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Experimental river delta size set by multiple floods and backwater hydrodynamics

机译:由多次洪水和回水水动力设定的实验河三角洲规模

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摘要

River deltas worldwide are currently under threat of drowning and destruction by sea-level rise, subsidence, and oceanic storms, highlighting the need to quantify their growth processes. Deltas are built through construction of sediment lobes, and emerging theories suggest that the size of delta lobes scales with backwater hydrodynamics, but these ideas are difficult to test on natural deltas that evolve slowly. We show results of the first laboratory delta built through successive deposition of lobes that maintain a constant size. We show that the characteristic size of delta lobes emerges because of a preferential avulsion node—the location where the river course periodically and abruptly shifts—that remains fixed spatially relative to the prograding shoreline. The preferential avulsion node in our experiments is a consequence of multiple river floods and Froude-subcritical flows that produce persistent nonuniform flows and a peak in net channel deposition within the backwater zone of the coastal river. In contrast, experimental deltas without multiple floods produce flows with uniform velocities and delta lobes that lack a characteristic size. Results have broad applications to sustainable management of deltas and for decoding their stratigraphic record on Earth and Mars.
机译:目前,全球海河三角洲正面临着因海平面上升,沉陷和海洋风暴而淹死和破坏的威胁,这凸显了量化其增长过程的必要性。三角洲是通过沉积物波瓣的构造而建立的,新兴理论表明,三角波瓣的大小与回水流体动力学成正比,但这些思想很难在缓慢演化的自然三角洲上得到检验。我们显示了通过连续沉积保持恒定大小的叶而建立的第一个实验室三角洲的结果。我们表明,三角洲凸角的特征性尺寸的出现是由于优先的撕裂节点(河道周期性而突然地移动的位置)相对于不断发展的海岸线在空间上保持固定的。在我们的实验中,优先撕裂节点是多次河流洪水和弗洛德(Froude)次临界水流产生的结果,这些洪水产生持续的非均匀水流,并且在沿海河流的回水区内净河道沉积达到峰值。相反,没有多次洪水的实验性三角洲产生的流速均匀且缺乏特征尺寸的三角洲裂片。结果对三角洲的可持续管理和解码其在地球和火星上的地层记录具有广泛的应用。

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