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首页> 外文期刊>Sedimentology: Journal of the International Association of Sedimentologists >Relay ramps as pathways for turbidity currents: A study combining analogue sandbox experiments and numerical flow simulations
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Relay ramps as pathways for turbidity currents: A study combining analogue sandbox experiments and numerical flow simulations

机译:继电器坡道作为浊流的路径:结合模拟沙箱实验和数值流模拟的研究

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Unlike for subaerial settings, the impact of subaqueous relay ramps on sediment dispersal is still poorly understood. A combination of analogue laboratory experiments in a sandbox with numerical flow calculations is used to simulate relay ramp topographies on rifting continental margins and to analyse the resulting turbidity current pathways and their deposits. Various scenarios are investigated, including inflow perpendicular and oblique to the relay ramp axis as well as flow constrained by an incised channel on the ramp and by a landward-directed tilt of the ramp. Without channelling, most sedimentation takes place on the basin floor because the bulk of the flow follows the steepest gradient down the fault and into the rift basin. With a channel along the relay ramp, significant flow occurs initially down the ramp axis, but channel spillover and basinward ramp tilting combine to redirect much of the sediment down the fault slope into the basin. When the relay ramp has a landward-oriented tilt, most of the current flows down the ramp and deposits its sediment load there and at the foot of the ramp. However, also here a considerable amount of the flow is shed over the hanging wall fault and into the basin, forming a secondary depocentre, while ponding redistributes thin deposits over a wider area of the basin. The quantitative dependence of these results on the specific ramp geometries remains to be investigated further but may bear great importance for refined sedimentary models in subaqueous rifted settings as well as for hydrocarbon exploration therein.
机译:与地下环境不同,水下继电器坡道对沉积物扩散的影响仍然知之甚少。将沙盒中的模拟实验室实验与数值流计算相结合,可用于模拟裂谷大陆边缘的中继坡道地形,并分析由此产生的浊流路径及其沉积物。研究了各种情况,包括与继电器坡道轴线垂直和倾斜的流入,以及坡道上的切槽和坡道向内倾斜所限制的流量。在没有窜流的情况下,大部分沉积发生在盆地底部,因为大部分水流沿断层向下并进入裂谷盆地都遵循最陡的梯度。在沿中继坡道的河道中,大量的流量最初发生在坡道轴线的下方,但河道溢出和盆地向坡道的倾斜相结合,将大部分沉积物从断层坡道改道到盆地。当中继坡道具有面向陆地的倾斜时,大部分电流会向下流向坡道,并将其沉积物沉积在坡道的底部和底部。但是,这里也有大量的水流流过悬壁断层,流到盆地中,形成次要沉积中心,而池塘的沉积则将较薄的沉积物重新分布在盆地的较宽区域。这些结果对特定坡道几何形状的定量依赖性仍有待进一步研究,但对于水下分流环境中的精细沉积模型以及其中的油气勘探而言可能具有重要意义。

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