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The role of Internal Solitary Waves on deep-water sedimentary processes: the case of up-slope migrating sediment waves off the Messina Strait

机译:内孤立波在深水沉积过程中的作用:以墨西拿海峡上移的沉积波为例

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摘要

Subaqueous, asymmetric sand waves are typically observed in marine channel/canyon systems, tidal environments, and continental slopes exposed to strong currents, where they are formed by current shear resulting from a dominant unidirectional flow. However, sand-wave fields may be readily observed in marine environments where no such current exists; the physical processes driving their formation are enigmatic or not well understood. We propose that internal solitary waves (ISWs) induced by tides can produce an effective, unidirectional boundary “current” that forms asymmetric sand waves. We test this idea by examining a sand-wave field off the Messina Strait, where we hypothesize that ISWs formed at the interface between intermediate and surface waters are refracted by topography. Hence, we argue that the deflected pattern (i.e., the depth-dependent orientation) of the sand-wave field is due to refraction of such ISWs. Combining field observations and numerical modelling, we show that ISWs can account for three key features: ISWs produce fluid velocities capable of mobilizing bottom sediments; the predicted refraction pattern resulting from the interaction of ISWs with bottom topography matches the observed deflection of the sand waves; and predicted migration rates of sand waves match empirical estimates. This work shows how ISWs may contribute to sculpting the structure of continental margins and it represents a promising link between the geological and oceanographic communities.
机译:通常在海洋通道/峡谷系统,潮汐环境以及暴露于强流的大陆坡中观察到水下非对称砂波,这些砂波是由占优势的单向流动引起的电流剪切作用形成的。但是,在不存在此类电流的海洋环境中,很容易观察到沙波场。推动它们形成的物理过程是未知的或未被很好理解的。我们认为,潮汐引起的内部孤立波(ISW)可以产生有效的单向边界“电流”,形成不对称的沙波。我们通过检查墨西拿海峡附近的沙波场来检验这一想法,我们在此假设中间地形和地表水之间的界面处形成的ISW被地形折射。因此,我们认为沙波场的偏转模式(即与深度有关的方向)是由于这种ISW的折射引起的。结合现场观察和数值模拟,我们发现ISW可以解释三个关键特征:ISW产生能够动员底部沉积物的流体速度; ISW与底部地形相互作用所产生的预测折射模式与观测到的沙波偏转相匹配;沙波的预测迁移率与经验估计值相符。这项工作说明了ISW如何帮助塑造大陆边缘的结构,并且代表了地质和海洋学界之间的有希望的联系。

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