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利用自由落体动态比例模型估算沉降速度:以有孔虫为例。

Estimation of sinking velocity using free-falling dynamically scaled models: Foraminifera as a test case.

机构信息

School of Life Sciences, Joseph Banks Laboratories, University of Lincoln, Green Lane, Lincoln LN6 7DL, UK

Institute of Materials Research, Helmholtz-Zentrum Geesthacht, Outstation at DESY, Building 66, Notkestr. 85, D-22607 Hamburg, Germany.

出版信息

J Exp Biol. 2021 Feb 1;224(Pt 2):jeb230961. doi: 10.1242/jeb.230961.

Abstract

The velocity of settling particles is an important determinant of distribution in extinct and extant species with passive dispersal mechanisms, such as plants, corals and phytoplankton. Here, we adapted dynamic scaling, borrowed from engineering, to determine settling velocity. Dynamic scaling leverages physical models with relevant dimensionless numbers matched to achieve similar dynamics to the original object. Previous studies have used flumes, wind tunnels or towed models to examine fluid flow around objects with known velocities. Our novel application uses free-falling models to determine the unknown sinking velocity of planktonic Foraminifera - organisms important to our understanding of the Earth's current and historic climate. Using enlarged 3D printed models of microscopic Foraminifera tests, sunk in viscous mineral oil to match their Reynolds numbers and drag coefficients, we predicted sinking velocity of real tests in seawater. This method can be applied to study other settling particles such as plankton, spores or seeds.

摘要

沉降颗粒的速度是决定具有被动扩散机制的灭绝和现存物种分布的一个重要因素,如植物、珊瑚和浮游植物。在这里,我们采用了从工程学借来的动态标度来确定沉降速度。动态标度利用物理模型和相关无量纲数来匹配,以实现与原始物体相似的动力学。以前的研究使用水槽、风洞或拖曳模型来研究具有已知速度的物体周围的流体流动。我们的新应用使用自由落体模型来确定浮游有孔虫的未知沉降速度——这些生物体对于我们理解地球当前和历史气候非常重要。我们使用放大的 3D 打印微观有孔虫测试模型,将其沉入粘性矿物油中以匹配它们的雷诺数和阻力系数,从而预测了海水中实际测试的沉降速度。这种方法可用于研究其他沉降颗粒,如浮游生物、孢子或种子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc29/7927657/54925ad4081f/jexbio-224-230961-g1.jpg

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