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首页> 外文期刊>Acta Palaeontologica Polonica >Mode of life and hydrostatic stability of orthoconic ectocochleate cephalopods: Hydrodynamic analyses of restoring moments from 3D printed, neutrally buoyant models
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Mode of life and hydrostatic stability of orthoconic ectocochleate cephalopods: Hydrodynamic analyses of restoring moments from 3D printed, neutrally buoyant models

机译:矫形外切粒细胞骨骼静脉内稳定性和静腐蚀稳定性:水动力学分析3D印刷,中立浮力模型的恢复矩

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Theoretical 3D models were digitally reconstructed from a phragmocone section of Baculites compressus in order to investigate the hydrostatic properties of the orthoconic morphotype. These virtual models all had the capacity for neutral buoyancy (or nearly so) and were highly stable with vertical syn vivo orientations. Body chamber lengths exceeding approximately 40% of the shell length cause buoyancy to become negative with the given modeled proportions. The distribution of cameral liquid within the phragmocone does not change orientation and only slightly influences hydrostatic stability. The mass of cameral liquid required to completely reduce stability, permitting a non-vertical static orientation, would cause the living cephalopod to become negatively buoyant. A concave dorsum does not significantly change the mass distribution and results in a 5 degrees dorsal rotation of the aperture from vertical. The restoring moments acting to return neutrally buoyant objects to their equilibrium position were investigated using 3D-printed models of Nautilus pompilius and Baculites compressus with theoretically equal masses and hydrostatic stabilities to their virtual counterparts. The N. pompilius behaved as an underdamped harmonic oscillator during restoration due to its low hydrostatic stability and drag relative to the B. compressus model. In contrast, the B. compressus model more quickly returns to its equilibrium position without oscillating (overdamped system). The thrust required to overcome such a large restoring moment was explored using several extant cephalopod analogues. Significant angles of displacement were only achieved with coleoid-like thrusts, which were unrealistically high despite the probable similarities in their locomotor design. These maximum bursts of thrust may have been too energetically expensive and would preclude an unusual form of locomotion in a non-vertical orientation. These results suggest baculitids and other orthocones with similar hydrostatic stabilities probably lived a nektic to quasiplanktic mode of life with a primarily vertical orientation and mobility.
机译:从Baculites Compressus的Phragmocone部分进行数字重建理论3D模型,以研究矫象的静水性性质。这些虚拟模型都具有中性浮力(或接近SO)的能力,并且具有垂直SYN Vivo取向的高度稳定性。身体腔室长度超过壳长约40%的壳体长度导致浮力变为负面的模型比例。脓泌核碱内的胶林液体的分布不会改变取向,仅略微影响静液压稳定性。需要完全降低稳定性的伴随燃烧性,允许非垂直静态取向的质量会导致活的头孢菌opo被带来负浮动。凹入背部不会显着改变质量分布,并导致垂直孔的5°背旋转。采用3D印刷型号的鹦鹉螺和Baculites Compractus的3D印刷模型研究了恢复到其平衡位置的恢复时刻,以理论上是相同的群众和其虚拟对应物的静水稳定性。由于其低静水稳定性和相对于B.CCLESSUS模型,N.Pompilius在恢复期间表现为恢复期间的被损坏的谐波振荡器。相比之下,B.CCLESSUS模型更快地返回其平衡位置而不振荡(覆盖系统)。利用几个现存的Cephalopod类似物探索了克服这种大恢复时刻所需的推力。尽管其运动设计中有可能的相似性,但仍然仅通过鞘翅类推力进行了显着高的位移角度。这些最大的推力爆发可能太大昂贵,并且可以在非垂直方向上排除不寻常的运动量。这些结果表明,具有相似静水稳定性的杆状体和其他外耳子可能居住在Quasiplanktic生活方式中,具有主要垂直方向和移动性。

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