首页> 外文期刊>Palaios: An International Journal of the Society of Economic Paleontologists & Mineralogists >Planispiral cephalopod shells as a sensitive indicator of modern and ancient bottom currents: New data from flow experiments with modern nautilus pompilius
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Planispiral cephalopod shells as a sensitive indicator of modern and ancient bottom currents: New data from flow experiments with modern nautilus pompilius

机译:盘旋头足类贝壳作为现代和古代海底电流的敏感指标:来自现代鹦鹉螺水流实验的新数据

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摘要

The experimentally determined transportation characteristics of Nautilus pompilius shells by bottom currents reveal that planispiral cephalopod shells can be transported, re-oriented, and restrained. Shells of N. pompilius become re-oriented when the water flow is about 0.20 m / s, regardless of shell size, and are transported by the flow of 0.25-0.37 m / s, with velocity proportional to shell size. The shells are restrained in a strongly preferred orientation (aperture downstream). The transportation characteristics of various ammonoid groups differ based on differences in shell shape (especially drag coefficient in water). The shells of most ammonoids (especially leiostraca, serpenticones, and cadicones) had reorientation and threshold velocities similar to N. pompilius, and therefore were highly sensitive to paleo-bottom currents. The character and strength of paleo-bottom currents (direction and flow velocity) can be reconstructed front the taphonomic attributes of ammonoids (e.g., three-dimensional orientation within matrix, shell morphology, and ornamentation).
机译:由底部电流通过实验确定的鹦鹉螺贝壳的运输特性表明,盘旋头足类贝壳可以被运输,重新定向和约束。当水流约为0.20 m / s时,无论壳大小如何,庞氏猪笼草的壳都会重新定向,并以0.25-0.37 m / s的流量进行运输,速度与壳的大小成正比。外壳被限制在一个非常优选的方向(下游孔)。各种氨基团的转运特性因壳形状的不同(尤其是水中的阻力系数)而异。大多数铵盐类的壳(特别是莱奥斯特拉卡,蛇形和圆锥形)具有类似于蓬皮猪笼草的重新定向和阈值速度,因此对古底电流高度敏感。可以在氨的类属属性(例如基质内的三维取向,壳形态和装饰)的前面重建古底电流的特征和强度(方向和流速)。

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