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The influence of bend amplitude and planform morphology on flow and sedimentation in submarine channels

机译:弯曲幅度和平面形态对海底水流和沉积的影响

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We present a series of experiments that investigate the morphology of sediment deposits within sinuous submarine channels of different sinuosity (S = 1.14-1.94) and planform (symmetric and asymmetric bends), generated by bedload-dominated turbidity current flows. Flows were generated by releasing dense saline gravity currents over a mobile sediment bed through pre-formed sinuous channels. Flows had a basal-outwards helicity and produced a characteristic bed morphology with point bars downstream of the bend apex at the inside of bends and scour at the outside of bends. An increasing loss of fluid through overspill with increasing channel sinuosity results in a decreasing magnitude of cross-stream velocity downstream, a decreasing amount of erosion and deposition, and decreasing transverse slopes of in-channel deposits. Basal fluid from within the channel is transported over the outer-levee at bends, implying that proximal outer-bend levee deposits will have similar sediment composition to that within the channel. More deposition of coarse material might be expected on levees and in overbank regions close to higher amplitude bends. No simple relationship was observed between superelevation and sinuosity, probably due to changes in the relative influences of downstream velocity and bend curvature on centrifugal force and inertial run-up. In the channel with the tightest initial bend curvature, overspill fluid from Bend 1 re-entered the channel at Bend 2, dominating flow characteristics and disrupting the basal-outwards helicity observed in the other channels. Higher sinuosity channels and those with shallow regional and levee slopes are thus more likely to have a higher proportion of anomalous flow and sedimentation patterns due to the influence of overspill fluid re-entry into the channel. The results of this investigation are combined with published observations to enable the synthesis of a new model for sedimentation in sinuous submarine channels.
机译:我们提出了一系列实验,研究由床荷为主的浊流产生的不同曲度(S = 1.14-1.94)和平面状(对称和不对称弯曲)的弯曲海底河道内的沉积物形态。通过在流动的沉积床上通过预先形成的弯曲通道释放浓盐水重力流而产生流量。流动具有基底向外的螺旋度,并产生了特征性的床层形态,在弯曲内部的弯曲顶点下游有点形条,在弯曲外部具有冲刷性。由于溢流而导致的流体损失增加,同时通道的弯曲度也增加,从而导致下游横流速度的大小减小,侵蚀和沉积的量减少,以及通道内沉积物的横向斜率减小。来自通道内的基础流体在弯道处在外堤上运输,这意味着近端外弯堤的沉积物将具有与通道内相似的沉积物成分。可能在堤坝上和在接近较高弯曲度的堤岸地区,可能会有更多的粗物质沉积。没有观察到超高和弯曲之间的简单关系,这可能是由于下游速度和弯曲曲率对离心力和惯性加速的相对影响的变化所致。在初始弯曲曲率最紧的通道中,来自弯头1的溢出液体在弯头2处重新进入通道,从而支配了流动特性并破坏了其他通道中观察到的基底向外的螺旋度。因此,较高的弯曲度通道以及具有较浅区域和堤坝坡度的通道,由于溢漏的流体重新进入通道的影响,更有可能具有较高比例的异常流量和沉积模式。这项研究的结果与已发表的观察资料相结合,从而能够合成出一种新的模型,用于沉积在海底弯曲海道中。

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