miocene-Holocene deep-water fold-and-thrust belt of offshore northwestern Borneo displays one of the most acute angles recorded for a submarine critical-taper wedge. The very low surface (1 degrees-2.5 degrees) and basal detachment (2 degrees-5 degrees) dips require basal pore-fluid pressures near lithostatic pressure for the wedge to propagate at such angles. In the deep-water environment, sedimentary processes act against the wedge attaining critical taper. In places of lower sedimentation rates, the fold-and-thrust belt extends to the base of the slope and dips similar to 1.5 degrees-2.5 degrees. In areas of the highest sedimentation rates (Baram Delta), the slope has a lower angle (1 degrees) and the slope continues beyond the limit of the fold-and-thrust belt. Slope morphology changes along the margin from concave up (relatively low sedimentation rate, low shortening rate), to convex up (relatively high sedimentation rate, low shortening rate), to stepped (relatively low sedimentation rate, high shortening rate).
机译:婆罗洲西北部近海的中新世-全新世深水褶皱-冲断带显示出海底临界锥楔记录的最锐角之一。极低的表面(1度至2.5度)和基部分离(2度至5度)下陷要求楔形岩在这样的角度下传播,需要接近岩石静压力的基础孔隙流体压力。在深水环境中,沉积过程对楔形作用达到临界锥度。在沉积速率较低的地方,褶皱冲断带延伸到斜坡的底部,并且倾角接近1.5度至2.5度。在沉积速率最高的地区(巴拉姆三角洲),坡度的角度较小(1度),坡度继续超过褶皱冲断带的极限。斜坡的形态沿边缘从凹向上(相对较低的沉降速率,低缩短率),到凸向上(相对较高的沉降速率,低缩短率),再到阶梯状(相对较低的沉降速率,缩短率高)变化。

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